610 Medizin und Gesundheit
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Institute
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Seit der Entdeckung des HI-Virus in 1983, wurden diverse Beobachtungen zu neurologischen Komplikationen bei infizierten Patienten publiziert. Dabei standen initial lebensbedrohliche Komplikationen wie opportunistische Infektionen oder cerebrale Lymphome im Vordergrund. In Zeiten der antiretroviralen Therapie rücken jedoch vermehrt andere, chronisch verlaufende Folgen der Erkrankung in den Fokus. Neurokognitive Störungen bei HIV-infizierten wurden bereits erstmals im Jahre 1986 beschrieben. Seitdem wurden neben der manifesten HIV-assoziierten Demenz auch mildere Einbußen im kongitiven Bereich - sogenannte HIV-assoziierte neurokognitive Störungen (HAND) - klassifiziert, deren Diagnostik mittels diverser neuropsychologischer Testungen erfolgen kann. Hierfür sind geeignete Screening-Tools notwendig, die entsprechenden Anforderungen entsprechen sollten. Einheitliche Empfehlungen für einen bestimmten Test finden sich jedoch in aktuellen Leitlinien und Publikationen nicht. Die vorliegende Arbeit wurde zur Evaluation des MoCA-Tests (Montreal Cognitive Assessment) zur Detektion HIV-1-assoziierter neurokognitiver Störungen angefertigt.
Hierfür wurde der MoCA-Test an 89 HIV-infizierten Männern und Frauen zwischen 21 und 64 Jahren des HIV-Centers Frankfurt am Main durchgeführt und die Ergebnisse mit der gut validierten HIV-Demenz-Skala verglichen. Zudem wurde der Einfluss verschiedener Faktoren wie Geschlecht, Alter, CDC-Stadium, antiretrovirale Therapie, Dauer der HIV-Infektion, CD4-Zellzahl, Viruslast, HCV-Koinfektion, Bildung, Risikogruppenzugehörigkeit, Alkoholkonsum und CPE-Score untersucht.
Der Vergleich zwischen den absoluten Ergebnissen der HDS und des MoCA ergab einen hochsignifikanten statistischen Zusammenhang. Ein statistischer Zusammenhang konnte auch für die Parameter Alter, medikamentöse HIV-Therapie, Dauer der HIV-Infektion zum Untersuchungszeitpunkt sowie Bildung errechnet werden. Die relativen MoCA-Testergebnisse wurden sowohl mit einem Cut-off-Wert von 10 als auch einem Cut-off-Wert von 14 der HDS verglichen.
In Zusammenschau der Ergebnisse korreliert der MoCA-Test auf Grundlage der erhobenen Daten mit der HDS, wobei die Sensitivität in Bezug auf mildere kognitive Störungen niedriger als wünschenswert ist. Eine manifeste HIV-Demenz kann zuverlässig diagnostiziert werden, bei der Diagnostik von milderen Funktionseinschränkungen bestehen jedoch Limitationen. Auf Grund der einfachen Durchführung stellt er ein akzeptables alternatives Screening-Tool dar, wobei Personen mit auffälligen Testergebnissen einer weiteren neuropsychologischen Testung zugeführt werden sollten.
Das Glioblastom ist der häufigste bösartige primäre Hirntumor im Erwachsenenalter. Trotz intensiver Forschungsbemühungen inklusive zahlreicher Therapiestudien liegt die mediane Gesamtüberlebenszeit selbst von Patienten in gutem Allgemeinzustand noch immer unter zwei Jahren. Deshalb ist die Erforschung möglicher Resistenzmechanismen sowie neuer therapeutischer Angriffspunkte dringend erforderlich, um effizientere Therapien zu entwickeln.
Insbesondere der Tumormetabolismus hat in den vergangenen Jahren an Bedeutung in der Krebsforschung gewonnen. Hier zeigte sich in anderen Tumorentitäten, dass der Metabolismus der Aminosäure Serin, insbesondere des Schlüsselenzyms der Serin-Biosynthese, der 3-Phosphoglyceratdehydrogenase (PHGDH), ein Ansatzpunkt für neue Therapien sein kann. Wir stellten uns die Frage, ob auch im Glioblastom der Serinstoffwechsel von Bedeutung für Wachstum und Überleben der Tumorzellen ist und ob dieser somit einen neuen therapeutischen Angriffspunkt darstellen kann.
Zur Untersuchung dieser Fragestellung wurden initial verschiedene Tumorzelllinien hinsichtlich ihrer basalen Expression von PHGDH und weiterer Schlüsselenzyme des Serinstoffwechsels auf mRNA- und Protein-Ebene analysiert. Anschließend wurde untersucht, ob sich die Expression dieser Enzyme durch Zellstress verändert. Zur weiteren Evaluierung der PHGDH als möglichem Ansatz für neue Therapien wurde deren Aktivität pharmakologisch und genetisch inhibiert. In Wachstumsanalysen wurde ferner die Abhängigkeit der Zellen von verschiedenen Serinquellen untersucht. Unter Bedingungen des Tumormikromilieus wurden Zelltod- und Redox-Stress-Parameter untersucht. Abschließend wurden die Ergebnisse durch eine PHGDH-Überexpression validiert.
Die basalen Expressionsniveaus der PHGDH unterschieden sich in den fünf analysierten Gliomzelllinien. Es zeigte sich keine Korrelation mit der Expression der
Serinhydroxymethyltransferase 1 und 2 (SHMT 1 und 2, zytoplasmatische bzw. mitochondriale Isoform), welche ebenfalls Schlüsselenzyme im Serinstoffwechsel sind. Unter Zellstress, welcher mittels Hypoxie oder Aktivierung des Nuclear factor erythroid 2-related factor 2 (Nrf2) induziert wurde, zeigte sich ein Anstieg der Expression von PHGDH und SHMT2. Im nächsten Schritt erfolgten Versuche mit CBR-5884, einem pharmakologischen Inhibitor der PHGDH. CBR-5884 reduzierte signifikant die intrazellulären Serin- und Glycin-Spiegel. Parallel zeigte sich eine dosisabhängige, signifikante Reduktion des Zellwachstums in allen getesteten Linien, ohne eine Induktion von Zelltod. Zelllinien mit niedriger PHGDH-Expression wurden zusätzlich bereits durch Entzug von Serin aus dem Kulturmedium signifikant in ihrem Wachstum gehemmt. Unter realistischen Bedingungen des Tumormikromilieus mit Sauerstoff- und Nährstoffmangel zeigte sich unter zusätzlicher PHGDH-Inhibition mittels CBR-5884 ein signifikanter Anstieg von Zelltod-Parametern und reaktiven Sauerstoffspezies (ROS) einhergehend mit einer reduzierten NADPH/NADP+-Ratio. Die Ergebnisse der pharmakologischen PHGDHInhibition konnten durch eine PHGDH-Gensuppression reproduziert werden.
Umgekehrt bestätigte eine genetische PHGDH-Überexpression den protektiven Effekt eines aktiven Serinmetabolismus für die Tumorzellen.
Zusammenfassend zeigte sich in unseren Versuchen, dass unter Bedingungen des Tumormikromilieus einige Gliomzell-Linien den Serinmetabolismus induzieren, was einen protektiven Effekt für das Überleben unter widrigen Mikromilieusbedingungen zu haben scheint. Umgekehrt reduzierte eine Inhibition der PHGDH als Schlüsselenzym der Serinsynthese unter diesen Bedingungen das Wachstum von Glioblastom-Zellen und induzierte gleichzeitig Zelltod und Redoxstress. Diese Ergebnisse rechtfertigen eine weitere präklinische Testung in in vivo Modellen. Zusammenfassend legen unsere Ergebnisse nahe, dass der Serinmetabolismus einen vielversprechenden Angriffspunkt für neue Therapiestrategien im Glioblastom darstellen könnte.
Das Risiko bakterieller Infektionen durch Thrombozytenkonzentrate (TKs) ist derzeit immer noch das höchste in der Transfusionsmedizin. Dies wird hauptsächlich durch die empfindliche Physiologie der Thrombozyten und die damit verbundene erforderliche Lagerung dieser Produkte bei Raumtemperatur von 22°C ± 2°C bedingt, welche eine optimale Wachstumsbedingung für Bakterien darstellt. Mit Hilfe von predonation sampling und gewissenhaft durchgeführter Hautdesinfektion beim Spender wurden die Grundlagen zur Optimierung der bakteriellen Sicherheit von Thrombozytentransfusionen geschaffen. Allerdings ist die Übertragung von Bakterien bei der Punktion des Spenderarms immer noch die Hauptursache für bakterielle Kontamination von Thrombozytenspenden. In selteneren Fällen ist eine latente Bakteriämie des Spenders ursächlich. Denkbar ist auch eine Verunreinigung bei der Produktion.
Die Studie, welche in drei Phasen verlief, sollte die bakterielle Sicherheit von Thrombozytenkonzentraten und somit auch die Patientensicherheit dieser Produkte verbessern und gleichzeitig die Ressource „Thrombozytenkonzentrat“ optimieren.
In Phase 1 wurden drei zufällig gehäufte Transfusionszwischenfälle des Jahres 2016 untersucht und Wachstumskinetiken der verursachenden Keime erstellt. Es konnte bestätigt werden, dass Hautkeime weiterhin eine relevante Ursache bakterieller Verunreinigung darstellen. Eine Erweiterung des Spenderfragebogens bezüglich der Abfrage eines Risikos für die Übertragung multiresistenter Erreger und Kontakt zu besonderen tierischen Risikogruppen sowie die Einführung einer Mundraumkontrolle bei der ärztlichen Untersuchung könnten das Risiko der bakteriellen Kontamination der Blutspende eventuell reduzieren.
Phase 2 verglich mit PCR, Bactiflow und BacT/ALERT drei bakterielle Schnelltestmethoden synoptisch miteinander. Das Hauptaugenmerk lag hierbei auf der diagnostischen Sensitivität nach Poolbildung von bis zu 10 TKs (Pool-TKs sowie Apheresen).
Alle drei getesteten Bakterienscreeningmethoden zeigten einen zuverlässigen Bakteriennachweis auch nach erfolgter Poolbildung. Bactiflow-Mini-Pooltests konnten 2016 in die Routinetests des DRK Blutspendedienstes Baden-Württemberg-Hessen eingeführt werden und haben in der Zeit von 2016 bis 2019 zum Nachweis von zwölf Bakterienstämmen in Thrombozytenkonzentraten geführt und somit Transfusionszwischenfälle verhindert. Die Daten dieser Promotionsarbeit ermöglichen auch die Anwendung einer generischen 16s-DNA PCR-Methode oder des BacT/ALERT-Verfahrens als alternative Schnelltestmethoden.
In Phase 3 wurde schließlich die Transportstabilität der Proben validiert. Dadurch sollte Bactiflow als sicheres Schnelltestverfahren für TK-Pooltests an drei Standorten für den DRK Blutspendedienst Baden-Württemberg-Hessen und den DRK Blutspendedienst Nord-Ost implementiert werden. Es konnte gezeigt werden, dass sowohl nach einem Transport bei Raumtemperatur als auch bei 4°C die Bakterienkonzentration innerhalb von 24 h auch bei 5er- und 10er-Pool-TKs für alle drei Testverfahren nicht unter die Nachweisgrenze fällt. Die Bakterientestung von TKs ist somit auch nach Zentralisierung an den Instituten Frankfurt und Ulm des DRK Blutspendedienstes Baden-Württemberg-Hessen sowie dem Institut Plauen des DRK Blutspendedienstes Nord-Ost zuverlässig möglich.
Die hiesige Studie konnte dabei helfen, mögliche Ursachen für bakterielle Kontaminationen zu detektieren. Ebenso wurden mit Bactiflow, 16s realtime-PCR und BacT/ALERT drei Bakterienscreeningverfahren erfolgreich für Pools von bis zu zehn Pool- oder Apherese-TKs getestet. Zuletzt konnte auch für alle dieser drei Methoden eine sichere Nutzung nach 24-stündigem Transport sowohl bei Raumtemperatur als auch unter Kühlung bei 4 °C gezeigt werden. Insgesamt konnte die Studie somit zu einer Ressourcenoptimierung und einer Verbesserung der Patientensicherheit beitragen.
Hintergrund: Die LCPUFA der Zellmembran sind Ausgangspunkt für die Synthese von Lipidmediatoren und können je nach freigesetzter Fettsäure von der Zelle in pro- oder antientzündliche Mediatoren verstoffwechselt werden. LCPUFA können das Reaktionsprofil von Zellen beeinflussen, indem sie selbst oder die aus ihnen entstandenen Lipidmediatorderivate an Rezeptoren binden oder auf Genebene ihre Wirkung entfalten. Sowohl das antientzündliche Potenzial der Einzelfettsäuren EPA, DHA, GLA und SDA als auch die Wirkung des n-6/n-3-Verhältnisses wurden bereits in zahlreichen Studien gezeigt. Jedoch wurde noch nicht ausführlich auf den Einfluss einer Kombination verschiedener LCPUFA eingegangen, die sich im Hinblick auf die Verstoffwechselung von n-3- und n-6-Fettsäuren durch gleiche Enzyme wechselseitig beeinflussen können.
Zielsetzung: Ziel dieser Arbeit war es deshalb, den Einfluss von mehrfach ungesättigten Fettsäuren allein und in Kombination auf die COX-2-abhängige Inflammation in A549-Lungenepithelzellen zu untersuchen. Die Inkubation der Zellen mit den Einzelfettsäuren EPA, DHA, GLA und SDA wurde einem LCPUFA-Mix aus diesen vier Fettsäuren gegenübergestellt. Es wurde die IL-6-Produktion und die COX-2-Expression in CM1-stimulierten A549-Zellen als Marker einer Entzündung mittels CBA bzw. Durchflusszytometrie gemessen.
Ergebnisse: Durch die Oberflächencharakterisierung der A549-Zellen mittels Durchflusszytometrie konnte ihre Funktion im Immunsystem hervorgehoben werden. Die Inkubation mit den LCPUFA führte zur Aufnahme in die Zellmembran und zur weiteren Verstoffwechselung der Fettsäuren, wie sich gaschromatographisch nachweisen ließ. Der LCPUFA-Mix (0,02 pmol/Zelle) konnte die CM1 induzierte COX-2-Expression nur tendenziell erniedrigen. Im Gegensatz dazu ließ sich die COX-2-Expression durch eine gleiche Menge an EPA (0,02 pmol/Zelle) sehr signifikant (von 26,81% ± 2,78 auf 16,43% ± 1,45, p < 0,01) reduzieren. Die CM1-induzierte IL-6-Produktion wurde weder durch eine Einzellfettsäure EPA, DHA, GLA oder SDA noch den LCPUFA-Mix signifikant gesenkt.
Diskussion: In Übereinstimmung mit Corbière et al. wurden phänotypische Oberflächenmarker auf den A549-Zellen mittels Durchflusszytometrie gemessen, die sie zur Antigenpräsentation gegenüber T-Lymphozyten befähigen und zeigen, dass sie Teil des Immunsystems sind.[76] Im Gegensatz zum LCPUFA-Mix inhibierte EPA die COX-2-Expression. Zwar ist EPA die Hauptkomponente des LCPUFA-Mixes, dieser enthält aber zusätzlich DHA, GLA und SDA. Eine der vorgenannten drei Fettsäuren könnte den hemmenden Effekt des EPAs auf die COX-2 gemindert haben. Es ist aber auch denkbar, dass eine Interaktion der verschiedenen Fettsäuren zu einer geringeren Hemmung geführt hat. Auch andere Forschungsergebnisse bestätigen, dass die Stärke des Effektes von Fettsäuren abhängig von ihrer Kombination und Konzentration ist. Es stellt sich ein Wirkmaximum auf die Genexpression ein, das durch weitere Erhöhung der Fettsäuren nicht gesteigert werden kann und eventuell sogar ins Gegenteil umschlagen könnte. Gleissman et al. stellten erhöhte Spiegel an AA und COX-2 sowie einen geringeren Anteil an EPA und DHA in Tumorgeweben fest.[37] Für die A549-Zellen zeigten sich in der gaschromatographischen Messung ebenfalls im Vergleich zum AA-Anteil (5,72% ± 0,09) ein geringerer EPA- (0,95% ± 0,37) und DHA-Anteil (0,60% ± 0,07). Für COX-2-Inhibitoren konnten bereits antineoplastische Eigenschaften nachgewiesen werden.[94] Dies könnte ein Grund für die eingeschränkte Zellviabilität im XTT-Test bei höheren Fettsäure-Konzentrationen sein.
Fazit: Die Ergebnisse dieser Arbeit zeigen, dass im Gegensatz zu DHA, GLA, SDA und dem LCPUFA-Mix nur EPA eine signifikante antiinflammatorische Wirkung auf die COX-2 ausübte. Jedoch konnte kein signifikanter antiinflammatorischer Effekt hinsichtlich der Produktion des proinflammatorischen Cytokins IL-6 festgestellt werden. Zusammenfassend kann gesagt werden, dass weder einer alleinigen Fettsäure noch dem LCPUFA-Mix eine überlegene antiinflammatorische Wirkung auf alle hier untersuchten Parameter zugeordnet werden konnte.
Die Dissertation befasst sich mit Daten zum frühinvasiven kolorektalen Karzinom aus der Westpfalz in einem Zeitraum von 6 Jahren (2010 – 2016). In diesem Zeitraum sind 11% (n=130) frühinvasive kolorektale Karzinome aufgetreten. Davon besitzen 11% (n=14) Lymphknotenmetastasen. Beim pT1 Kolonkarzinom (n=92) treten Lymphknotenmetastasen in 13% (n=12) und beim pT1 Rektumkarzinom (n=38) in 5% (n=2) auf. Zur Risikostratifizierung werden pT1 kolorektale Karzinome in Low-Risk (sm1, G1, G2) und High-Risk (sm3, G3, G4) Karzinome eingeteilt. 84% (n=109) der pT1 kolorektalen Karzinome sind gut (G1) und mäßig differenziert (G2) und 35% (n=46) besitzen eine Submucosaeindringtiefe von sm1. 15% der G1 und G2 (n=11 von 73) pT1 Kolonkarzinome und 6% der G1 und G2 (n=2 von 36) pT1 Rektumkarzinome sind nodal positiv. Ein positiver nodaler Status ist in 12% (n=4 von 33) bei pT1sm1 Kolonkarzinomen aufgetreten. Ähnliches gilt für pT1sm1 Rektumkarzinome mit 8% (n=1 von 13). Weder im sm3 Stadium noch beim G3 pT1 Rektumkarzinom ist ein no-dal positiver Status vorgekommen. Dies zeigt, dass die Einteilung in Low- und High-Risk Karzinome nach der S3–Leitlinie zu überdenken ist. Ein positiver Lymphknoten-status tritt auch bei Low-Risk Karzinomen auf und verschlechtert das onkologische Outcome signifikant. Die Überlebensraten verdeutlichen diese Erkenntnis. Frühinvasi-ve kolorektale Karzinome besitzen eine ähnliche 5 Jahres-Überlebensrate von 81% wie fortgeschrittene neoadjuvant behandelte ypT1 kolorektale Karzinome. Das Gleiche gilt für nodal negative pT1 Karzinome (83%) im Vergleich mit fortgeschrittenen nodal negativen ypT0 und ypT1 Karzinomen (81%). Auch nodal positive pT1 Karzinome und fortgeschrittene nodal positive ypT0 und ypT1 Karzinome haben ähnliche Überle-bensraten (66% versus 67%). Auch dieser Vergleich zeigt, dass frühinvasive kolorekta-le Karzinome unterschätzt werden. Zur Optimierung des onkologischen Outcomes ist eine systemische Therapie bei frühinvasiven kolorektalen Karzinomen - auch ohne Lymphknotenmetastasen - zur Verbesserung des Überlebens nach 5 Jahren zu erwägen. Diese Thematik bietet einen Ansatzpunkt für weitere Studien um eine konkrete Aussa-ge über die Signifikanz einer neo-oder adjuvanten Therapie bei frühinvasiven kolorek-talen Karzinomen zu ermöglichen. Ein angepasstes multimodales Therapiekonzept sowie eine adäquate Nachsorge erscheinen bei frühinvasiven kolorektalen Karzinomen unabdingbar.
Während hohe Spiegel von reaktiven Sauerstoffspezies (reactive oxygen species, ROS) in Form von oxidativem Stress schädliche Auswirkungen auf den Körper haben können, zeigen aktuelle Forschungsarbeiten, dass Redox-Modifikationen an Thiolresten von Proteinen reversible Signalprozesse steuern können. Dieses Prinzip der posttranslationalen Proteinmodifikation durch Redox-Signale scheint auch bei der Verarbeitung und Chronifizierung von Schmerzen von Bedeutung zu sein. Über die potenziellen Redox-modulierten Zielstrukturen im nozizeptiven System ist jedoch bisher nur wenig bekannt.
Ein potentielles Redoxtarget im nozizeptiven System ist das kleine EF-Hand Ca2+-bindende Protein S100A4. Wie die anderen Familienmitglieder der S100-Proteinfamilie enthält S100A4 Cysteinreste, die in der Lage sind, redoxabhängig modifiziert zu werden. Studien an menschlichen Biopsien nach Gehirnverletzungen und an Mäusen in Verletzungsmodellen konnten zeigen, dass S100A4 neuroprotektiv wirkt. Darüber hinaus kann S100A4 sezerniert werden und vermittelt extrazellulär insbesondere regulatorische Funktionen innerhalb der Angiogenese, bei der Zellmigration sowie bei zellulären Differenzierungsprozessen. Die Funktionen von S100A4 im nozizeptiven System sind jedoch weitgehend unbekannt. In Vorarbeiten zu diesem Projekt wurde in einem Proteom-Screen beobachtet, dass S100A4 nach einer peripheren Nervenverletzung redoxabhängig im verletzten Nervengewebe hochreguliert wird. Darauf basierend wurde im Rahmen dieser Arbeit die Lokalisation von S100A4 innerhalb des nozizeptiven Systems sowie die funktionelle Bedeutung nach peripherer Nervenverletzung genauer untersucht.
Anhand von Immunfluoreszenzaufnahmen konnte gezeigt werden, dass S100A4 basal in Subpopulationen Peripherin- und NF200-positiver sensorischer Neurone lokalisiert ist. Interessanterweise führt eine Nervenverletzung nicht nur zu einer deutlichen Steigerung der S100A4-Expression im Bereich der Verletzungsstelle, sondern auch zu einer Änderung des neuronalen Verteilungsmusters. Die funktionelle Bedeutung von S100A4 für die Verarbeitung von Schmerzen wurde anhand von Verhaltenstests an Mäusen näher charakterisiert. Dafür wurden gewebsspezifische S100A4 Knockout Mäuse (Adv-S100A4-/-) und globale S100A4 Knockout Mäuse (S100A4-/-) generiert. In Modellen der akuten Nozizeption zeigten sowohl Adv-S100A4-/- als auch S100A4-/- Mäuse eine normale Reaktion auf thermische und mechanische Stimuli. Im „Spared Nerve Injury“ (SNI) Modell für periphere Neuropathien zeigten die S100A4-/- Mäuse eine im Vergleich zu wildtypischen (WT) Mäusen signifikant reduzierte mechanische Hyperalgesie, während bei den gewebsspezifischen Adv-S100A4-/- Mäusen kein verändertes Schmerzverhalten beobachtet werden konnte. Im „Crush Injury“ Modell für periphere Neuropathien war die mechanische Hyperalgesie der S100A4-/- Mäuse im Vergleich zu WT Tieren jedoch nicht verändert. Zusätzlich zur mechanischen Hyperalgesie wurden auch weitere Methoden der Quantifizierung des Schmerzverhaltens (Sciatic Functional Index, Brush Test und Wühlverhalten) etabliert. Allerdings war auch hier das Verhalten der S100A4-/- Mäuse mit dem der WT Mäuse vergleichbar. Darüber hinaus war das durch Applikation eines ROS-Donors induzierte nozizeptive Verhalten von S100A4-/- und WT Mäusen ähnlich. Man kann daher schlussfolgern, dass nach einer peripheren Nervenverletzung die S100A4-Expression insbesondere im Bereich der Verletzungsstelle hochreguliert wird. Dem gegenüber scheint S100A4 jedoch für die Schmerzverarbeitung funktionell nur von untergeordneter Bedeutung zu sein.
Ein weiteres potentielles Redoxtarget im nozizeptiven System ist die lösliche Epoxidhydrolase (soluble epoxide hydrolase, sEH). Die funktionelle Bedeutung von sEH für die Schmerzverarbeitung wurde bereits in früheren Studien belegt, da eine Behandlung mit sEH-Inhibitoren bei Ratten zu einer reduzierten Hypersensitivität in inflammatorischen und neuropathischen Schmerzmodellen führte. Während die analgetische Wirkung von sEH-Inhibitoren bereits gut bekannt ist, wurde eine redoxabhängige Modulation der sEH-Aktivität im nozizeptiven System in bisherigen Forschungsarbeiten kaum untersucht. Bestimmte Elektrophile können die sEH inhibieren, indem sie an das redoxaktive Cystein an Position 521 der sEH binden. Forschungsarbeiten konnten in diesem Zusammenhang bereits zeigen, dass die Cys521-vermittelte Inhibition von sEH durch das Prostaglandin 15d-PGJ2 oder 9-/10-Nitrooleonsäure (NO2-OA) im kardiovaskulären System zu einer Dilatation der Koronargefäße und einer Reduktion des Blutdrucks führt. Im Rahmen dieser Arbeit wurde untersucht, ob es durch eine redoxabhängige Hemmung der sEH-Funktion auch innerhalb des nozizeptiven Systems zu einer veränderten Schmerzreaktion bei Mäusen kommt. Um diese Fragestellung beantworten zu können, wurden sEH-Knockin (sEH-KI) Mäuse verwendet, deren redox-sensitives Cystein 521 durch ein Serin ersetzt wurde. Bei diesen Knockin-Mäusen können Elektrophile wie 15d-PGJ2 oder 9-/10-NO2-OA keine Enzyminhibition erzeugen. Die Charakterisierung der sEH-KI Mäuse zeigte sowohl in akuten als auch inflammatorischen Schmerzmodellen (Formalin Test und Zymosan-Pfotenentzündungsmodell) keinen Zusammenhang der Redoxmodifikation mit dem Schmerzverhalten der Mäuse. Auch in neuropathischen und viszeralen Schmerzmodellen (SNI-Modell und Modell der Zymosan-induzierten Peritonitis) konnte kein verändertes Schmerzverhalten der sEH-KI-Mäuse im Vergleich zu Kontrolltieren beobachtet werden. Darüber hinaus war das nozizpetive Verhalten nach Applikation von 15d-PGJ2 bei sEH-KI und WT Mäusen vergleichbar. Die redoxabhängige Modulation der sEH an Cystein 521 scheint demnach, im Gegensatz zum kardiovaskulären System, im nozizeptiven System keine Rolle zu spielen.
In der vorliegenden Dissertation wurde untersucht, ob die endotracheale Intubation (ETI) der alternativen Atemwegssicherung mittels Larynxtubus (LT) bezüglich der Überlebenswahrscheinlichkeit bei außerklinisch reanimierten Patienten überlegen ist.
Das retrospektiv erfasste Kollektiv dieser monozentrischen Studie umfasst 222 Patienten, die in den Jahren 2006 bis 2014 nach nicht-traumatischem Herz-Kreislauf-Stillstand außerhalb der Klinik (engl.: Out-of-hospital cardiac arrest, OHCA) präklinisch primär mit Endotrachealtubus (ET) oder LT versorgt und anschließend auf die internistische Intensivstation des Universitätsklinikums Frankfurt am Main aufgenommen wurden. Endpunkte der Studie waren die innerklinische Gesamtmortalität während des Krankenhausaufenthaltes sowie die Überlebensrate nach 24 Stunden.
In die Analyse wurden 208 Patienten einbezogen, von denen präklinisch 48 Patienten mit LT (23 %) und 160 Patienten mit ET (77 %) intubiert wurden. Die innerklinische Sterblichkeitsrate lag insgesamt bei 85 % (n=176); darunter 23 % LT- und 77 % ET-versorgte Patienten. Zwischen den beiden Methoden zur Atemwegssicherung zeigten sich sowohl in einer univariaten Analyse (Hazard ratio [HR]=0,98; 95 % Konfidenzintervall [K.I.] 0,69-1,39; p=0,92) als auch in einer multivariaten Cox-Regressionsmodell (adjustierte HR=1,01; 95 % K.I. 0,76-1,56; p=0,62) keine Unterschiede. Die ersten 24 Stunden nach OHCA überlebten 38 % aller Patienten; auch hier unterschieden sich die beiden Patientenkollektive nicht signifikant voneinander (univariate HR=1,04; 95 % K.I. 0,71-1,52; p=0,83).
Ferner veranschaulichte eine Propensity-Score-Matching-Analyse (PSM) mit einer Subgruppe von 120 Patienten, zusammengestellt in einem 3:1 Verhältnis (ET:LT), sowohl mit Blick auf die Überlebensrate bis zur Krankenhausentlassung (Propensity-adjustierte HR=0,99; 95 % K.I. 0,65-1,51; p=0,97) als auch auf die Mortalität in den ersten 24 Stunden (Propensity-adjustierte HR=1,04; 95 % K.I. 0,44-2,36; p=0,96) vergleichbare Ergebnisse beim Atemwegsmanagement mit LT bzw. ET.
Die frühe Durchführung einer Herzkatheteruntersuchung (HR=0,47; 95 % K.I. 0,28-0,77; p=0,003) sowie der frühe Beginn einer systemischen empirischen antibiotischen Therapie (HR=0,28; 95% K.I. 0,17-0,45; p<0,001) konnten überdies als signifikant positive Prädiktoren für das Überleben in einer angepassten Cox-Regressionsanalyse herausgearbeitet werden.
Im Gesamten konnte somit demonstriert werden, dass die initiale präklinische Anwendung des LT nach OHCA der ETI hinsichtlich der Überlebenswahrscheinlichkeit nicht untergeordnet ist. Neuester Literatur zufolge ist sie womöglich sogar überlegen. Dies gilt es in weiteren Studien zu bestätigen.
Muskelskelett-Erkrankungen (MSE) bei Büroangestellten sind häufig mit einer höheren Muskelspannung und einer eingeschränkten Bewegungsreichweite assoziiert. Ein hohes präventives Potential haben daher Dehntrainings, da durch eine muskuläre Relaxation die Muskelspannung reduziert werden kann und gleichzeitig auf psychischer Ebene eine Möglichkeit zur Entspannung geboten wird. Auch im Rahmen von Maßnahmen der betrieblichen Gesundheitsförderung (BGF), die im Kontext der Arbeitsmedizin immer mehr an Bedeutung gewinnt, stellen Dehntrainings einen erfolgsversprechenden Ansatz dar. Allerdings sind die bislang überprüften Ansätze sehr zeitaufwendig, was zu einem erheblichen Verlust an Arbeitszeit führt. Ein Dehnprogramm mit geringem Zeitaufwand ist das gerätegestützte „five-Business“ Dehntraining, bei dem in fünf Übungen ganze Muskelketten intensiv gedehnt werden. Da das Gerät individuell einstellbar ist, ist die Trainingsintensität standardisiert und gleichzeitig individualisiert. Ziel dieser Studie war daher das five-Business“ Dehntraining auf seine Wirksamkeit hinsichtlich einer Verbesserung der Beweglichkeit, der Lebensqualität und von MSE zu evaluieren. Im Rahmen dieser Dissertation wurde in der ersten Publikation zunächst eine konkrete Methode erarbeitet, die anschließend als 12-wöchige Intervention bei Büroangestellten (Training zwei Mal wöchentlich für je 10 Minuten) umgesetzt wurde. Für die zweite Publikation wurden Veränderungen in der Beweglichkeit im Anschluss an die Intervention und deren Abhängigkeit von soziodemographischen und anthropometrischen Faktoren analysiert. Dazu wurden fünf Beweglichkeitstests verwendet: der Finger-Boden-Abstand und die Lateralflexion wurden mit einem Maßband evaluiert, während die Gelenkwinkel beim modifizierten Schultertest nach Janda, dem modifizierten Thomas Test und der Retroflexion des Rumpfes nach Janda mit einem digitalen Inklinometer gemessen wurden. Insgesamt nahmen 216 (79w; 137m) Probanden im Alter von 44,81 ± 10,55 Jahren freiwillig an der Studie teil. Die Probanden waren 1,76 ± 0,09 m groß und wogen 78,03 ± 15,11 kg. Die mittleren Unterschiede zeigten, dass die Probanden im Schultertest (rechts: 2,1 ± 7,7°, p = 0,001; links: 2,7 ± 10,11°, p = 0,001), in der nach Janda modifizierten Retroflexion des Rumpfes (5,4 ± 8,6°, p<0,001), im Finger-Boden-Abstand (-1,9 ± 4,0 cm, p<0,001) und in der Lateralflexion relativ zur Körpergröße (rechts: -0,004 ± 0,01, p = 0,002; links: -0,004 ± 0,01, p<0,001) Zuwächse im Bewegungsausmaß erzielten. Im Thomas Test zeigten die Probanden eine Abnahme der Flexibilität (rechts: -2,1 ± 4,5°, p<0,001; links: -1,2 ± 4,7°, p = 0,001). In allen Tests zeigten die Effektstärken geringe bis mittlere Effekte (d = 0,24 - 0,62). Probanden mit unterdurchschnittlicher Beweglichkeit im Prä-Test zeigten die höchsten Beweglichkeitszuwächse. Weder Alter, Körpergröße, Gewicht, Body-Mass-Index (BMI) noch Geschlecht hatten einen signifikanten Einfluss auf die Beweglichkeitsveränderungen. Insgesamt kann für das „five-Business“ Dehntraining resümiert werden, dass es effektiv zur Beweglichkeitssteigerung beiträgt. Der vergleichsweise geringe Zeitaufwand ist ausreichend, um insbesondere bei unterdurchschnittlicher Flexibilität zu einem Gewinn an Bewegungsreichweite beizutragen. Da weder soziodemographische noch anthropometrische Faktoren die Beweglichkeitsveränderungen signifikant beeinflussten, kann das „five-Business“ Dehntraining auch bei heterogen zusammengesetzten Kollektiven angewendet werden. Somit ist es als wirksame Dehnintervention als BGF Maßnahme für schreibtischgebundenen Büroangestellte einsetzbar.
Nematophilic bacteria as a source of novel macrocyclised antimicrobial non-ribosomal peptides
(2020)
A solution to ineffective clinical antimicrobials is the discovery of new ones from under-explored sources such as macrocyclic non-ribosomal peptides (NRP) from nematophilic bacteria. In this dissertation an antimicrobial discovery process –from soil sample to inhibitory peptide– is demonstrated through investigations on six nematophilic bacteria: Xenorhabdus griffiniae XN45, X. griffiniae VH1, Xenorhabdus sp. nov. BG5, Xenorhabdus sp. nov. BMMCB, X. ishibashii and Photorhabdus temperata. To demonstrate the first step of bacterium isolation and species delineation, endosymbionts were isolated from Steinernema sp. strains BG5 and VH1 that were isolated directly from soil samples in Western Kenya. After genome sequencing and assembly of novel Xenorhabdus isolates VH1 and BG5, species delineation was done via three overall genome relatedness indices. VH1 was identified as X. griffiniae VH1, BG5 as Xenorhabdus sp. nov. BG5 and X. griffiniae BMMCB was emended to Xenorhabdus sp. nov. BMMCB. The nematode host of X. griffiniae XN45, Steinernema sp. scarpo was highlighted as a putative novel species. To demonstrate the second step of genome mining and macrocyclic non-ribosomal peptide structure elucidation, chemosynthesis and biosynthesis, the non-ribosomal peptide whose production is encoded by the ishA-B genes in X. ishibashii was investigated. Through a combination of refactoring the ishA-B operon by a promoter exchange mechanism, isotope labelling experiments, high resolution tandem mass spectrometry analysis, bioinformatic protein domain analysis and chemoinformatic comparisons of actual to hypothetical mass spectrometry spectra, the structures of Ishipeptides were elucidated and confirmed by chemical synthesis. Ishipeptide A was a branch cyclic depsidodecapeptide macrocyclised via an ester bond between serine and the terminal glutamate. It chemosynthesis route was via a late stage macrolactamation and linearised Ishipeptide B was synthesised via solid phase iterative synthesis. Ishipeptides were not N-terminally acylated despite being biosynthesised from the IshA protein that had a C-starter domain. It was highlighted that more than restoration of the histidine active site of this domain is required to restore N-terminal acylation activity.
To demonstrate the final step of determination of antimicrobial activity, minimum inhibitory concentrations of Ishipeptides and Photoditritide from Photorhabdus temperata against fungi and bacteria were determined. None were antifungal while only the macrocyclic compounds were inhibitory, with Ishipeptide A inhibitory to Gram-positive bacteria at 37 µM. The cationic Photoditritide, a cyclic hexapeptide macrocyclised via a lactam bond between homoarginine and tryptophan, was 12 times more inhibitory (3.0 µM), even more effective than a current clinical compound, Ampicillin (4.2 µM). For both, macrocyclisation was hypothesised to contribute to antimicrobial activity. Ultimately, this dissertation demonstrated not only nematophilic bacteria as a source of novel macrocyclic antimicrobial non-ribosomal peptides but also a process of antimicrobial discovery–from soil sample to inhibitory peptide– from these useful bacteria genera. This is significant for the fight against antimicrobial resistance.
Although immune checkpoint inhibitors such as anti-PD-1 antibodies have shown remarkable clinical success in many different tumor types, the proportion of patients benefiting from this treatment option remains low. Therefore, there is a need to sensitize tumors for immune checkpoint blockade. In this study two approaches were tested, a chemoimmunotherapy approach combining PD-1 checkpoint blockade with doxorubicin (DOX) chemotherapy, and ablation of the sphingosine-1-phosphate (S1P) receptor (S1PR4) based on the following rationale. Chemotherapy was shown to induce immune paralysis which contributes to tumor relapse, while PD-1 signaling was shown to facilitate the acquisition of chemoresistance. Thus, combinatorial chemoimmunotherapy is expected to be beneficial by maintaining or even activating anti-tumor immunity during chemotherapy. S1PR4 is an immune cell specific receptor, whose ablation slowed tumor progression by activating anti-tumor immunity in a mouse model that was previously insensitive to anti-PD-1 monotherapy. This suggested that S1PR4 ablation might pre-activate immunity to sensitize for anti-PD-1 therapy.
To test these combinatorial approaches, two tumor mouse models were employed, namely the MC38 murine adenocarcinoma model as well as the transgenic polyoma middle T oncogene (PyMT) breast cancer model. In the MC38 model, a mild synergistic effect of PD-1 immune checkpoint blockade and S1PR4 ablation was observed, indicated by improved tumor progression and survival as compared to the WT control, and an increased number of tumor-free mice compared to anti-PD-1 therapy alone in WT mice. These observations correlated with an enhanced natural killer (NK) cell infiltrate and increased CXCL9 and CXCL10 production in anti-PD-1 treated S1PR4 KO tumors. As noted before, the PyMT model was largely resistant to anti-PD-1 monotherapy in a therapeutic setting. S1PR4 ablation alone showed significant tumor reduction that was not further enhanced by anti-PD-1 treatment. The same was observed when chemotherapy with DOX was added, where WT tumors relapsed, while S1PR4 KO tumor did not. Addition of anti-PD-1 did only mildly increase tumor control in S1PR4 KO mice, indicating that S1PR4 KO per se very efficiently re-activated anti-tumor immunity. Since S1PR4 KO induces type I 12 interferon (IFN-1) over-production in S1PR4 KO PyMT tumors, a link between high IFN-1 levels and tumor immunity was tested by using mice deficient in the IFN-1 receptor (IFNAR1). Unexpectedly, DOX chemotherapy was most efficient in mice with IFNAR ablation only as compared to WT, S1PR4 KO or S1PR4 and IFNAR1 double KO mice, although deficiency in IFNAR signaling is predominantly regarded as tumor promoting. The underlying mechanisms need to be tested in future studies. Interestingly, chemoimmunotherapy in WT mice prevented tumor relapse to a similar extent than S1PR4 KO and was superior to chemotherapy or immune checkpoint blockade alone. To investigate mechanisms of chemoimmunotherapy success compared to monotherapy, whole transcriptome analysis was used, which identified a set of genes that were upregulated specifically upon chemoimmunotherapy. This gene signature and, more specifically, a condensed four-gene signature predicted favorable survival of human mammary carcinoma patients in the METABRIC cohort.
Moreover, PyMT tumors treated with chemoimmunotherapy contained higher levels of cytotoxic lymphocytes, particularly NK cells. Gene set enrichment analysis and ELISA measurements revealed increased IL-27 production and signaling in PyMT tumors upon chemoimmunotherapy. Moreover, IL-27 improved NK cell cytotoxicity against PyMT cells in vitro. These data supported recent clinical observations indicating a benefit of chemoimmunotherapy compared to monotherapy in breast cancer and suggested potential underlying mechanisms.
Taken together the present work revealed new strategies to reactivate tumor immunity leading to improved chemotherapy response, namely a combination with immune checkpoint blockade and ablation of S1PR4, which activated different lymphocyte compartments within tumors.
The interleukin (IL)-1 family has been described for its numerous involvement in the regulation of inflammatory processes. Certain members are able to induce inflammation, whereas others have the capacity to inhibit inflammation. The newly discovered IL-1 family member IL-38 shows interesting and innovative properties. While most of these cytokines are pro-inflammatory mediators, IL-38 appears to enter the smaller circle of anti-inflammatory mediators. As a pattern, IL-38 appears to suppress IL-17-driven chronic or auto-inflammation by working as receptor antagonist. These properties, as well as its beneficial effects in models of inflammatory and autoimmune diseases suggest the possibility of IL-38-based therapies. Nevertheless, its role in the resolution of acute inflammation, thereby preventing chronic inflammation, remains unclear.
The first part of my thesis elucidated the role of IL-38 in the resolution of inflammation. I found that the complete absence of IL-38 in IL-38 KO mice leads to a delayed resolution of inflammation in the zymosan-induced peritonitis mouse model, compared to WT mice. This was marked by a persistent neutrophilia and a lower production of pro-resolving mediators during the resolution phase, such as TGFβ1 production from macrophages following efferocytosis of apoptotic cells. Reduced TGFβ1 production from macrophages coincided with reduced levels of regulatory T cells (Tregs), which are known to promote the resolution of inflammation. Unexpectedly, the TGFβ1 production capacity of macrophages did not influence the induction of Tregs from naïve T cells. Rather, IL-38 KO mice had an accumulation of Tregs in the thymus compared to WT mice. This was caused by an impairment of CD62L expression at the surface of Tregs, which is required for Tregs migration outside of the thymus. Higher Treg numbers in the thymus correlated with lower level of Tregs in peripheral lymphoid organs. Importantly, CD62L expression at the surface of IL-38 KO Tregs in the thymus was restored by injecting IL-38 i.p. for 24h. These data indicate a potential key function of IL-38 in the regulation of Treg migration, which is triggered in many cases of autoimmunity.
The second part of my thesis was to study the role of IL-38 in experimental autoimmune encephalomyelitis (EAE) development, given that EAE is IL-17-dependent. Unexpectedly, IL-38-deficient mice showed strongly reduced clinical scores and histological markers of EAE. This came with reduced inflammatory cell infiltrates, as well as reduced expression of inflammatory markers in the spinal cord. IL-38 mRNA was detected in the spinal cord, mainly by resident and infiltrated phagocytes, but also by other cells, such as ependymal cells. IL-38 was upregulated upon pro-inflammatory stimulation of bone marrow-derived macrophages, and its presence was necessary for a complete activation of inflammatory macrophages. My data suggest an alternative cell-intrinsic role of IL-38 in macrophages to promote inflammation in the central nervous system.
In the last part of my thesis, I initiated a project on the function of IL-38 in B cell physiology and antibody production, given the fact that IL-38 is expressed by B cells. I generated preliminary data showing that the absence of IL-38 in mice decreased antibody production. Furthermore, I showed that IL-38 is particularly expressed by plasma cells in human tonsils. This project remains open and further studies will be conducted to investigate how IL-38 regulates antibody production, both in physiological and autoimmune settings. Understanding the role of IL-38 in autoantibody production could lead to original and innovative therapy for patients suffering from auto-inflammatory disease.
In summary, the different projects of my thesis provide evidence that the pro-resolving function of IL-38 may be indirectly linked to the retention of Tregs in the thymus. Moreover, a possible intracellular role of IL-38 within macrophages was described showing opposite properties in the regulation of inflammation. This function could be causatively involved in EAE development. However, further studies remain to be done to find the mechanism of action by which IL-38 regulates Tregs egression and how it influences the EAE development. Complete understanding of the IL-38 biology and differentiation between its extra- vs potential intracellular functions could make it a promising therapeutic target for chronic inflammatory or autoimmune diseases.
The retinoid X receptor (RXR) is a ligand-sensing transcription factor acting mainly as a universal heterodimer partner for other nuclear receptors. Despite presenting as a potential therapeutic target for cancer and neurodegeneration, adverse effects typically observed for RXR agonists, likely due to the lack of isoform selectivity, limit chemotherapeutic application of currently available RXR ligands. The three human RXR isoforms exhibit different expression patterns; however, they share high sequence similarity, presenting a major obstacle toward the development of subtype-selective ligands. Here, we report the discovery of the saturated fatty acid, palmitic acid, as an RXR ligand and disclose a uniform set of crystal structures of all three RXR isoforms in an active conformation induced by palmitic acid. A structural comparison revealed subtle differences among the RXR subtypes. We also observed an ability of palmitic acid as well as myristic acid and stearic acid to induce recruitment of steroid receptor co-activator 1 to the RXR ligand-binding domain with low micromolar potencies. With the high, millimolar endogenous concentrations of these highly abundant lipids, our results suggest their potential involvement in RXR signaling.
Reliable and efficient recording of the error-related negativity with a speeded Eriksen Flanker task
(2020)
There is accumulating evidence that the error-related negativity (ERN), an event-related potential elicited after erroneous actions, is altered in different psychiatric disorders and may help to guide treatment options. Thus, the ERN is a promising candidate as a psychiatric biomarker. Basic methodological requirements for a biomarker are standardized and reliable measurements. Additional psychiatry specific requirements are time efficiency and patient-friendliness.
The aim of the present study is to establish ERN acquisition in a reliable, time-efficient and patient-friendly way for use in clinical practice.
Healthy subjects (N=27) performed a modified Eriksen Flanker Task with adaptive reaction time window and only incongruent stimuli that maximizes the number of errors. All participants were tested for mental health by the Mini International Neuropsychiatric Interview (M.I.N.I.). The first N=12 subjects were part of a pilot study and further N=14 subjects were included for analysis (one subject was excluded due to technical problems). In a test-retest design with two sessions separated by 28 days the reliability of the ERN has been assessed. To ensure external validity, we aimed to replicate previously reported correlation patterns of ERN amplitude with (1) number of errors and (2) negative affect. State affect of each subject was measured by the Positive and Negative Affect Schedule. In order to optimize the clinical use of the task, we determined to which extent the task can be shortened while keeping reliability >0.80.
We found excellent reliability of the ERN (intraclass correlation coefficient =0.806-0.947) and replicated specific correlation patterns (ERN amplitude with relative number of errors: r=0.394; p=0.082; ERN amplitude with negative affect: r=-0.583, p=0.014). The task can be shortened to a patient-friendly and clinically feasible length of only 8 minutes keeping reliability >0.80.
To conclude, the present modified task provides reliable and efficient recording of the ERN, facilitating its use as a psychiatric biomarker.
Das Hepatozelluläre Karzinom (HCC) ist die sechsthäufigste Krebsart mit der zweithäufigsten krebsbedingten Letalität. Sorafenib ist bereits seit über 10 Jahren die einzige verfügbare und zugelassene systemische Chemotherapie. Allerdings zeigen Patienten oft eine Resistenz gegenüber Sorafenib.
In zahlreichen Krebsarten konnte bereits gezeigt werden, dass Sphingolipide bei der Tumorentwicklung und Chemoresistenz eine wichtige Rolle spielen. Sphingolipide sind bioaktive Lipidmoleküle, welche unteranderem für die Beeinflussung verschiedener Signalwege intra- und extrazellulär verantwortlich sind. So konnte gezeigt werden, dass das Verhältnis zwischen Sphingosin-1-Phosphat (S1P) und Ceramiden eine wichtige Rolle für das Überleben von Zellen spielt, wobei eine Verschiebung des Verhältnisses zugunsten des S1P meist eine proliferative Wirkung auf Zellen hat. Für die Phosphorylierung des Sphingosins zu S1P sind die zwei Enzyme Sphingosinkinase 1 und 2 (SPHK1/2) verantwortlich.
Es gibt bereits Studien, die nachweisen konnten, dass diese Enzyme gerade in Tumorzellen verstärkt exprimiert werden. Auf der anderen Seite kann eine verstärkte Bildung von Ceramiden die Apoptose der Tumorzellen verstärken. Daher ist es nicht verwunderlich, dass der Sphingolipid-Stoffwechsel einen interessanten Angriffspunkt für die Krebstherapie darstellt. Aus diesem Grund sollte in der vorliegenden Arbeit zunächst untersucht werden, ob Sorafenib einen Einfluss auf den Sphingolipid Stoffwechsel hat. Weiter sollte untersucht werden, ob die Beeinflussung des Sphingolipid-Stoffwechsels die Effekte von Sorafenib potenzieren könnte.
Es konnte zunächst gezeigt werden, dass Sorafenib die mRNA-Expression verschiedener Enzyme, die das Verhältnis zwischen Ceramiden und S1P regulieren, beeinflussen kann. Es wurde weiter untersucht, wie sich der Ceramidsynthase Inhibitor FB1 auf die Proliferation und die Induktion der Apoptose auswirkt. Dies wurde ebenfalls mit SLP (SPHK1 Inhibitor), SLM (SPHK2 Inhibitor) und SKI II, einem unspezifischen Inhibitor beider Sphingosinkinasen, untersucht. Es wurden weiter die Einflüsse aller verwendeten Substanzen auf die Bildung verschiedener Sphingolipide untersucht.
Hierbei konnte gezeigt werden, dass Sorafenib in der Lage ist, die Proliferation der Zellen zu hemmen und die Apoptose-Induktion zu fördern. Weiter führte Sorafenib zu einer Akkumulation der Dihydroceramide. Was wiederrum weder mit SKI II, FB1; SLP noch SLM beobachtet werden konnte. Der signifikante Anstieg der Dihydroceramid-Konzentrationen konnte mit dem durch Sorafenib induzierten oxidativen Stress in Verbindung gebracht werden.
SLP und SLM waren nicht in der Lage, die Effekte von Sorafenib auf die Proliferation zu potenzieren. Die Kombination von Sorafenib mit SLP oder SLM führte jedoch in den Huh7.5 Zellen zu einer drastischen Reduktion des S1P-Spiegel.
FB1 und SKI II führten zu einer stärkeren Hemmung der Proliferation als Sorafenib. Wobei gezeigt werden konnte, dass beide Substanzen die Ceramid-Spiegel tendenziell eher vermindern und die S1P-Spiegel erhöhen. Durch die Stimulation mit FB1 kam es sogar zu einer signifikanten Erhöhung der S1P-Spiegel. Es scheint, dass der Einfluss von FB1 und SKI II auf die Proliferation der Zellen unabhängig vom Sphingolipid-Stoffwechsel ist. Diese scheinen eher über andere Mechanismen zu wirken. Es könnte von Interesse sein, gerade diese Signalwege von SKI II im HCC weiter zu untersuchen, da SKI II bereits in Mausmodellen anderer Krebsarten vielversprechende Ergebnisse zeigte.
Für ausgewählten Patienten mit Aortenklappeninsuffizienz (AI) bietet die Aortenklappenrekonstruktion eine sehr attraktive Alternative zum Klappenersatz, wodurch mögliche prothesenbezogene Komplikationen vermieden werden können.
Die begrenzte Zahl der Langzeitstudien sowie das Fehlen von standardisierten Verfahren machen die klappenerhaltende Aortenklappenchirurgie technisch anspruchsvoll.
Ziel dieser Arbeit ist es, die Langzeitergebnisse nach Aortenklappenrekonstruktion zu erfassen und die Haltbarkeit sowie die klappenbezogenen Komplikationen nach klappenerhaltender Aortenklappenchirurgie zu untersuchen.
Hierzu analysierten wir die klinischen Daten von 560 Patienten, die eine operative Versorgung mittels Aortenklappenrekonstruktion erhielten. Dabei wurden sowohl Segelpathologien (bikuspid sowie trikuspid) als auch Aortenwurzelpathologien berücksichtigt. Bei 56% der Patienten (n=313) wurde eine Reimplantation nach David durchgeführt. Bei 247 Patienten wurde bei isolierter Segelpathologie ohne Aortenwurzelbeteiligung eine Segelrekonstruktion durchgeführt. Pathologien der Aortenwurzel konnten mit subkommissuralen Nähten (bei 62 Patienten) oder mit Rekonstruktion des sinotubulären Übergangs (bei 60 Patienten) behoben werden. Begleitende Aorteneingriffe bei Aneurysma oder Dissektion der thorakalen Aorta wurden ebenfalls durchgeführt. So wurden bei 78 Patienten ein partieller Aortenbogenersatz, bei 12 Patienten ein kompletter Aortenbogenersatz und bei 14 Patienten ein Bogenersatz mit „Elephant Trunk“ Technik durchgeführt.
Die Nachuntersuchungen erfolgten anhand eines standardisierten Fragebogens 5 sowie durch transthorakal echokardiographische Verlaufskontrollen. Die durchschnittliche Nachuntersuchungszeit betrug 6.3 ± 4.6 Jahre, 97% der Patienten konnten dabei erfasst werden.
Die 30-Tage-Mortalität betrug 1,4%. Im Langzeitverlauf wurden 132 Verstorbene beobachtet, wobei 13 Patienten aufgrund eines kardiovaskulären Ereignisses verstarben. Das 10-Jahres-Überleben betrug 70%. Eine Reoperation war bei 39 Patienten notwendig, in 25 Fällen aufgrund von signifikanter Restinsuffizienz der Aortenklappe, in 5 Fällen aufgrund eines kombinierten Aortenklappenvitium. Endokarditis führte in 9 Fällen zur Reoperation (0,2% pro Patientenjahr). Die Freiheit von Reoperation betrug 88% nach 10 Jahren. Die klappenbezogenen Komplikationen ergaben eine kumulative linearisierte Inzidenz von 2% pro Patientenjahr.
Schlussfolgernd kann man sagen, dass die Aortenklappenrekonstruktion für ausgewählte Patienten eine gute Alternative zum Aortenklappenersatz darstellt. Die Haltbarkeit der Klappenfunktion erwies sich in der Langzeitbeobachtung als gut. Die adäquate Wahl der Operationstechnik bezogen auf die Pathologie führen zu guten Ergebnissen der Aortenklappenrekonstruktion mit akzeptabler Mortalität und Morbidität im Langzeitverlauf.
Schwerverletzte Patienten folgen einem biphasischen Mortalitätsmuster, mit einem ersten frühen Mortalitätsgipfel aufgrund von schweren Verletzungen des zentralen Nervensystems oder durch massiven Blutverlust. Der zweite, später auftretende Traumatod ist mit einer immunologischen Dysregulierung verbunden, welche durch eine ausgeprägte Inflammation häufig im (Multi)-Organversagen endet. Insbesonders thorakale Verletzungen sowie das Erleiden eines hämorrhagischen Schocks prädisponieren den Organismus für die Entwicklung von pulmonalen Komplikationen im klinischen Folgevelauf. Alkohol spielt hierbei eine wichtige Rolle. In den vergangenen 15 Jahren hat sich zwar die Anzahl der „Alkoholunfälle“ mit Personenschaden reduziert, dennoch tritt Alkohol als eine der häufigsten Unfallursachen bei 18-34jährigen auf. Zudem hat Alkohol durch seine immunmodulatorischen Eigenschaften einen signifikanten Einfluss auf die Entwicklung und Prognose von (infektiösen) Komplikationen im klinischen Folgeverlauf. Verunfallte Patienten mit einer akuten Alkoholintoxikation zeigen im Vergleich zu chronisch Alkoholisierten eine verringerte 24-Stunden-Letalität nach Trauma. Die Studienlage zu den Hintergründen ist äußerst kontrovers, und stellt den Kern der vorliegenden Arbeit dar. Eine zentrale Rolle in der Genese der post-traumatisch inflammatorischen Immunantwort nehmen die Monozyten, sowie die Alveolarmakrophagen (AM) in der Lunge, aber auch zirkulierende polymorphonukleäre Leukozyten (PMNL) insbesondere neutrophile Granulozyten ein. Die Monozyten aktivieren bspw. über die Inflammasomassemblierung Caspase-1 (Pyroptose), die das inaktive Interleukin (IL)-1β in seine aktive Form prozessiert, aktiviert und seine Sezernierung induziert. Neutrophile Granulozyten, die ebenfalls durch inflammatorische und chemotaktische Reize aktiviert werden, infiltieren durch Modifikationen ihrer Oberflächenrezeptoren wie CD11b, CD62L und CD31 entzündetes Gewebe. Am Ort der „Schädigung“ weisen sie eine prolongierte Lebensspanne auf, und tragen durch ihre verstärkte Akkumulation so zu einem hyper-inflammatorischen Zustand bei. Folglich wird das eigene Gewebe geschädigt, was im Verlust der Zell- und Organintegrität enden kann. Die zugrundeliegenden Pathomechanismen wurden in diversen Studien mit der Aktivierung des Transkriptionsfaktors NF-κB assoziiert. Interessanterweise konnte die anti-inflammatorische Wirkung einer akuten Alkoholexposition mit der Hemmung des NF-κB, aber auch mit einer reduzierten Inflammasomassemblierung in vitro assoziiert werden.
Für die Untersuchung der akuten Alkoholwirkung wurde ein klinisch relevantes double hit Modell bestehend aus stumpfen Thoraxtrauma und hämorrhagischem Schock mit anschließender Flüssigkeitstherapie (TxT+H/R) genutzt. Um den Einfluss von Alkohol auf die posttraumatische Immunantwort mit Fokus auf die Rolle der zirkulierenden neutrophilen Granulozyten und Monozyten in der Genese pulmonaler Schädigungen zu untersuchen, erfolgte im vorliegenden Modell eine akute Gabe von Ethanol (5 g/kg, 30%, EtOH) zwei Stunden vor Hämorrhagie und Reperfusion. Zwei Stunden nach Reperfusion wurden die inflammatorischen Prozesse und das Outcome der Tiere untersucht.
Die Ergebnisse zeigen, dass TxT+H/R zu diffusen histopathologischen Lungenschäden führt, welche mit einer erhöhten Proteinkonzentration in der bronchoalveolären Lavage (BAL), verstärkten Infiltration des Lungengewebes mit PMNL sowie einer systemischen Aktivierung von neutrophilen Granulozyten und Monozyten verbunden war. Neutrophile Granulozyten zeigten eine signifikante Reduktion der Oberflächenexpression von CD62L und einen signifikanten Anstieg von CD11b und CD31; in zirkulierenden Monozyten konnte eine Inflammasomaktivierung durch direkten Nachweis der aktiven Caspase-1 gezeigt werden. Die Analyse der aktiven Effektorcaspasen der Apoptose Caspase-3 und -7 zeigte eine reduzierte Apoptose in zirkulierenden neutrophilen Granulozyten. Orale Gavage EtOH reduzierte signifikant die lokale Inflammation in der Lunge, welche mit einer verminderten PMNL Infiltration, verminderten IL-6 Genexpression und reduziertem BAL Proteingehalt einherging. Während die reduzierte Proteinkonzentration in der BAL durchaus für einen verminderten Lungenschaden spricht, war dieser histopathologisch nicht festellbar. Systemisch modulierte die akute EtOH-Gabe Oberflächenrezeptorexpression auf zirkulierenden neutrophilen Granulozyten, was deren reduzierte Aktivierung bestätigt. Die verminderte inflammatorische Aktivierung von zirkulierenden Monozyten und Granulozyten zeigte sich ebenfalls in der reduzierten Inflammasomaktivität.
Wir konnten wichtige Erkenntnisse für das Verständnis der Genese von pulmonalen Komplikationen nach TxT und HS, sowie die immunmodulatorischen Eigenschaften von Alkohol auf das angeborene Immunsystem darstellen. Die akute Alkoholexposition reduzierte die systemische Immunantwort, welcher in diesem klinisch relevanten Kombinationstrauma vermutlich eine reduzierte lokale Inflammationsantwort folgte. In weiterführenden Studien sollten die zugrundeliegenden Signalwege, Einfluss der Traumachwere sowie der Schwere der Alkoholintoxikation untersucht werden.
Background: Rates of permanent pacemaker implantation (PPI) have been low using the self‐expanding ACURATE neo device, but data regarding risk factors of PPI for this specific device are scarce.
Methods: The study cohort consisted of patients (n = 1000) with severe aortic stenosis undergoing transfemoral transcatheter aortic valve implantation (TAVI) using the ACURATE neo prosthesis in our center between May 2012 and December 2019. For the present analysis, we excluded patients with previous permanent pacemaker (n = 110), high‐grade AV block prior to TAVI (n = 3), and patients requiring conversion to surgical valve replacement (n = 4) or the implantation of a second prosthesis as valve‐in‐valve (n = 15). Preexisting conduction abnormalities were determined, and the implantation depth of the prosthesis was measured on final angiography. Differences across quartiles based on the original consecutive cohort were analyzed with respect to implantation depth and PPI rate. Predictors of PPI were identified using logistic regression.
Results: The PPI rate was 10%. Preexisting AV block I°, right bundle branch block (RBBB), and the implantation depth were independent predictors of PPI. Across quartiles, the implantation depth differed significantly with lowest values in the last quartile, whereas differences of PPI rates across quartiles were not statistically significant, but showed a notable decrease in the last quartile.
Conclusion: Preexisting RBBB, AV block I°, and low implantation depth were independent predictors of PPI following TAVI using the ACURATE neo device. Instead of deliberately aiming at a high position, avoidance of a low implantation depth may represent a reasonable compromise to reduce the rate of PPI without increasing the risk of malpositioning.
Ziel dieser klinischen Studie war es, die Ergebnisse der operativen Behandlung eines idiopathischen Makulaforamens durch Vitrektomie, ggf. in Kombination mit einer Phakoemulsifikation, ILM-Peeling und einer Tamponade entweder mit Luft oder mit 20%-igem SF6-Gas zu vergleichen. Primärer Endpunkt war die Verschlussrate nach einer Vitrektomie und die Reoperationsrate bei primär nicht geschlossenen Makulaforamina. Sekundärer Endpunkt war die Visusentwicklung in der ersten postoperativen Woche und nach 3 Monaten.
In der vorliegenden Arbeit wurden hierzu retrospektiv 117 Augen von 117 konsekutiven Patienten analysiert. Es wurden die Ergebnisse von 2 Patientengruppen verglichen. In der ersten Gruppe wurden 66 Augen (m=27, w=39, Altersmedian 70 Jahre), bei denen am Ende der Vitrektomie eine Tamponade mit Luft erfolgte, untersucht. In der zweiten Gruppe wurden die Ergebnisse von 51 Augen (m=20, w=31, Altersmedian 71 Jahre), bei denen 20%-SF6-Gas als Tamponade verwendet wurde, ausgewertet. Bei etwa 70 % der Augen beider Gruppen erfolgte eine simultane Phakoemulsifikation. Der Verschluss des Makulaforamens wurde bereits in den ersten postoperativen Tagen mit einem modifizierten Fourier Domain-OCT untersucht. Sobald der Verschluss des Makulaforamens im OCT gesichert werden konnte, wurde die postoperative „Gesicht nach unten“-Lagerung („Bauchlage“) beendet. Die mediane Lagerungszeit betrug 1 Tag (Spanne 1-6 Tage). Der Zeitraum der Nachbeobachtung betrug 3 Monate (Median).
Die Verschlussrate nach einer Vitrektomie aller Makulaforamina betrug 87,2% (102/117 Augen). Die primäre Verschlussrate der Luft-Gruppe und der SF6-Gas-Gruppe betrug 83,3% (55/66 Augen) bzw. 92,2% (47/51 Augen). Bei Augen mit einem persistierenden Foramen erfolgte eine frühe Reoperation. Die Verschlussrate nach 3 Monaten lag insgesamt bei 99,1% (116/117 Augen), in der Luft-Gruppe bei 98,5% (65/66 Augen) und in der SF6-Gas-Gruppe bei 100% (51/51 Augen). Es zeigte sich kein statistisch signifikanter Unterschied der Verschlussrate bzw. der anatomischen Ergebnisse zwischen den beiden Endotamponade-Gruppen.
Es konnte jedoch ein statistisch signifikanter Unterschied des Fernvisus bei der Entlassung zwischen beiden Endotamponadegruppen nachgewiesen werden. Der logMAR-Visus bei Entlassung lag in der Luft-Gruppe mit 1,3 (Median) deutlich unter dem Visus der SF6-Gas-Gruppe mit 1,9 (Median). Die Anwendung von Luft führte somit im Vergleich zu SF6 zu einem schnelleren postoperativen Visusanstieg. In beiden Gruppen zeigte sich nach 3 Monaten eine signifikante Visusbesserung. Es ließ sich kein signifikanter Unterschied des Fernvisus zwischen den beiden Gruppen mehr nachweisen.
Die Makulaforamenchirurgie mit pars plana Vitrektomie und Peeling der ILM erzielte sowohl mit einer Luft- als auch mit einer 20%-SF6-Gas-Tamponade guten anatomischen und funktionellen Ergebnissen. Mit einer kurz wirksamen Endotamponade erscheint eine postoperative Lagerung essenziell, dürfte aber in den meisten Fällen nur wenige Tage erforderlich sein, um den Verschluss eines durchgreifenden Makulaforamens zu erreichen. Die Reoperations-Rate nach einer Lufttamponade war bei sehr großen Foramina (> 600 µm) signifikant höher als bei Foramina mit einem Durchmesser kleiner 600 µm. Daher scheint die Anwendung von Gasen, die länger als Luft wirken, nur bei sehr großen Foramina erforderlich zu sein. Vorteil einer kurz wirkenden Lufttamponade ist die postoperativ um einige Tage schneller einsetzende visuelle Rehabilitation, so dass die Patienten früher in ihren Alltag zurückkehren können. Eine frühe postoperative Untersuchung der Makula unter Einsatz der optischen Kohärenztomographie ist Voraussetzung für eine individualisierte Steuerung der Lagerung und für eine möglichst frühe Erkennung und Reoperation von nicht geschlossenen Makulalöchern.
In the past decade, tissue-resident innate lymphoid cells (ILC) have become a central field of immunological research. ILC are a family of innate immune cells comprising cytotoxic Natural Killer (NK) cells and the non-cytotoxic helper like ILC1, ILC2 and ILC3. They mirror the functions and phenotypes of T cells, but do not require rearranged antigen-specific receptors for their rapid response to signals from injured or infected tissue. As potent cytokine producers being enriched in mucosal tissue, ILC play an essential role in tissue maintenance and regulating immunity to chronic inflammation and infection (Vivier et al., 2018). Although heterogeneity and plasticity of ILC complicates their classification, the pathophysiology of a broad variety of autoimmune and chronic inflammatory diseases have been associated with dysregulations in ILC subset distribution and functions (Dzopalic et al., 2019). This highlights their importance in human health and disease and accounts for the need for markers unambiguously describing the different ILC subtypes. This work introduces NKp65, a C-type lectin-like receptor (CTLR) encoded in the natural killer gene complex by the KLRF2 gene, as an exclusive marker for human ILC3. NKp65 expression especially discerns ILC3-like NK cell precursor from mature NK cells which express the NKp65-relative NKp80. Moreover, flow cytometric analysis of NKp65 expression aids in the demarcation of natural cytotoxicity receptor (NCR) expressing ILC3, from the closely related but functionally distinct RORt+ LTi cells and NCR- ILC3. This work further provides insights into NK cell development by in vitro differentiation studies in which NKp65 expressing cells are generated in presence of OP9 feeder cells and cytokines to support development. In such cultures, NKp65 expressing in vitro ILC (ivILC) acquire NKp80 expression in a Notch-dependent manner indicating their differentiation into mature NK cells. Acquisition of NK cell phenotypic markers is accompanied by NKp65 downregulation which leads to the mutually exclusive expression of NKp80 on NK cells and NKp65 on ILC3-like cells. Further insights are provided into the functional consequences of NKp65 engagement by its cognate high affinity ligand ‘keratinocyte-associated C-type lectin’ (KACL) which is selectively expressed on human keratinocytes (Bauer et al., 2015; Spreu et al., 2010). Expressed on ivILC, NKp65 mediates killing of KACL expressing target cells, suggesting that NKp65-KACL interaction promotes cellular cytotoxicity. In this context, the observed metalloproteinase dependent shedding of NKp65 might play a role in the termination of the cellular interaction. The findings on the regulation of NKp65 expression demonstrate the presence of a functional STAT5 response element in the KLRF2 promoter endowing a transcriptional control of NKp65 expression by IL-7 signaling. This provides an interesting link between the dependency of ILC3 on IL-7 signaling for their maintenance and the specific expression of NKp65 on these cells.
In summary, this study provides new insights into the physiologic expression of the CTLR NKp65 on human ILC3. The dependency of NKp65 surface expression on sustained STAT5 signaling provided by IL-7 underlines the connection of NKp65 expression and an ILC3 phenotype which might contribute to promote future research in discerning the interspersed pathways of ILC3 and NK cell development. The tissue and cell specific expression of NKp65 on ILC3 and its ligand KACL on keratinocytes of the human skin further suggests an important role of this genetically coupled receptor-ligand pair in tissue specific immunosurveillance.
Background: The aim of this study was to evaluate post‐irradiation changes in the central nervous system (CNS) detected using magnetic resonance (MR) imaging.
Methods: Magnetic resonance images of 15 children with CNS tumors treated through whole‐brain irradiation over 10 years were reviewed retrospectively. Variables such as age at the time of irradiation, total radiation dose, treatment length, and time interval between irradiation and MR changes, were evaluated.
Results: All patients included in the study had imaging abnormalities of the CNS. Eight patients (53%) developed CNS abnormalities within a short period of time – only a few months after irradiation (mean 4.8 months). Seven patients (47%) developed CNS abnormalities within a long time interval after treatment (mean 4.6 years). In almost all patients, a T2 increase in supra‐ and infratentorial white matter was observed. Follow‐up examinations showed nine patients (60%) with cerebellar atrophy.
Conclusions: In this sample of pediatric patients who underwent whole‐brain irradiation, the time receiving irradiation was not related to the severity of the MR changes. A correlation between the age of the child or the length of the radiotherapy and the extent of the changes could not be confirmed. However, we observed a trend towards stronger brain parenchymal degeneration with cystic changes in the younger age group of children in our sample. Older children who received irradiation seem to be more susceptible to vascular dysplasia with cavernous hemangiomas and microbleeding.
Background: Conditions during blood product storage and transportation should maintain quality. The aim of this in vitro study was to investigate the effect of interruption of agitation, temporary cooling (TC), and pneumatic tube system transportation (PTST) on the aggregation ability (AA) and mitochondrial function (MF) of platelet concentrates (PC).
Study Design and Methods: A PC was divided equally into four subunits and then allocated to four test groups. The control group (I) was stored as recommended (continuous agitation, 22 ± 2°C) for 4 days. The test groups were stored without agitation (II), stored as recommended, albeit 4°C for 60 minutes on day (d)2 (III) and PTST (IV). Aggregometry was measured using Multiplate (RocheAG; ADPtest, ASPItest, TRAPtest, COLtest) and MF using Oxygraph‐2k (Oroboros Instruments). The basal and maximum mitochondrial respiratory rate (MMRR) were determined. AA and MF were measured daily in I and II and AA in III and IV on d2 after TC/PTST. Statistical analysis was performed using tests for matched observations.
Results: Eleven PCs were used. TRAP‐6 induced AA was significantly lower in II when compared to I on d4 (P = 0.015*). In III the ASPItest was significantly lower (P = 0.032*). IV showed no significant differences. The basal and MMRR were significantly reduced over 4 days in I and II (for both rates in both groups: P = <0.0001*). No significant differences occurred on d4 (P = 0.495).
Conclusion: Our results indicate that ex vivo AA and MF of PCs are unaffected, even in no‐ideal storage and transport circumstances with respect to agitation, temperature, and force.
Autism spectrum disorder (ASD) is a complex neurodevelopmental disorder that is accompanied by neurodevelopmental differences in regional cortical volume (CV), and a potential layer‐specific pathology. Conventional measures of CV, however, do not indicate how volume is distributed across cortical layers. In a sample of 92 typically developing (TD) controls and 92 adult individuals with ASD (aged 18–52 years), we examined volumetric gradients by quantifying the degree to which CV is weighted from the pial to the white surface of the brain. Overall, the spatial distribution of Frustum Surface Ratio (FSR) followed the gyral and sulcal pattern of the cortex and approximated a bimodal Gaussian distribution caused by a linear mixture of vertices on gyri and sulci. Measures of FSR were highly correlated with vertex‐wise estimates of mean curvature, sulcal depth, and pial surface area, although none of these features explained more than 76% variability in FSR on their own. Moreover, in ASD, we observed a pattern of predominant increases in the degree of FSR relative to TD controls, with an atypical neurodevelopmental trajectory. Our findings suggest a more outward‐weighted gradient of CV in ASD, which may indicate a larger contribution of supragranular layers to regional differences in CV.
Hintergrund: Die Einnahme vieler Antidepressiva und Antipsychotika in der frühen Schwangerschaft kann nach aktuellem Forschungsstand als sicher bezüglich des Risikos für Fehlbildungen erachtet werden. Daten hinsichtlich der Sicherheit einer Psychopharmakotherapie während der Stillperiode sind hingegen rar. Die meisten Betroffenen würden einerseits gerne ihre Kinder stillen, andererseits wollen sie aber auch sicher sein, dass sie ihrem Nachwuchs dadurch nicht schaden.
Ziele: Unser Ziel war es herauszufinden ob eine Korrelation zwischen der Tagesdosis der Psychopharmaka und der Medikamentenkonzentration im Serum sowie in der Muttermilch (MM) besteht. Weiterhin untersuchten wir, ob es eine allgemeingültige Regeln gibt, wie sich Muttermilchmedikamentenkonzentrationen im Tagesverlauf verhalten. Außerdem wollten wir herausfinden ob die Medikamentenexposition in der Schwangerschaft und/oder Stillperiode einen Einfluss auf die Entwicklung des Kindes in den ersten zwölf Lebensmonaten hat.
Methoden: Wir untersuchten therapeutische Medikamentenspiegel parallel in Serum und MM zu verschiedenen Zeitpunkten um herauszufinden wann die höchsten/niedrigsten Konzentrationen ermittelt werden konnten. Neben dem Talspiegel, nach 12 h oder 24 h (T1), sammelten wir Proben 4 h (T5) und 8 h (T6) nach der Medikamenteneinnahme sowie direkt nach der Medikamenteneinnahme (T2), 1 h nach T2 (T3) und direkt beim nächsten Stillen (T4). Die Messungen wurden im TDM Labor im Zentrum für psychsiche Gesundheit, Universitätsklinikum Würzburg mittels isokratischer reversed-phase high performance liquid Chromatographie durchgeführt. Wir rekrutierten 25 Patientinnen, die in der ambulanten Spezialsprechstunde für psychiatrische Erkrankungen in Schwangerschaft und Stillzeit behandelt wurden. 68% der Patientinnen nahmen in der Schwangerschaft schon ein Psychopharmakon ein. Die Patientinnen litten an unipolaren Depressionen (n = 15), bipolaren Störungen (n = 2), schizoaffektiven Störungen (n = 2) sowie Angst- (n = 4) und Zwangsstörungen (n = 2). Das Spektrum von Antidepressiva und Antipsychotika erstreckte sich von Amitriptylin/Nortriptylin, Clomipramin/N-Desmethyl-Clomipramin, Mirtazapin, Escitalopram, Citalopram, Sertralin, Venlafaxin/ O-Desmethyl-Venlafaxin bis hin zu Lamotrigin und Quetiapin. Weiterhin erfassten wir ob es postnatale Auffälligkeiten sowie im Verlauf Entwicklungsauffälligkeiten bei den exponierten Kinder gab (Daten aus den routinemäßigen U-Untersuchungen der ersten 12 Lebensmonate). Um mehr Daten zur Kindesentwicklung zu sammeln, interviewten wir in einem retrospektiven Unterprojekt 14 weitere Patientinnen, die in der Vergangenheit von der Thematik betroffen waren.
Ergebnisse: Die parallel bestimmten Talspiegel in Serum und MM korrelierten nicht signifikant bei der Analyse aller Medikamente zusammen oder bei der Analyse der einzelnen Medikamente (Spearman Rho Korrelation, p > 0,05). Die Talspiegel im Serum korrelierten weder signifikant mit den Muttermilchkonzentration nach 4 h (T5), noch mit denen nach 8 h (T6) (Spearman Rho Korrelation, p = 0,46; p = 0,08). Die Tagesdosis korrelierte signifikant mit dem Talspiegel im Serum (p = 0,001), jedoch nicht mit den gleichzeitig bestimmten Muttermilchkonzentrationen (p = 0,88). Die Konzentrationen von Venlafaxin in der MM fielen relativ hoch aus. Es zeigte sich eine große interindividuelle Variation der Konzentrationen der unterschiedlichen Medikamente zu verschiedenen Zeitpunkten. Clomipramin und Quetiapin konnten gar nicht oder nur in sehr niedrigen Konzentrationen in der MM gemessen werden (n = 2, n = 4) wie auch Sertralin (ohne Ausreißer-Werte) und Escitalopram. Auch konnte Quetiapin nicht im Serum eines gestillten Kindes nachgewiesen werden, bei dem wir Blutproben gewinnen konnten (n = 1). Keines der gestillten Kinder zeigte negative Auswirkungen aufgrund der Medikation. Die höchste „concentration-bydose-ratio“ (C/D) in der MM wurden für Venlafaxin (n = 4, C/D MM = 5,11) und Lamotrigin (n = 1, C/D MM = 10,0) errechnet, während Clomipramin (n = 2, C/D MM = 0,0), Quetiapin (n = 4, C/D MM = 0,02) und Sertralin (n = 3, C/D MM = 0,03) die niedrigsten Quotienten zeigten. Wir kalkulierten die höchste „milk-to-plasma-ratio“ (M/P) für Mirtazapin (n = 3, M/P = 3,92) und Venlafaxin (n = 2, M/P = 2,4) sowie die niedrigsten für Clomipramin (n = 2, M/P = 0), Quetiapin (n = 3, M/P = 0,03) und Sertralin (n = 3, M/P = 0,08), was für ein niedriges Eindringungsvermögen vom Serum in die MM spricht.
Die Extrakorporale Membranoxygenierung (ECMO) ist ein extrakorporales Organersatzverfahren, welches heutzutage insbesondere als Lungenersatzverfahren oder als kreislaufunterstützendes Verfahren zum Einsatz kommt. Seit dem ersten Einsatz 1971 im Rahmen eines posttraumatischen „Acute Respiratory Distress Syndrom“ (ARDS) ist die Zahl der ECMO-Behandlungen im kardiopulmonalen Bereich massiv gestiegen. Dennoch wird der Nutzen der ECMO kontrovers diskutiert. Die aktuellste randomisiert kontrollierte Studie aus dem Jahre 2018 konnte keinen signifikanten Nachweis erbringen, dass die Therapie des ARDS mittels einer ECMO einen Überlebensvorteil bringt. Randomisiert kontrollierte Studien bei Patienten mit kardiogenem Schock liegen zum gegenwärtigen Zeitpunkt nicht vor und für den Einsatz bei septischem Schock ist die Datenlage und Evidenz schwach. Angesichts der ungeklärten Evidenz und weil die ECMO ein komplexes, kostenintensives und mit Risiken verbundenes Verfahren ist, scheint eine sorgfältige Indikationsstellung unverzichtbar zu sein. Das Ziel unserer Studie war daher die Analyse der Mortalität bei Patienten mit Lungenversagen, kardiogenem Schock und septischem Schock. Darüber hinaus sollten mit der Mortalität assoziierte prognostische Variablen identifiziert werden. Des Weiteren sollte untersucht werden, ob sich mit steigender Fallzahl eine Lernkurve beobachten lässt.
Zu diesem Zwecke führten wir eine retrospektive Kohortenstudie an 131 Patienten durch, die zwischen April 2011 und Juli 2016 in der Asklepios Klinik Langen mit einer ECMO behandelt wurden. Die Patienten wurden hierbei in die drei oben genannten Gruppen kategorisiert. Mithilfe logistischer Regression erfolgte die Identifizierung prognostischer Variablen. Eine Lernkurve wurde anhand des „non-risk-adjusted cumulative observed minus expected failure graph“-Verfahrens erstellt.
Die Analyse der Daten ergab eine Gesamtmortalität von 56%. Die Mortalität bei Patienten mit Lungenversagen, kardiogenem Schock und septischem Schock betrug 54%, 59% bzw. 58%. Bei Patienten mit Lungenversagen waren das Alter, das Jahr und weniger als 20 Fälle pro Jahr signifikant mit der Mortalität assoziiert. Bei Patienten mit kardiogenem Schock waren mit der Mortalität assoziierte Variablen das Alter, der SAPS II-Score, der pH-Wert, der Serumlaktatwert prä-ECMO, der Basenüberschuss prä-ECMO sowie eine Hyperlipidämie. Bei Patienten mit septischem Schock konnten keine mit der Mortalität assoziierten Variablen identifiziert werden. In der multivariaten Regressionsanalyse nach Modellabbau zeigten sich in der gesamten Kohorte das Alter, das prä-ECMO Serumlaktat sowie weniger als 20 Fälle pro Jahr als signifikant mit der Mortalität assoziierte Variablen. Patienten, die vor 2014 behandelt wurden, also in einem Zeitraum mit weniger als 20 ECMO-Fällen pro Jahr, hatten eine signifikant höhere Mortalität als Patienten die im Intervall 2014-2016 behandelt wurden. Mit steigender Fallzahl konnte eine Lernkurve nachgewiesen werden, die einen Wendepunkt im Jahr 2014 zeigte. Der im Jahr 2014 beginnende Abwärtstrend signalisierte eine geringere Sterblichkeitsrate als erwartet.
Zusammenfassend ist die Mortalität in allen Indikationen weiter hoch. Die Fallzahl und damit auch die Erfahrung scheint eine wichtige Rolle in Bezug auf die Mortalität zu spielen. Des Weiteren unterstützen unsere Ergebnisse frühere Studien, die einen Einfluss des Alters und des prä-ECMO Laktat-Wertes auf die Mortalität zeigen konnten.
Introduction: Haemophilia (HA) and rheumatoid arthritis (RA) patients may develop joint damage caused by recurrent joint bleedings in HA or by chronic inflammation in RA. Only few data exist for biomarker studies in these patients.
Aim: The objective of the present study is to assess a large array of biomarkers in peripheral blood samples obtained from HA patients without or with arthropathy and to compare pattern to RA patients and healthy controls.
Methods: A panel of biomarkers was assessed in 129 men (40 HA patients without arthropathy, 23 HA patients with arthropathy, 23 RA patients and 43 control subjects). 37 different biomarkers (cytokines, angiogenesis‐related proteins) were analysed using a multiple analyte profiling technology and supplemented by acute phase proteins, coagulation and immunological parameters.
Results: Evidence for systemic inflammation was obtained by increased acute phase reactants in all patient groups. 13 or 14 from 42 soluble parameters demonstrated significant differences (p < .05) between HA patients without arthropathy and healthy controls, or between HA patients with arthropathy and healthy controls, respectively. Largely overlapping patterns were obtained except for interleukin‐7 being increased in HA patients without arthropathy and being decreased in HA in the presence of arthropathy.
Conclusions: In addition to data supporting systemic inflammation, we provide evidence for a common biomarker profile in HA patients and RA patients compared to healthy controls. A distinctive biomarker profile for HA patients with arthropathy did not appear except for interleukin‐7 demonstrating specific changes depending on the absence or presence of arthropathy in HA patients.
Background: In pain research and clinics, it is common practice to subgroup subjects according to shared pain characteristics. This is often achieved by computer‐aided clustering. In response to a recent EU recommendation that computer‐aided decision making should be transparent, we propose an approach that uses machine learning to provide (1) an understandable interpretation of a cluster structure to (2) enable a transparent decision process about why a person concerned is placed in a particular cluster.
Methods: Comprehensibility was achieved by transforming the interpretation problem into a classification problem: A sub‐symbolic algorithm was used to estimate the importance of each pain measure for cluster assignment, followed by an item categorization technique to select the relevant variables. Subsequently, a symbolic algorithm as explainable artificial intelligence (XAI) provided understandable rules of cluster assignment. The approach was tested using 100‐fold cross‐validation.
Results: The importance of the variables of the data set (6 pain‐related characteristics of 82 healthy subjects) changed with the clustering scenarios. The highest median accuracy was achieved by sub‐symbolic classifiers. A generalized post‐hoc interpretation of clustering strategies of the model led to a loss of median accuracy. XAI models were able to interpret the cluster structure almost as correctly, but with a slight loss of accuracy.
Conclusions: Assessing the variables importance in clustering is important for understanding any cluster structure. XAI models are able to provide a human‐understandable interpretation of the cluster structure. Model selection must be adapted individually to the clustering problem. The advantage of comprehensibility comes at an expense of accuracy.
Ionizing radiation interacts with the immune system in many ways with a multiplicity that mirrors the complexity of the immune system itself: namely the need to maintain a delicate balance between different compartments, cells and soluble factors that work collectively to protect, maintain, and restore tissue function in the face of severe challenges including radiation damage. The cytotoxic effects of high dose radiation are less relevant after low dose exposure, where subtle quantitative and functional effects predominate that may go unnoticed until late after exposure or after a second challenge reveals or exacerbates the effects. For example, low doses may permanently alter immune fitness and therefore accelerate immune senescence and pave the way for a wide spectrum of possible pathophysiological events, including early-onset of age-related degenerative disorders and cancer. By contrast, the so called low dose radiation therapy displays beneficial, anti-inflammatory and pain relieving properties in chronic inflammatory and degenerative diseases. In this review, epidemiological, clinical and experimental data regarding the effects of low-dose radiation on the homeostasis and functional integrity of immune cells will be discussed, as will be the role of immune-mediated mechanisms in the systemic manifestation of localized exposures such as inflammatory reactions. The central conclusion is that ionizing radiation fundamentally and durably reshapes the immune system. Further, the importance of discovery of immunological pathways for modifying radiation resilience amongst other research directions in this field is implied.
Flat Panel CT Pooled Blood Volume-Mappen vor mechanischer Rekanalisation beim akuten Schlaganfall
(2020)
In der Akutdiagnostik des Schlaganfalles sind die Multislice Computertomographie (MSCT) sowie gegebenenfalls die Kernspintomographie die radiologischen Methoden der Wahl zunächst zur Differenzierung eines ischämischen oder hämorrhagischen Geschehens sowie im Falle einer Ischämie zur Darstellung des Gefäßverschlusses und der Perfusionssituation. Mit Hilfe von Flat Panel Detektoren (flat panel detector computed tomography (FDCT)) in Angiographie-Einheiten konnten zunächst Schnittbilder des Kopfes ähnlich denen einer konventionellen MSCT angefertigt werden, womit ein Blutungsausschluss möglich ist. Des Weiteren wurden sogenannte „Pooled Blood Volume“ (PBV)-Karten entwickelt, welche konzipiert wurden, um das Areal mit vermindertem zerebralem Blutvolumen (cerebral blood volume = CBV) und somit annäherungsweise den Infarktkern darzustellen.
Innerhalb der letzten 10 Jahre hat sich die mechanische Rekanalisation als Therapie des akuten Verschlusses proximaler zerebraler Arterien durchgesetzt. Häufig müssen Patienten für die Intervention aus peripheren Krankenhäusern in Schlaganfall-Zentren verlegt werden, sodass eine Aktualisierung der zerebralen Perfusionsparameter zur Darstellung der Progression der Ischämie und zur Prognose-Abschätzung erstrebenswert ist. Gäbe es die Möglichkeit einer solchen Bildgebung innerhalb der Angiographie- und Interventions-Einheit, so könnte wertvolle Zeit, welche sonst für den innerklinischen Transport, Umlagerung des Patienten etc. benötigt wird, eingespart werden. Auch bei schwer betroffenen Patienten, welche direkt in das jeweilige Schlaganfall-Zentrum eingeliefert werden, könnte somit die Zeit zwischen Ankunft in der Klinik bis zur Gefäß-Rekanalisation bedeutsam verkürzt werden.
In der vorliegenden Studie wurde die Zuverlässigkeit der PBV-Karten hinsichtlich der Abschätzung des späteren Infarktareales untersucht. Hierfür wurden bei 29 aufeinanderfolgenden Patienten mit akuten intrakraniellen Verschlüssen der Arteria carotis interna oder Arteria cerebri media das präinterventionelle Volumen der in den Quellbildern der PBV-Karten dargestellten Minderperfusion mit dem finalen Infarktvolumen, wie es sich in den postinterventionellen konventionellen MSCT-Kontrollen darstellte, verglichen. Außerdem wurde durch Bestimmung der Hounsfield-Einheiten die Stärke der Minderperfusion in dem Areal der PBV-Veränderung gemessen und mit der gesunden Gegenseite verglichen. Die mechanische Rekanalisation war bei 26 der Patienten erfolgreich.
Insgesamt war das mediane präinterventionelle PBV-Defizit 9-mal größer als das mediane finale Infarktvolumen (86,4 ml (10,3; 111,6) versus 9,6 ml (3,6; 36,8)). Dieses Ergebnis basierte insbesondere auf der Subgruppe der erfolgreich rekanalisierten Patienten (PBV Defizit: 87,5 ml (10,6; 115,1), finales Infarktvolumen: 8,7 ml (3,6; 29)). Im Falle einer frustranen Intervention wurde das finale Infarktvolumen eher unterschätzt (PBV Defizit: 86,4 ml (5,9; -), finales Infarktvolumen: 116,4 ml (3,5; -)). Es gab keinen signifikanten Unterschied zwischen der HU Ratio im Bereich des später infarzierten Gewebes (0,45 (0,29; 0,51)) und der umgebenden minderperfundierten „Penumbra“ (0,4 (0,33; 0,5)) (p=0,679). Die HU Ratio zeigte eine signifikante negative Korrelation mit dem Volumen der PBV-Läsion (r= -0,448, p= 0,008).
Zusammenfassend wurde aus den Ergebnissen dieser Studie geschlossen, dass die FDCT PBV-Karten nicht zuverlässig das finale Infarktvolumen prognostizieren und daher keinen Einfluss auf die akute Therapieentscheidung haben sollten. Ursächlich sind technische und methodische Limitationen sowie die Art des untersuchten Perfusionsparameters.
Classical Hodgkin lymphoma (cHL) is one of the most common malignant lymphomas in Western Europe. The nodular sclerosing subtype of cHL (NS cHL) is characterised by a proliferation of fibroblasts in the tumour microenvironment, leading to fibrotic bands surrounding the lymphoma infiltrate. Several studies have described a crosstalk between the tumour cells of cHL, the Hodgkin- and Reed-Sternberg (HRS) cells, and cancerassociated fibroblasts (CAF). However, to date a deep molecular understanding of these fibroblasts is lacking. Aim of the present study therefore was a comprehensive
characterisation of these fibroblasts. Moreover, only a few studies describe the interplay of HRS cells and CAF. The paracrine communication and direct interaction of these two
cellular fractions have been investigated within this study. Finally, the influence of a few HRS cells within a lymph node orchestrate the mere alteration of its architecture and
morphology. Gene expression and methylation profiles of fibroblasts isolated from primary lymph node suspensions revealed persistent differences between fibroblasts obtained from NS cHL and lymphadenitis. NS cHL derived fibroblasts exhibit a myofibroblastic - inflammatory phenotype characterised by MYOCD, CNN1 and IL-6 expression. TIMP3, an inhibitor of matrix metalloproteinases, was strongly upregulated in NS cHL fibroblasts, likely contributing to the accumulation of collagen in sclerotic bands of NS cHL. Treatment by luteolin could reverse this fibroblast phenotype and decrease TIMP3 secretion. NS cHL fibroblasts showed enhanced proliferation when they were exposed to soluble factors released from HRS cells. For HRS cells, soluble
factors from fibroblasts were not sufficient to protect them from Brentuximab-Vedotin(BV) induced cell death. However, HRS cells adherent to fibroblasts were protected from BV-induced injury. The cHL specific interaction of both cell fractions reveals an initiation of inflammatory key regulators such as IL13 and IL4. Among important adhesion molecules known from literature the blocking of integrin beta 1 solely interrupted the adhesion of HRS cells to CAF. In summary, this study proves the stable reprograming of CAF phenotype and expression derived from NS cHL. It presents a suitable in vitro model for studying the interaction of HRS cells and CAF by paracrine factors and adherence. Most importantly the observations confirm the importance of fibroblasts for HRS cells´ inflammatory niche and cell survival associated with TIMP3 which probably acts as a major factor to the typical accumulation of fibrosis observed in NS cHL.
Objective: Combination antiretroviral therapy (cART) has markedly increased survival and quality of life in people living with HIV. With the advent of new treatment options, including single-tablet regimens, durability and efficacy of first-line cART regimens are evolving.
Methods: We analyzed data from the prospective multicenter German Clinical Surveillance of HIV Disease (ClinSurv) cohort of the Robert-Koch Institute. Kaplan–Meier and Cox proportional hazards models were run to examine the factors associated with treatment modification. Recovery after treatment initiation was analyzed comparing pre-cART viral load and CD4+ T-cell counts with follow-up data.
Results: We included 8788 patients who initiated cART between 2005 and 2017. The sample population was predominantly male (n = 7040; 80.1%), of whom 4470 (63.5%) were reporting sex with men as the transmission risk factor. Overall, 4210 (47.9%) patients modified their first-line cART after a median time of 63 months (IQR 59–66). Regimens containing integrase strand transfer inhibitors (INSTI) were associated with significantly lower rates of treatment modification (adjusted hazard ratio 0.44; 95% CI 0.39–0.50) compared to protease inhibitor (PI)-based regimens. We found a decreased durability of first-line cART significantly associated with being female, a low CD4+ T-cell count, cART initiation in the later period (2011–2017), being on a multi-tablet regimen (MTR).
Conclusions: Drug class and MTRs are significantly associated with treatment modification. INSTI-based regimens showed to be superior compared to PI-based regimens in terms of durability.
Hepatocyte nuclear factor 4α (HNF4α) is a ligand-sensing transcription factor and presents as a potential drug target in metabolic diseases and cancer. In humans, mutations in the HNF4α gene cause maturity-onset diabetes of the young (MODY), and the elevated activity of this protein has been associated with gastrointestinal cancers. Despite the high therapeutic potential, available ligands and structure–activity relationship knowledge for this nuclear receptor are scarce. Here, we disclose a chemically diverse collection of orthogonally validated fragment-like activators as well as inverse agonists, which modulate HNF4α activity in a low micromolar range. These compounds demonstrate the druggability of HNF4α and thus provide a starting point for medicinal chemistry as well as an early tool for chemogenomics.
»Wir müssen lernen, magische Kugeln zu gießen, die gleichsam wie Zauberkugeln des Freischützen nur die Krankheitserreger treffen.« Dieser Anspruch von Paul Ehrlich klingt in der aktuellen Corona-Pandemie zutreffender denn je und schien auch die Redner bei der Feierstunde zur Vergabe des Paul Ehrlich- und Ludwig Darmstaedter-Preises 2020 bewegt zu haben.
Apps und »virtuelle Brillen« werden in der Behandlung von Stimmungs- und Angststörungen zunehmend zur Realität. Auch das Team von Prof. Dr. Andreas Reif an der Klinik für Psychiatrie, Psychosomatik und Psychotherapie der Goethe-Universität beteiligt sich an klinischen Studien. »In unserer neuen VR-Angst-Ambulanz werden wir mit bereits in Studien erprobten VR-Modulen arbeiten. So können wir aktuelle Erkenntnisse zügig in der Therapie umsetzen«, so Reif. In einem zweiten Projekt geht es um Behandlung von Depressionen mit Methoden der Virtuellen Realität (VR).
Zur ergonomischen Beurteilung von Arbeitsplätzen werden „ergonomic risk assessment tools“ (ERAT) verwendet. Mithilfe dieser kann die körperliche Belastung evaluiert und hinsichtlich eines biomechanischen Überlastungsrisikos bewertet werden. Dazu gehören neben Eigenangaben auch observatorische Methoden, deren Ergebnisse in Punktwerten („Scores“) zusammengefasst werden, wie z. B. die RULAMethode („rapid upper limb assessment“). Durch die technische Weiterentwicklung direkter Messmethoden können inertiale Motion-Capture-Systeme im 21. Jahrhundert präzise und kontinuierliche objektive Daten liefern. In einem neuen Ansatz wurde die observatorische Scoring-Methode RULA modifiziert und auf die digital erhobenen Daten angewendet, was differenzierte ergonomische Betrachtungen ganzer Arbeitsabläufe ermöglicht.
Purpose: Does surgical approach (minimally invasive vs. open) and type (radical vs. partial nephrectomy) affects opioid use and workplace absenteeism.
Materials and Methods: Retrospective multivariable regression analysis of 2,646 opioid-naïve patients between 18 and 64 undergoing radical or partial nephrectomy via either a minimally invasive vs. open approach for kidney cancer in the United States between 2012 and 2017 drawn from the IBM Watson Health Database was performed. Outcomes included: (1) opioid use in opioid-naïve patients as measured by opioid prescriptions in the post-operative setting at early, intermediate and prolonged time periods and (2) workplace absenteeism after surgery.
Results: Patients undergoing minimally invasive surgery had a lower odds of opioid use in the early and intermediate post-operative periods (early: odds ratio [OR], 0.77; 95% confidence interval [CI], 0.62–0.97; p=0.02, intermediate: OR, 0.60; 95% CI, 0.48–0.75; p<0.01), but not in the prolonged setting (prolonged: OR, 1.00; 95% CI, 0.75–1.34; p=0.98) and had earlier return to work (minimally invasive vs. open: −10.53 days; 95% CI, −17.79 to −3.26; p<0.01). Controlling for approach, patient undergoing partial nephrectomy had lower rates of opioid use across all time periods examined and returned to work earlier than patients undergoing radical nephrectomy (partial vs. radical: −14.41 days; 95% CI, −21.22 to −7.60; p<0.01).
Conclusions: Patients undergoing various forms of surgery for kidney cancer had lower rates of peri-operative opioid use, fewer days of workplace absenteeism, but no difference in long-term rates of opioid use in patients undergoing minimally invasive as compared to open surgery.
Cisplatin, which induces DNA damage, is standard chemotherapy for advanced bladder cancer (BCa). However, efficacy is limited due to resistance development. Since artesunate (ART), a derivative of artemisinin originating from Traditional Chinese Medicine, has been shown to exhibit anti-tumor activity, and to inhibit DNA damage repair, the impact of artesunate on cisplatin-resistant BCa was evaluated. Cisplatin-sensitive (parental) and cisplatin-resistant BCa cells, RT4, RT112, T24, and TCCSup, were treated with ART (1–100 µM). Cell growth, proliferation, and cell cycle phases were investigated, as were apoptosis, necrosis, ferroptosis, autophagy, metabolic activity, and protein expression. Exposure to ART induced a time- and dose-dependent significant inhibition of tumor cell growth and proliferation of parental and cisplatin-resistant BCa cells. This inhibition was accompanied by a G0/G1 phase arrest and modulation of cell cycle regulating proteins. ART induced apoptos is by enhancing DNA damage, especially in the resistant cells. ART did not induce ferroptosis, but led to a disturbance of mitochondrial respiration and ATP generation. This impairment correlated with autophagy accompanied by a decrease in LC3B-I and an increase in LC3B-II. Since ART significantly inhibits proliferative and metabolic aspects of cisplatin-sensitive and cisplatin-resistant BCa cells, it may hold potential in treating advanced and therapy-resistant BCa.
Background: The spontaneously diabetic “non-obese diabetic” (NOD) mouse is a faithful model of human type-1 diabetes (T1D). Methods: Given the pivotal role of α4 integrin (CD49d) in other autoimmune diseases, we generated NOD mice with α4-deficient hematopoiesis (NOD.α4-/-) to study the role of α4 integrin in T1D. Results: NOD.α4-/- mice developed islet-specific T-cells and antibodies, albeit quantitatively less than α4+ counterparts. Nevertheless, NOD.α4-/- mice were completely and life-long protected from diabetes and insulitis. Moreover, transplantation with isogeneic α4-/- bone marrow prevented progression to T1D of pre-diabetic NOD.α4+ mice despite significant pre-existing islet cell injury. Transfer of α4+/CD3+, but not α4+/CD4+ splenocytes from diabetic to NOD.α4-/- mice induced diabetes with short latency. Despite an only modest contribution of adoptively transferred α4+/CD3+ cells to peripheral blood, pancreas-infiltrating T-cells were exclusively graft derived, i.e., α4+. Microbiota of diabetes-resistant NOD.α4-/- and pre-diabetic NOD.α4+ mice were identical. Co- housed diabetic NOD.α4+ mice showed the characteristic diabetic dysbiosis, implying causality of diabetes for dysbiosis. Incidentally, NOD.α4-/- mice were protected from autoimmune sialitis. Conclusion: α4 is a potential target for primary or secondary prevention of T1D.
Unpredictable disease trajectories make early clarification of end-of-life (EoL) care preferences in older patients with multimorbidity advisable. This mixed methods systematic review synthesizes studies and assesses such preferences. Two independent reviewers screened title/abstracts/full texts in seven databases, extracted data and used the Mixed Methods Appraisal Tool to assess risk of bias (RoB). We synthesized findings from 22 studies (3243 patients) narratively and, where possible, quantitatively. Nineteen studies assessed willingness to receive life-sustaining treatments (LSTs), six, the preferred place of care, and eight, preferences regarding shared decision-making processes. When unspecified, 21% of patients in four studies preferred any LST option. In three studies, fewer patients chose LST when faced with death and deteriorating health, and more when treatment promised life extension. In 13 studies, 67% and 48% of patients respectively were willing to receive cardiopulmonary resuscitation and mechanical ventilation, but willingness decreased with deteriorating health. Further, 52% of patients from three studies wished to die at home. Seven studies showed that unless incapacitated, most patients prefer to decide on their EoL care themselves. High non-response rates meant RoB was high in most studies. Knowledge of EoL care preferences of older patients with multimorbidity increases the chance such care will be provided.
Background: Surgical complications are associated with a significant burden to patients and hospitals and are increasingly discussed in recent literature. This cohort study reviewed surgery-related complications in a Level I trauma center. The effect of a complication avoidance care bundle on the rate of surgical complications was analyzed. Methods: All complications (surgical and nonsurgical) that occur in our trauma department are prospectively captured using a standardized documentation form and are discussed and analyzed in a weekly trauma Morbidity and Mortality (M&M) conference. Surgical complication rates are calculated using the annual surgical procedure numbers. Based on discussions in the M&M conference, a complication avoidance care bundle consisting of five measures was established: (1) Improving team situational awareness; (2) reducing operating room traffic by staff members and limiting door-opening events; (3) preoperative screening for infectious foci; (4) adapted preoperative antibiotic prophylaxis in anatomic regions with a high risk of infectious complications; and (5) use of iodine-impregnated adhesive drape. Results: The number of surgical procedures steadily increased over the study years, from 3587 in 2015 to 3962 in 2019 (an increase of 10.5%). Within this 5-year study period, the overall rate of surgical complications was 0.8%. Surgical site infections were the most frequently found complications (n = 40, 24.8% of all surgical complications), followed by screw malposition (n = 20, 12.4%), postoperative dislocations of arthroplasties (n = 18, 11.2%), and suboptimal fracture reduction (n = 18, 11.2%). Following implementation of the complication avoidance care bundle, the overall rate of surgical complications significantly decreased, from 1.14% in the year 2016 to 0.56% in the study year 2019, which represents a reduction of 51% within a 3-year time period. Conclusions: A multimodal strategy targeted at reducing the surgical complication rate can be successfully established based on a transparent discussion of adverse surgical outcomes. The combination of the different preventive measures was associated with reducing the overall complication rate by half within a 3-year time period.
The main goal of the present study was the identification of cellular phenotypes in attention-deficit-/hyperactivity disorder (ADHD) patient-derived cellular models from carriers of rare copy number variants (CNVs) in the PARK2 locus that have been previously associated with ADHD. Human-derived fibroblasts (HDF) were cultured and human-induced pluripotent stem cells (hiPSC) were reprogrammed and differentiated into dopaminergic neuronal cells (mDANs). A series of assays in baseline condition and in different stress paradigms (nutrient deprivation, carbonyl cyanide m-chlorophenyl hydrazine (CCCP)) focusing on mitochondrial function and energy metabolism (ATP production, basal oxygen consumption rates, reactive oxygen species (ROS) abundance) were performed and changes in mitochondrial network morphology evaluated. We found changes in PARK2 CNV deletion and duplication carriers with ADHD in PARK2 gene and protein expression, ATP production and basal oxygen consumption rates compared to healthy and ADHD wildtype control cell lines, partly differing between HDF and mDANs and to some extent enhanced in stress paradigms. The generation of ROS was not influenced by the genotype. Our preliminary work suggests an energy impairment in HDF and mDAN cells of PARK2 CNV deletion and duplication carriers with ADHD. The energy impairment could be associated with the role of PARK2 dysregulation in mitochondrial dynamics.
In the absence of an active prophylactic vaccine against HIV-1, passively administered, broadly neutralizing antibodies (bnAbs) identified in some chronically infected persons were shown to prevent HIV-1 infection in animal models. However, passive administration of bnAbs may not be suited to prevent sexual HIV-1 transmission in high-risk cohorts, as a continuous high level of active bnAbs may be difficult to achieve at the primary site of sexual transmission, the human vagina with its acidic pH. Therefore, we used Lactobacillus, a natural commensal in the healthy vaginal microbiome, to express bn nanobodies (VHH) against HIV-1 that we reported previously. After demonstrating that recombinant VHHA6 expressed in E. coli was able to protect humanized mice from mucosal infection by HIV-1Bal, we expressed VHHA6 in a soluble or in a cell-wall-anchored form in Lactobacillus rhamnosus DSM14870. This strain is already clinically applied for treatment of bacterial vaginosis. Both forms of VHHA6 neutralized a set of primary epidemiologically relevant HIV-1 strains in vitro. Furthermore, VHHA6 was still active at an acidic pH. Thus, lactobacilli expressing bn VHH potentially represent an attractive vector for the passive immunization of women in cohorts at high risk of HIV-1 transmission.
The transcription factor NF-E2 p45-related factor 2 (Nrf2) is an established master regulator of the anti-oxidative and detoxifying cellular response. Thus, a role in inflammatory diseases associated with the generation of large amounts of reactive oxygen species (ROS) seems obvious. In line with this, data obtained in cell culture experiments and preclinical settings have shown that Nrf2 is important in regulating target genes that are necessary to ensure cellular redox balance. Additionally, Nrf2 is involved in the induction of phase II drug metabolizing enzymes, which are important both in degrading and converting drugs into active forms, and into putative carcinogens. Therefore, Nrf2 has also been implicated in tumorigenesis. This must be kept in mind when new therapy approaches are planned for the treatment of sepsis. Therefore, this review highlights the function of Nrf2 in sepsis with a special focus on the translation of rodent-based results into sepsis patients in the intensive care unit (ICU).
People with Parkinson’s disease (PD) experience a gradual loss of functional abilities that affects all facets of their daily life. There is a lack of longitudinal studies on coping styles in relation to the disease progression among people with PD. The aim of this study was to explore how coping styles in PD evolve over a 3-year period. Data from the longitudinal project “Home and Health in People Ageing with PD” was utilized (N = 158), including baseline and 3-year follow-up assessments. Coping was captured by ratings of 13 different coping styles. A factor analysis was conducted to analyse patterns of coping styles. Stability and change were analysed for each of the 13 styles with respect to the course of the disease. The factor analysis revealed four coping patterns: pessimistic, optimistic, persistent and support-seeking. The stability of each coping style over time ranged from 75.3% to 90.5%. Those who experienced a worsening of the disease were most inclined to change their coping style (p = 0.006). The results suggest that even when facing severe challenges due to PD in daily life, coping styles remain relatively stable over time. However, a worsening in PD severity appeared to trigger a certain re-evaluation of coping styles.
Echovirus-30 (E-30) is a non-polio enterovirus responsible for meningitis outbreaks in children worldwide. To gain access to the central nervous system (CNS), E-30 first has to cross the blood-brain barrier (BBB) or the blood-cerebrospinal fluid barrier (BCSFB). E-30 may use lipid rafts of the host cells to interact with and to invade the BCSFB. To study enteroviral infection of the BCSFB, an established in vitro model based on human immortalized brain choroid plexus papilloma (HIBCPP) cells has been used. Here, we investigated the impact of E-30 infection on the protein content of the lipid rafts at the BCSFB in vitro. Mass spectrometry analysis following E-30 infection versus uninfected conditions revealed differential abundancy in proteins implicated in cellular adhesion, cytoskeleton remodeling, and endocytosis/vesicle budding. Further, we evaluated the blocking of endocytosis via clathrin/dynamin blocking and its consequences for E-30 induced barrier disruption. Interestingly, blocking of endocytosis had no impact on the capacity of E-30 to induce loss of barrier properties in HIBCPP cells. Altogether, these data highlight the impact of E-30 on HIBCPP cells microdomain as an important factor for host cell alteration.
Simple Summary
Endometrial cancer is the most frequent gynecologic tumor in developed countries. Obesity is an established risk factor for this disease. This work provides an overview of pathophysiological interactions and pathways in obese women initiating tumorigenesis. Furthermore, the clinical impact of adiposity on the treatment of endometrial cancer is discussed as well therapeutic and preventive options.
Abstract
Endometrial cancer (EC) is the most frequently observed malignant gynecologic disease in developed countries. There is a strong association between the established risk factor obesity and the incidence of EC. Furthermore, the rate of women with a body mass index (BMI) > 30 kg/m2 is increasing worldwide, correspondingly leading to a higher prevalence of EC. Understanding the adipose tissue as an endocrine organ, elementary pathophysiological pathways of tumorigenesis have been revealed. This includes the fundamental role of hyperglycemia, insulin resistance, and hyperestrogenemia, as well as interactions with a chronic proinflammatory microenvironment. Therapeutic options potentially include metformin or bariatric surgery. Moreover, changes in individual lifestyle such as weight reduction, physical activity, and an awareness of healthy nutrition are effective in preventing the disease.
Background: Despite a large body of evidence demonstrating the effectiveness of psychotherapy for posttraumatic stress for children and adolescents, the adoption of empirically supported treatments (ESTs) in routine care is low.
Objective: This implementation study aims to evaluate the dissemination of Trauma-Focused Cognitive Behavioural Therapy (TF-CBT) for children and adolescents with posttraumatic stress symptoms (PTSS) after child abuse and neglect (CAN) with a focus on supervision.
Method: In a cluster-randomized controlled trial, the study will evaluate the implementation of TF-CBT focussing on the training of therapists including the provision of supervision. The effectiveness of specialized trauma-focused supervision will be compared to supervision as usual with respect to the successful implementation of TF-CBT for youths with PTSS administered by psychotherapists with different levels of professional experience. The primary outcome is whether the patient receives a treatment with sufficient adherence to the TF-CBT manual. The unit of randomization will be the therapists. The main outcome will be analysed using multilevel logistic regressions. Secondary outcomes will concern further patient-related (reduction of PTSS and depressive symptoms) and therapist-related (professional quality of life) variables. Additional exploratory analyses are planned.
Discussion: Since the trial is designed as an implementation study, it permits naturalistic referrals to the participating therapists by patients, caregivers, child and youth welfare agencies and paediatricians. The strict primary outcome will help evaluating the role of model-based supervision in the implementation process. The explorative outcomes will evaluate whether implementation success translates into better patient outcomes. We expect that the dissemination measures will lead to a successful implementation of TF-CBT and promote sustainable structures in routine care that will remain in place after study completion and offer access to ESTs for future children and youths with a history of CAN.
The influence of biological maturity status (BMS) on talent identification and development within elite youth soccer is critically debated. During adolescence, maturity-related performance differences within the same age group may cause greater chances of being selected for early maturing players. Therefore, coaches need to consider players' BMS. While standard methods for assessing BMS in adolescents are expensive and time-consuming imaging techniques (i.e., X-ray and MRI), there also exist more pragmatic procedures. This study aimed to evaluate commonly used methods to assess BMS within a highly selected sample of youth soccer players. A total of N = 63 elite male soccer players (U12 and U14) within the German Soccer Association's talent promotion program completed a test battery assessing BMS outcomes. Utilizing MRI diagnostics, players' skeletal age (SAMRI) was determined by radiologists and served as the reference method. Further commonly used methods included skeletal age measured by an ultrasound device (SAUS), the maturity offset (MOMIR), and the percentage of adult height (PAHKR). The relation of these alternative BMS outcomes to SAMRI was examined using different perspectives: performing bivariate correlation analyses (1), modeling BMS as a latent variable (BMSlat) based on the multiple alternative diagnostics (2), and investigating individual differences in agreement (3). (1) Correlations of SAMRI and the further BMS variables ranked from r = 0.80 to r = 0.84 for the total sample and were lower for U12 (0.56 ≤ r ≤ 0.66), and U14 (0.61 ≤ r ≤ 0.74) (2). The latent structural equation modeling (SEM) (R2 = 51%) revealed a significant influence on BMSlat for MOMIR (β = 0.51, p <0.05). The additional contribution of PAHKR (β = 0.27, p = 0.06) and SAUS (β = −0.03, p = 0.90) was rather small (3). The investigation of individual differences between the reference method and alternative diagnostics indicated a significant bias for MOMIR (p <0.01). The results support the use of economical and time-efficient methods for assessing BMS within elite youth soccer. Bivariate correlation analyses as well as the multivariate latent variable approach highlight the measures' usefulness. However, the observed individual level differences for some of the utilized procedures led to the recommendation for practitioners to use at least two alternative assessment methods in order to receive more reliable information about players' BMS within the talent promotion process.
Systemic inflammation is associated with alterations in complex brain functions such as learning and memory. However, diagnostic approaches to functionally assess and quantify inflammation-associated alterations in synaptic plasticity are not well-established. In previous work, we demonstrated that bacterial lipopolysaccharide (LPS)-induced systemic inflammation alters the ability of hippocampal neurons to express synaptic plasticity, i.e., the long-term potentiation (LTP) of excitatory neurotransmission. Here, we tested whether synaptic plasticity induced by repetitive magnetic stimulation (rMS), a non-invasive brain stimulation technique used in clinical practice, is affected by LPS-induced inflammation. Specifically, we explored brain tissue cultures to learn more about the direct effects of LPS on neural tissue, and we tested for the plasticity-restoring effects of the anti-inflammatory cytokine interleukin 10 (IL10). As shown previously, 10 Hz repetitive magnetic stimulation (rMS) of organotypic entorhino-hippocampal tissue cultures induced a robust increase in excitatory neurotransmission onto CA1 pyramidal neurons. Furthermore, LPS-treated tissue cultures did not express rMS-induced synaptic plasticity. Live-cell microscopy in tissue cultures prepared from a novel transgenic reporter mouse line [C57BL/6-Tg(TNFa-eGFP)] confirms that ex vivo LPS administration triggers microglial tumor necrosis factor alpha (TNFα) expression, which is ameliorated in the presence of IL10. Consistent with this observation, IL10 hampers the LPS-induced increase in TNFα, IL6, IL1β, and IFNγ and restores the ability of neurons to express rMS-induced synaptic plasticity in the presence of LPS. These findings establish organotypic tissue cultures as a suitable model for studying inflammation-induced alterations in synaptic plasticity, thus providing a biological basis for the diagnostic use of transcranial magnetic stimulation in the context of brain inflammation.
Andropogon virginicus is an invasive weed that seriously threatens agricultural production and economics worldwide. In this research, dried aerial parts of A. virginicus were extracted, applying Soxhlet and liquid-liquid phase methods to acquire the total crude (T-Anvi), hexane (H-Anvi), ethyl acetate (E-Anvi), butanol (B-Anvi), and water (W-Anvi) extracts, respectively. In which, T-Anvi contains the highest total phenolic and flavonoid contents (24.80 mg gallic acid and 37.40 mg rutin equivalents per g dry weight, respectively). Via anti-radical (ABTS and DPPH), and reducing power assays, E-Anvi exhibits the most potent activities (IC50 = 13.96, 43.59 and 124.11 µg/mL, respectively), stronger than butylated hydroxytoluene (BHT), a standard antioxidant, while the lipid peroxidation inhibitory effect of E-Anvi (LPI = 90.85% at the concentration of 500 µg/mL) is close to BHT. E-Anvi shows the most substantial inhibition (IC50 = 2.58 mg/mL) on tyrosinase. Notably, α-amylase is significantly suppressed by H-Anvi (IC50 = 0.72 mg/mL), over twice stronger than the positive control, palmitic acid. In the cytotoxic assay, E-Anvi is the strongest extract inhibiting K562 cells (IC50 = 112.01 µg/mL). Meanwhile, T-Anvi shows the highest prevention on Meg-01 expansion (IC50 = 91.40 µg/mL). Dominant compounds detected in E-Anvi by high-performance liquid chromatography-electrospray ionization-tandem mass spectrometry (HPLC-ESI-MS/MS) are identified as flavonoids. However, among four major compounds identified in H-Anvi by gas chromatography-mass spectrometry (GC-MS), palmitic acid and phytol are the most abundant compounds with peak areas of 27.97% and 16.42%, respectively. In essence, this is the first report describing that A. virginicus is a potential natural source of antioxidants, tyrosinase and α-amylase inhibitors, and anti-chronic myeloid leukemia (CML) agents which may be useful in future therapeutics as promising alternative medicines.
Largely unnoticed, all life on earth is constantly exposed to low levels of ionizing radiation. Radon, an imperceptible natural occurring radioactive noble gas, contributes as the largest single fraction to radiation exposure from natural sources. For that reason, radon represents a major issue for radiation protection. Nevertheless, radon is also applied for the therapy of inflammatory and degenerative diseases in galleries and spas to many thousand patients a year. In either case, chronic environmental exposure or therapy, the effect of radon on the organism exposed is still under investigation at all levels of interaction. This includes the physical stage of diffusion and energy deposition by radioactive decay of radon and its progeny and the biological stage of initiating and propagating a physiologic response or inducing cancer after chronic exposure. The purpose of this manuscript is to comprehensively review the current knowledge of radon and its progeny on physical background, associated cancer risk and potential therapeutic effects.
We sought to determine the effects of the use of a Bioengineered Combo Dual-Therapy CD34 Antibody-Covered Sirolimus-Eluting Coronary Stent (Combo® DTS) in patients with chronic total occlusion (CTO) by evaluating clinical outcomes and by performing an optical coherence tomography (OCT) analysis. We retrospectively analyzed data from 39 patients who had successfully undergone OCT-guided revascularization of a CTO being treated with a Combo® DTS. Clinical assessment, angiography (with quantitative coronary angiography analysis) and OCT examination were performed at baseline and at follow-up. The median follow-up period was 189 days, ranging from 157 to 615 days. At follow-up, revascularization was required due to angiographic restenosis in 40% (14 of 35) of patients. OCT analysis detected neointima proliferation in 23 (76.6%) patients. Neointima formation was often associated with microvessels in 18 patients (60%). Neoatheroslcerosis was observed in 2 (6.6%) patients. Malapposition was found in 4 patients (13.3%), and stent fractures were found in 11 patients (36.6%). Rate of strut coverage was 96.3% at follow-up. In conclusion, the implantation of a Combo® DTS after successful CTO recanalization was associated with a restenosis rate of 40% despite good stent implantation at baseline, proven by OCT. Neointima formation was found as a main contributor to restenosis. Nevertheless, we observed a low rate of major cardiovascular events in our follow-up.
Introduction: In patients with severe pelvic ring injuries, exsanguination still is the leading cause of death in the early post-injury phase. While mechanical pelvic ring stabilization and pre-peritoneal pelvic packing are mainly addressing venous bleeding, angio-embolization aims to control arterial bleeding. The goal of the present study was to evaluate the rate of postoperative angio-embolization after mechanical pelvic ring injury stabilization and pre-peritoneal pelvic packing. Bleeding sources detected in the angiography and the patient's outcome were investigated. Patients and Methods: Retrospective observational cohort study at a single academic level I trauma center, reviewing all patients with pelvic ring injuries admitted from 01/2010 to 12/2019. Patients with emergent mechanical pelvic ring stabilization (supraacetabular external fixator and/or pelvic C-clamp) and direct pre-peritoneal pelvic packing were further analyzed. Patients that underwent postoperative angio-embolization were compared with those that did not. All postoperative angio-embolizations were evaluated with regards to bleeding sources and type of embolization. Results: During the study period, a total of 39 patients required immediate mechanical pelvic stabilization and direct pre-peritoneal pelvic packing. Of these, 12 patients (30.8%) underwent a postoperative angio-embolization. The following vessels were identified as bleeding sources: superior gluteal artery (n = 6), obturator artery (n = 2), internal pudendal artery (n = 2), unnamed branches of the internal iliac artery (n = 3). A selective embolization was successful in 11 patients; in 1 patient, an unilateral complete occlusion of the internal iliac artery was performed to control the bleeding. Mean time from hospital admission to the surgical procedure was 52.8 ± 14.7 min and the mean time from admission to angio-embolization was 189.1 ± 55.5 min. The in-hospital mortality rate of patients with angio-embolization was 25.0% (n = 3). Of these, 2 patients died due to multiple organ failure and 1 patient due to severe head injury. Conclusion: Secondary angio-embolization after external pelvic fixation and pre-peritoneal pelvic packing was effective in controlling ongoing bleeding. The most frequently detected bleeding vessel was the superior gluteal artery, which is difficult to surgically address, further highlighting the importance of angio-embolization in the management algorithm.
New innovative neuropsychological tests in attention deficit hyperactivity disorder ADHD have been proposed as objective measures for diagnosis and therapy. The current study aims to investigate two different commercial continuous performance tests (CPT) in a head-to-head comparison regarding their comparability and their link with clinical parameters. The CPTs were evaluated in a clinical sample of 29 adult patients presenting in an ADHD outpatient clinic. Correlational analyses were performed between neuropsychological data, clinical rating scales, and a personality-based measure. Though inattention was found to positively correlate between the two tests (r = 0.49, p = 0.01), no association with clinical measures and inattention was found for both tests. While hyperactivity did not correlate between both tests, current ADHD symptoms were positively associated with Nesplora Aquarium’s motor activity (r = 0.52 to 0.61, p < 0.05) and the Qb-Test’s hyperactivity (r = 0.52 to 0.71, p < 0.05). Conclusively, the overall comparability of the tests was limited and correlation with clinical parameters was low. While our study shows some interesting correlation between clinical symptoms and sub-scales of these tests, usage in clinical practice is not recommended.
Tumor-associated macrophages (TAMs) influence lung tumor development by inducing immunosuppression. Transcriptome analysis of TAMs isolated from human lung tumor tissues revealed an up-regulation of the Wnt/β-catenin pathway. These findings were reproduced in a newly developed in vitro “trained” TAM model. Pharmacological and macrophage-specific genetic ablation of β-catenin reprogrammed M2-like TAMs to M1-like TAMs both in vitro and in various in vivo models, which was linked with the suppression of primary and metastatic lung tumor growth. An in-depth analysis of the underlying signaling events revealed that β-catenin–mediated transcriptional activation of FOS-like antigen 2 (FOSL2) and repression of the AT-rich interaction domain 5A (ARID5A) drive gene regulatory switch from M1-like TAMs to M2-like TAMs. Moreover, we found that high expressions of β-catenin and FOSL2 correlated with poor prognosis in patients with lung cancer. In conclusion, β-catenin drives a transcriptional switch in the lung tumor microenvironment, thereby promoting tumor progression and metastasis.
Background: Since January 2018 performance of urethroplasties is done on regular basis at the University Hospital Frankfurt (UKF). We aimed to implement and transfer an institutional standardized perioperative algorithm for urethral surgery (established at the University Hospital Hamburg-Eppendorf—UKE) using a validated Urethral Stricture Surgery Patient-Reported Outcome Measure (USS-PROM) in patients undergoing urethroplasty at UKF. Materials and Methods: We retrospectively analyzed all patients who underwent urethroplasty for urethral stricture disease between January 2018 and January 2020 at UKF. All patients were offered to revisit for clinical follow-up (FU) and completion of USS-PROM. Primary end point was stricture recurrence-free survival (RFS). Secondary endpoints were functional outcomes, quality of life (QoL), and patient satisfaction. Results: In total, 50 patients underwent urethroplasty and 74 and 24% had a history of previous urethrotomy or urethroplasty, respectively. A buccal mucosal graft urethroplasty was performed in 86% (n = 43). After patient's exclusion due to lost of FU, FU <3 months, and/or a pending second stage procedure, 40 patients were eligible for final analysis. At median FU of 10 months (interquartile-range 5.0–18.0), RFS was 83%. After successful voiding trial, the postoperative median Qmax significantly improved (24.0 vs. 7.0 mL/s; p < 0.01). Conversely, median residual urine decreased significantly (78 vs. 10 mL; p < 0.01). Overall, 95% of patients stated that QoL improved and 90% were satisfied by the surgical outcome. Conclusions: We demonstrated a successful implementation and transfer of an institutional standardized perioperative algorithm for urethral surgery from one location (UKE) to another (UKF). In our short-term FU, urethroplasty showed excellent RFS, low complication rates, good functional results, improvement of QoL and high patient satisfaction. PROMs allow an objective comparison between different centers.
While impulsivity is a basic feature of attention-deficit / hyperactivity disorder (ADHD), no study explored the effect of different components of the Impulsiveness (Imp) and Venturesomeness (Vent) scale (IV7) on psychiatric comorbidities and an ADHD polygenic risk score (PRS). We used the IV7 self-report scale in an adult ADHD sample of 903 patients, 70% suffering from additional comorbid disorders, and in a subsample of 435 genotyped patients. Venturesomeness, unlike immediate Impulsivity, is not specific to ADHD. We consequently analyzed the influence of Imp and Vent also in the context of a PRS on psychiatric comorbidities of ADHD. Vent shows a distinctly different distribution of comorbidities, e.g., less anxiety and depression. PRS showed no effect on different ADHD comorbidities, but correlated with childhood hyperactivity. In a complementary analysis using principal component analysis with Diagnostic and Statistical Manual of Mental Disorders, Fourth Edition ADHD criteria, revised NEO Personality Inventory, Imp, Vent, and PRS, we identified three ADHD subtypes. These are an impulsive–neurotic type, an adventurous–hyperactive type with a stronger genetic component, and an anxious–inattentive type. Our study thus suggests the importance of adventurousness and the differential consideration of impulsivity in ADHD. The genetic risk is distributed differently between these subtypes, which underlines the importance of clinically motivated subtyping. Impulsivity subtyping might give insights into the organization of comorbid disorders in ADHD and different genetic background.
Purpose: Medically recommended training often faces the dilemma that necessary mechanical intensities for muscle adaptations exceed patients' physical capacity. In this regard, blood flow restriction (BFR) training is becoming increasingly popular because it enables gains in muscle mass and strength despite using low-mechanical loads combined with external venous occlusion. Since the underlying mechanisms are still unknown, we applied invasive measurements during exercise with and without BFR to promote physiological understanding and safety of this popular training technique. Methods: In a randomized cross-over design, ten healthy men (28.1 ± 6.5 years) underwent two trials of unilateral biceps curls either with (BFR) and without BFR (CON). For analysis of changes in intravascular pressures, blood gases, oximetry and electrolytes, an arterial and a venous catheter were placed at the exercising arm before exercise. Arterial and venous blood gases and intravascular pressures were analyzed before, during and 5 min after exercise. Results: Intravascular pressures in the arterial and venous system were more increased during exercise with BFR compared to CON (p < 0.001). Furthermore, arterial and venous blood gas analyses revealed a BFR-induced metabolic acidosis (p < 0.05) with increased lactate production (p < 0.05) and associated elevations in [K+], [Ca2+] and [Na+] (p < 0.001). Conclusion: The present study describes for the first time the local physiological changes during BFR training. While BFR causes greater hypertension in the arterial and venous system of the exercising extremity, observed electrolyte shifts corroborate a local metabolic acidosis with concurrent rises in [K+] and [Na+]. Although BFR could be a promising new training concept for medical application, its execution is associated with comprehensive physiological challenges.
Purpose: To develop and validate a CT-based radiomics signature for the prognosis of loco-regional tumour control (LRC) in patients with locally advanced head and neck squamous cell carcinoma (HNSCC) treated by primary radiochemotherapy (RCTx) based on retrospective data from 6 partner sites of the German Cancer Consortium - Radiation Oncology Group (DKTK-ROG).
Material and methods: Pre-treatment CT images of 318 patients with locally advanced HNSCC were collected. Four-hundred forty-six features were extracted from each primary tumour volume and then filtered through stability analysis and clustering. First, a baseline signature was developed from demographic and tumour-associated clinical parameters. This signature was then supplemented by CT imaging features. A final signature was derived using repeated 3-fold cross-validation on the discovery cohort. Performance in external validation was assessed by the concordance index (C-Index). Furthermore, calibration and patient stratification in groups with low and high risk for loco-regional recurrence were analysed.
Results: For the clinical baseline signature, only the primary tumour volume was selected. The final signature combined the tumour volume with two independent radiomics features. It achieved moderately good discriminatory performance (C-Index [95% confidence interval]: 0.66 [0.55–0.75]) on the validation cohort along with significant patient stratification (p = 0.005) and good calibration.
Conclusion: We identified and validated a clinical-radiomics signature for LRC of locally advanced HNSCC using a multi-centric retrospective dataset. Prospective validation will be performed on the primary cohort of the HNprädBio trial of the DKTK-ROG once follow-up is completed.
The β-carboline alkaloid harmine is a potent DYRK1A inhibitor, but suffers from undesired potent inhibition of MAO-A, which strongly limits its application. We synthesized more than 60 analogues of harmine, either by direct modification of the alkaloid or by de novo synthesis of β-carboline and related scaffolds aimed at learning about structure-activity relationships for inhibition of both DYRK1A and MAO-A, with the ultimate goal of separating desired DYRK1A inhibition from undesired MAO-A inhibition. Based on evidence from published crystal structures of harmine bound to each of these enzymes, we performed systematic structure modifications of harmine yielding DYRK1A-selective inhibitors characterized by small polar substituents at N-9 (which preserve DYRK1A inhibition and eliminate MAO-A inhibition) and beneficial residues at C-1 (methyl or chlorine). The top compound AnnH75 remains a potent DYRK1A inhibitor, and it is devoid of MAO-A inhibition. Its binding mode to DYRK1A was elucidated by crystal structure analysis, and docking experiments provided additional insights for this attractive series of DYRK1A and MAO-A inhibitors.
Ataxia-Telangiectasia (A-T), a pleiotropic chromosomal breakage syndrome, is caused by the loss of the kinase Ataxia-telangiectasia mutated (ATM). ATM is not only involved in the response to DNA damage, but also in sensing and counteracting oxidative stress. Since a disturbed redox balance has been implicated in the pathophysiology of A-T lung disease, we aimed to further explore the interplay between ATM and oxidative stress in lung cells. Using a kinetic trapping approach, we could demonstrate an interaction between the trapping mutant TRX1-CS and ATM upon oxidative stress. We could further show that combined inhibition of thioredoxin reductase (TrxR) and ATM kinase activity, using Auranofin and KU55933 respectively, induced an increase in cellular reactive oxygen species (ROS) levels and protein oxidation in lung cells. Furthermore, ATM inhibition sensitized lung cells to Auranofin-induced cell death that could be rescued by ROS scavengers. As a consequence, targeted reduction of ATM by TRX1 could serve as a regulator of oxidative ATM activation and contribute to the maintenance of the cellular redox homeostasis. These results highlight the importance of the redox-active function of ATM in preventing ROS accumulation and cell death in lung cells.
Characterization of neonates born to mothers with SARS-CoV-2 infection: review and meta-analysis
(2020)
Characterization of neonates born to mothers with SARS-CoV-2 infection has been partially carried out. There has been no systematic review providing a holistic neonatal presentation including possible vertical transmission. A systematic literature search was performed using PubMed, Google Scholar and Web of Science up to June, 6 2020. Studies on neonates born to mothers with SARS-CoV-2 infection were included. A binary random effect model was used for prevalence and 95% confidence interval. 32 studies involving 261 neonates were included in meta-analysis. Most neonates born to infected mothers did not show any clinical abnormalities (80.4%). Clinical features were dyspnea in 11 (42.3%) and fever in 9 newborns (19.1%). Of 261 neonates, 120 neonates were tested for infection, of whom 12 (10.0%) tested positive. Swabs from placenta, cord blood and vaginal secretion were negative. Neonates are mostly non affected by the mother's SARS-CoV-2 infection. The risk of vertical transmission is low.
The B-cell receptor (BCR) signaling pathway is a crucial pathway of B cells, both for their survival and for antigen-mediated activation, proliferation and differentiation. Its activation is also critical for the genesis of many lymphoma types. BCR-mediated lymphoma proliferation may be caused by activating BCR-pathway mutations and/or by active or tonic stimulation of the BCR. BCRs of lymphomas have frequently been described as polyreactive. In this review, the role of specific target antigens of the BCRs of lymphomas is highlighted. These antigens have been found to be restricted to specific lymphoma entities. The antigens can be of infectious origin, such as H. pylori in gastric MALT lymphoma or RpoC of M. catarrhalis in nodular lymphocyte predominant Hodgkin lymphoma, or they are autoantigens. Examples of such autoantigens are the BCR itself in chronic lymphocytic leukemia, LRPAP1 in mantle cell lymphoma, hyper-N-glycosylated SAMD14/neurabin-I in primary central nervous system lymphoma, hypo-phosphorylated ARS2 in diffuse large B-cell lymphoma, and hyper-phosphorylated SLP2, sumoylated HSP90 or saposin C in plasma cell dyscrasia. Notably, atypical posttranslational modifications are often responsible for the immunogenicity of many autoantigens. Possible therapeutic approaches evolving from these specific antigens are discussed.
Background: Musculoskeletal disorders (MSD) are common among dental professionals. The most common areas affected are the trunk, neck, shoulders and wrists. Current evidence suggests that the causes of MSD can be found in the physical demands of the profession. Posture and movement during treatment is influenced by the arrangement of the treatment concept (patient chair, equipment and cabinets). It has not been investigated whether the ergonomic risk differs between the treatment concepts.
Methods: To evaluate the prevalence of MSD in dental professionals, 1000 responses will be collected from a nationwide (Germany) online questionnaire (mod. Nordic Questionnaire and mod. Meyer questionnaire). In order to assess the ergonomic risk of the treatment techniques used in the four treatment concepts, 3D movement analyses are carried out with inertial sensors. For this purpose, 20 teams of dentists and dental assistants from four dental fields of specializations (generalists, orthodontists, endodontists and oral surgeons) and a student control group will be recruited. Each team will execute field specific standardized treatments at a dummy head. Measurements are carried out in each of the four treatment concepts. The data will be analyzed using the Rapid Upper Limb Assessment (RULA) which will be modified for the evaluation of objective data.
Conclusions: On the basis of these investigations, a substantial gain of knowledge regarding work-related MSD in the field of dentistry and its potential biomechanical causes is possible. For the first time, objective and differentiated comparisons between the four treatment concepts are possible for different fields of dental specialization. Up to now, statically held positions of the trunk and proximal upper extremities, but also the repetitive movements of the hands have been considered a risk for MSD. Since both are included in the RULA, dental activities can be assessed in a detailed but also global manner with regard to ergonomic risks.
Background: The aim of this pilot study was to analyze postures during the work of neurologists with respect to their occupational activities.
Methods: A total data material of 64.8 h (3885.74 min) of nine (three m/six f) neurologists (assistant physicians) was collected. Kinematic data were collected using the CUELA system (electro-goniometry). In addition, the occupational tasks performed on-site were subject to a detailed objective activity analysis. All activities were assigned to the categories "Office activities" (I), "Measures on patients" (II) and "Other activities" (III). The angle values of each body region (evaluation parameters) were evaluated according to ergonomic ISO standards.
Results: Only 3.4% of the working hours were spent with (II), while 50.8% of time was spent with (I) and 45.8% with (III). All tasks of category (II) revealed an increased ergonomic risk to the head, neck, trunk and back areas. During category (I) especially neck and back movements in the sagittal plane showed higher ergonomic risk levels.
Conclusion: Despite frequently performed awkward body positions in (II), the ergonomic risk is considered as rather low, since the percentage time share totaled only 3.4%. As a result, "Office activities" have been detected as high predictor to cause stress load on the musculoskeletal system in the daily work of neurologists.
Sarcomas are rare cancers with high heterogeneity in terms of type, location, and treatment. The health-related quality of life (HRQoL) of sarcoma patients has rarely been investigated and is the subject of this analysis. Adult sarcoma patients and survivors were assessed between September 2017 and February 2019 in 39 study centers in Germany using standardized, validated questionnaires (European Organization for Research and Treatment of Cancer Quality of Life Questionnaire (EORTC QLQ-C30)). Associated factors were analyzed exploratively using multivariable linear regressions. Among 1113 patients, clinically important limitations and symptoms were most pronounced in emotional (63%, 95% CI 60–66%), physical (60%, 95% CI 57–62%), role functioning (51%, 95% CI 48–54%), and pain (56%, 95% CI 53–59%) and fatigue (51%, 95% CI 48–54%). HRQoL differed between tumor locations with lower extremities performing the worst and sarcoma types with bone sarcoma types being most affected. Additionally, female gender, higher age, lower socioeconomic status, recurrent disease, not being in retirement, comorbidities, and being in treatment were associated with lower HRQoL. Sarcoma patients are severely restricted in their HRQoL, especially in functioning scales. The heterogeneity of sarcomas with regard to type and location is reflected in HRQoL outcomes. During treatment and follow-up, close attention has to be paid to the reintegration of the patients into daily life as well as to their physical abilities and emotional distress.
Tyrosine kinase inhibitors (TKIs) are currently the standard chemotherapeutic agents for the treatment of chronic myeloid leukemia (CML). However, due to TKI resistance acquisition in CML patients, identification of new vulnerabilities is urgently required for a sustained response to therapy. In this study, we have investigated metabolic reprogramming induced by TKIs independent of BCR-ABL1 alterations. Proteomics and metabolomics profiling of imatinib-resistant CML cells (ImaR) was performed. KU812 ImaR cells enhanced pentose phosphate pathway, glycogen synthesis, serine-glycine-one-carbon metabolism, proline synthesis and mitochondrial respiration compared with their respective syngeneic parental counterparts. Moreover, the fact that only 36% of the main carbon sources were utilized for mitochondrial respiration pointed to glycerol-phosphate shuttle as mainly contributors to mitochondrial respiration. In conclusion, CML cells that acquire TKIs resistance present a severe metabolic reprogramming associated with an increase in metabolic plasticity needed to overcome TKI-induced cell death. Moreover, this study unveils that KU812 Parental and ImaR cells viability can be targeted with metabolic inhibitors paving the way to propose novel and promising therapeutic opportunities to overcome TKI resistance in CML.
The multifunctional HSP70 co-chaperone BAG3 (BCL-2-associated athanogene 3) represents a key player in the quality control of the cellular proteostasis network. In response to stress, BAG3 specifically targets aggregation-prone proteins to the perinuclear aggresome and promotes their degradation via BAG3-mediated selective macroautophagy. To adapt cellular homeostasis to stress, BAG3 modulates and functions in various cellular processes and signaling pathways. Noteworthy, dysfunction and deregulation of BAG3 and its pathway are pathophysiologically linked to myopathies, cancer, and neurodegenerative disorders. Here, we report a BAG3 proteomic signature under proteostasis stress. To elucidate the dynamic and multifunctional action of BAG3 in response to stress, we established BAG3 interactomes under basal and proteostasis stress conditions by employing affinity purification combined with quantitative mass spectrometry. In addition to the identification of novel potential BAG3 interactors, we defined proteins whose interaction with BAG3 was altered upon stress. By functional annotation and protein-protein interaction enrichment analysis of the identified potential BAG3 interactors, we confirmed the multifunctionality of BAG3 and highlighted its crucial role in diverse cellular signaling pathways and processes, ensuring cellular proteostasis and cell viability. These include protein folding and degradation, gene expression, cytoskeleton dynamics (including cell cycle and transport), as well as granulostasis, in particular.
Ferric carboxymaltose (FCM) has been shown to achieve rapid replenishment of iron stores and correction of anaemia in various populations with iron deficiency. A decrease in serum phosphate (PO43−) levels, which in most cases is asymptomatic, has been reported with IV iron preparations. Hypophosphataemia (HP) is a known adverse drug reaction with FCM. This post hoc pooled analysis investigates the frequency, duration, risk factors, and clinical signs of HP as reported in interventional clinical trials with FCM. Pooled data from subjects enrolled across 45 clinical trials in different therapy areas were included. A three-step adjudication process was utilised to identify adverse events of HP. Stratified analyses by therapy group and stepwise logistic regression analysis were used to identify predictors of HP. This pooled analysis confirms that FCM is associated with increased rates of serum PO43− lowering, but mean serum PO43− values were seen to recover at Week 4 and further recover at Week 8. Among all subjects receiving FCM therapy (n = 6879), 41.4% (n = 2847) reached a PO43− nadir value <2.5 mg/dL at any point on study and 0.7% (n = 49) reached a nadir <1 mg/dL. Although gastroenterology and women’s health subjects were identified to be at higher risk, occurrence of severe HP (<1 mg/dL [0.3 mmol/L]) following FCM administration was not observed to be common among subjects in these studies. Furthermore, there was no correlation between laboratory serum PO43− values and the occurrence of reported adverse events related to low PO43− levels.
Improving long-term patient and graft survival after liver transplantation (LT) remains a major challenge. Compared to the early phase after LT, long-term morbidity and mortality of the recipients not only depends on complications immediately related to the graft function, infections, or rejection, but also on medical factors such as de novo malignancies, metabolic disorders (e.g., new-onset diabetes, osteoporosis), psychiatric conditions (e.g., anxiety, depression), renal failure, and cardiovascular diseases. While a comprehensive post-transplant care at the LT center and the connected regional networks may improve outcome, there is currently no generally accepted standard to the post-transplant management of LT recipients in Germany. We therefore described the structure and standards of post-LT care by conducting a survey at 12 German LT centers including transplant hepatologists and surgeons. Aftercare structures and form of cost reimbursement considerably varied between LT centers across Germany. Further discussions and studies are required to define optimal structure and content of post-LT care systems, aiming at improving the long-term outcomes of LT recipients.
Transjugular intrahepatic portosystemic shunt (TIPS) is an established treatment tool in decompensated liver cirrhosis that has been shown to prolong transplant-free survival. Hepatic encephalopathy (HE) is a frequent complication of decompensated cirrhosis, eventually induced and/or aggravated by TIPS, that remains a clinical challenge especially in these patients. Therefore, patient selection for TIPS requires careful assessment of risk factors for HE. TIPS procedural parameters regarding stent size and invasive portosystemic pressure gradient measurements thereby have an important role. Endovascular shunt modification, in combination with a conservative medical approach, often results in a significant reduction of symptoms. This review summarizes HE molecular mechanisms and pathophysiology as well as diagnostic and therapeutic approaches targeting shunt-induced HE.
Lack of sensitive diagnostic tests impairs the understanding of the epidemiology of histoplasmosis, a disease whose burden is estimated to be largely underrated. Broad-range PCRs have been applied to identify fungal agents from pathology blocks, but sensitivity is variable. In this study, we compared the results of a specific Histoplasma qPCR (H. qPCR) with the results of a broad-range qPCR (28S qPCR) on formalin-fixed, paraffin-embedded (FFPE) tissue specimens from patients with proven fungal infections (n = 67), histologically suggestive of histoplasmosis (n = 36) and other mycoses (n = 31). The clinical sensitivity for histoplasmosis of the H. qPCR and the 28S qPCR was 94% and 48.5%, respectively. Samples suggestive for other fungal infections were negative with the H. qPCR. The 28S qPCR did not amplify DNA of Histoplasma in FFPE in these samples, but could amplify DNA of Emergomyces (n = 1) and Paracoccidioides (n = 2) in three samples suggestive for histoplasmosis but negative in the H. qPCR. In conclusion, amplification of Histoplasma DNA from FFPE samples is more sensitive with the H. qPCR than with the 28S qPCR. However, the 28S qPCR identified DNA of other fungi in H. qPCR-negative samples presenting like histoplasmosis, suggesting that the combination of both assays may improve the diagnosis.
Central nervous hyperarousal is as a key component of current pathophysiological concepts of chronic insomnia disorder. However, there are still open questions regarding its exact nature and the mechanisms linking hyperarousal to sleep disturbance. Here, we aimed at studying waking state hyperarousal in insomnia by the perspective of resting-state vigilance dynamics. The VIGALL (Vigilance Algorithm Leipzig) algorithm has been developed to investigate resting-state vigilance dynamics, and it revealed, for example, enhanced vigilance stability in depressive patients. We hypothesized that patients with insomnia also show a more stable vigilance regulation. Thirty-four unmedicated patients with chronic insomnia and 25 healthy controls participated in a twenty-minute resting-state electroencephalography (EEG) measurement following a night of polysomnography. Insomnia patients showed enhanced EEG vigilance stability as compared to controls. The pattern of vigilance hyperstability differed from that reported previously in depressive patients. Vigilance hyperstability was also present in insomnia patients showing only mildly reduced sleep efficiency. In this subgroup, vigilance hyperstability correlated with measures of disturbed sleep continuity and arousal. Our data indicate that insomnia disorder is characterized by hyperarousal at night as well as during daytime.
The present study considered the entire leg alignment and links static parameters to the external joint moments during gait in patients with hip osteoarthritis. Eighteen patients with unilateral hip osteoarthritis were measured using the EOS® system. Clinical leg alignment and femoral parameters were extracted from the 3D reconstruction of the EOS images. A 3D gait analysis was performed and external knee and hip adduction moments were computed and compared to 18 healthy controls in the same age group. The knee adduction moments of the involved leg were strongly correlated to the femoral offset and the varus/valgus alignment. These parameters alone explained over 50% of the variance in the knee adduction moments. Adding the pelvic drop of the contralateral side increased the model of femoral offset and varus/valgus alignment and explained 78% of the knee adduction moment during the first half of the stance phase. The hip adduction moments were best associated with the hip kinematics and not the leg alignment.
In a previous study, EphB4 was demonstrated to be a positive regulator of A375-melanoma growth but a negative regulator of tumor vascularization and perfusion. To distinguish between EphB4 forward and ephrinB2 reverse signaling, we used the commercially available EphB4 kinase inhibitor NVP-BHG712 (NVP), which was later identified as its regioisomer NVPiso. Since there have been reported significant differences between the inhibition profiles of NVP and NVPiso, we compared the influence of NVP and NVPiso on tumor characteristics under the same experimental conditions. Despite the different inhibitory profiles of NVP and NVPiso, the comparative study conducted here showed the same EphB4-induced effects in vivo as in the previous investigation. This confirmed the conclusion that EphB4-ephrinB2 reverse signaling is responsible for increased tumor growth as well as decreased tumor vascularization and perfusion. These results are further substantiated by microarrays showing differences between mock-transfected and EphB4-transfected (A375-EphB4) cells with respect to at least 9 angiogenesis-related proteins. Decreased expression of vascular endothelial growth factor (VEGF), angiotensin 1 (Ang-1), and protein kinase B (Akt/PKB), together with the increased expression of tissue inhibitor of metalloproteinase-1 (TIMP-1) and transforming growth factor beta-2 (TGF-β2), is consistent with the impaired vascularization of A375-EphB4 xenografts. Functional overexpression of EphB4 in A375-EphB4 cells was confirmed by activation of a variety of signaling pathways, including the Janus kinase/signal transducers and activators of transcription (JAK/STAT), rat sarcoma virus/rapidly accelerated fibrosarcoma/mitogen activated protein kinase kinase (Ras/Raf/MEK), and nuclear factor kappa-B (NFkB) pathways.
Background: The ERGO2 (Ernaehrungsumstellung bei Patienten mit Rezidiv eines Glioblastoms) MR-spectroscopic imaging (MRSI) subtrial investigated metabolism in patients randomized to calorically restricted ketogenic diet/intermittent fasting (crKD-IF) versus standard diet (SD) in addition to re-irradiation (RT) for recurrent malignant glioma. Intracerebral concentrations of ketone bodies (KB), intracellular pH (pHi), and adenosine triphosphate (ATP) were non-invasively determined. Methods: 50 patients were randomized (1:1): Group A keeping a crKD-IF for nine days, and Group B a SD. RT was performed on day 4-8. Twenty-three patients received an extended MRSI-protocol (1H decoupled 31P MRSI with 3D chemical shift imaging (CSI) and 2D 1H point-resolved spectroscopy (PRESS)) at a 3T scanner at baseline and on day 6. Voxels were selected from the area of recurrent tumor and contralateral hemisphere. Spectra were analyzed with LCModel, adding simulated signals of 3-hydroxybutyrate (βOHB), acetone (Acn) and acetoacetate (AcAc) to the standard basis set. Results: Acn was the only reliably MRSI-detectable KB within tumor tissue and/or normal appearing white matter (NAWM). It was detected in 4/11 patients in Group A and in 0/8 patients in Group B. MRSI results showed no significant depletion of ATP in tumor tissue of patients at day 6 during crKD-IF, even though there were a significant difference in ketone serum levels between Group A and B at day 6 and a decline in fasting glucose in Group A from baseline to day 6. The tumor specific alkaline pHi was maintained. Conclusions: Our metabolic findings suggest that tumor cells maintain energy homeostasis even with reduced serum glucose levels and may generate additional ATP through other sources.r sources.
kurz und kn@pp news : Nr. 50
(2020)
Inhibitoren der Apoptose (IAP, inhibitor of apoptosis) Proteine spielen eine wichtige Rolle in Bezug auf Zelltodregulation und es ist anzunehmen, dass eine Dysregulation dieser Proteine zu einer Tumorentwicklung und Tumorprogression beiträgt. Erhöhte Expressionslevel von IAP Proteinen verhindern die Aktivierbarkeit des Zelltodprogrammes von Tumorzellen und eine Reihe von Studien konnte bereits erhöhte IAP Level in Tumorzelllinien sowie in primären Tumorproben nachweisen. Des Weiteren korrelieren erhöhte Expressionslevel von IAPs in Tumoren mit Behandlungsresistenzen und schlechten Prognosen für die Patienten.
Das diffuse großzellige B-Zell Lymphom (DLBCL, diffuse large B-cell lymphoma) zählt zu den häufigsten Subtypen der Non-Hodgkin Lymphome (NHL) mit 40 % aller neu diagnostizierten NHL Fälle. DLBCL ist eine sehr heterogene Erkrankung die in drei verschiedene Gruppen klassifiziert wurde: aktivierter B-Zell Typ (ABC, activated B-cell), Keimzentrum B-Zell Typ (GCB, germinal center B-Cell) und Mediastinaler großzelliger B-Zell Typ (PMBL, primary mediastinal B-cell lymphoma). Erhöhte Expressionslevel von zellulärem IAP1 (cIAP, cellular IAP) und cIAP2 wurden ebenfalls in primären Tumorproben von DLBCL Patienten nachgewiesen. Smac mimetics wurden entwickelt, um IAPs zu antagonisieren und stellen damit eine Behandlungsstrategie für DLBCL Patienten dar, denn ca. 40 % aller DLBCL Patienten entwickeln ein Rezidiv oder erreichen gar keine Remission unter Standardtherapie. Jedoch ist der Effekt von Smac mimetics in einer Einzelbehandlung limitiert, weswegen Kombinationstherapien mit Smac mimetics eine vielversprechende Strategie für ihren klinischen Einsatz darstellen. Aus diesem Grund haben wir in dieser Arbeit den Effekt von Smac mimetic in Kombination mit Proteasom-Inhibitoren analysiert und einen speziellen Fokus auf den molekularen Mechanismus des ausgelösten Zelltodsignalweges gelegt.
Die Kombination verschiedener Konzentrationen des Smac mimetics BV6 mit dem Proteasom-Inhibitor carfilzomib (CFZ) löst in allen drei getesteten DLBCL Subtypen (ABC, GCB und PMBL) Zelltod aus. Die Kalkulation des Kombinationsindexes (CI, combination index) sowie des Bliss Scores, zwei quantitative Parameter zur Bestimmung eines Synergismus, zeigen, dass fast alle getesteten Kombinationen einen Synergismus aufweisen. Dies verdeutlicht, dass eine Co-Behandlung von BV6 und CFZ eine wirksame Kombination ist um Zelltod in DLBCL Zelllinien auszulösen. Außerdem zeigt eine Kombination von BV6 mit anderen Proteasom-Inhibitoren wie ixazomib (IXA) oder oprozomib (OPR), ebenfalls eine synergistische Reduktion der Zellviabilität. Diese Ergebnisse deuten darauf hin, dass der detektierte Effekt nicht auf eine Substanz limitiert ist, sondern, dass ein genereller Effekt von Smac mimetic und Proteasom-Inhibitoren vorliegt, um Zellviabilität in DLBCL zu reduzieren. BV6 und CFZ induzieren einen apoptotischen Zelltod, da sie die Spaltung und Aktivierung von Initiator- und Effektorcaspasen (Caspasen-3, -7, -8 und -9) initiieren und sich der induzierte Zelltod mit Hilfe des Caspasen-Inhibitors zVAD.fmk verhindern lässt. Die Behandlung mit BV6 und CFZ führt zu einer Akkumulation von NIK, ein Protein welches zur Aktivierung des non-kanonischen NF-kB Signalweges benötigt wird. Weitere Untersuchungen zeigen jedoch, dass NIK nicht an der Zelltodinduktion beteiligt ist, da eine siRNA-basierte Herunterregulierung des NIK Proteins keinen Einfluss auf die Zelltodinduktion nimmt. Ebenfalls ist der Zelltod unabhängig von dem TNFa Signalweg, da weder eine Behandlung mit dem TNFa Inhibitor Enbrel den Zelltod verringern kann noch eine zusätzliche Gabe von TNFa den Zelltod erhöht. Weitere mechanistische Studien zeigen eine kritische Rolle der mitochondrialen Apoptose für den BV6/CFZ-vermittelten Zelltod. Unter Behandlung mit BV6/CFZ wurde eine Aktivierung von BAX und BAK nachgewiesen, welche beide mit verantwortlich für die Porenbildung in der mitochondrialen Membran sind. Eine Herunterregulation dieser beiden Proteine mittels siRNA reduziert signifikant den durch BV6/CFZ-induzierten Zelltod auf ein Minimum. Gleichzeitig löst eine Co-Behandlung mit BV6/CFZ einen Verlust des mitochondrialen Membranpotentials (LOMMP, loss of mitochondrial membrane potential) aus. In Übereinstimmung mit den vorherigen Experimenten, zeigen wir eine Akkumulation von mitochondrialen reaktiven Sauerstoffspezies (ROS; reactive oxygen species), sowie einen generellen Anstieg des allgemeinen ROS Levels. Eine Behandlung mit BV6/CFZ zeigt eine deutliche Akkumulation des pro-apoptotischen Proteins NOXA. Um dessen funktionelle Relevanz zu überprüfen, wurde die Proteinmenge von NOXA mittels siRNA stark reduziert. Eine Behandlung mit der Kombination aus BV6 und CFZ zeigt daraufhin eine signifikant reduzierte Zelltodinduktion, was die funktionelle Relevanz von NOXA für den BV6/CFZ-vermittelten Zelltod unterstreicht. Immunopräzipitationsstudien zeigen, dass in RIVA und U2932 Zellen NOXA konstitutiv an seinen anti-apoptotischen Bindungspartner MCL-1 gebunden ist, was die Zellen bereits darauf vorbereitet Apoptose zu durchlaufen. Dieses sogenannte „primen“ für Apoptose wird durch die Behandlung mit BV6 und CFZ weiter verstärkt, da es die Bindung zwischen NOXA und MCL-1 weiter erhöht. Dadurch wird die Balance zwischen pro- und anti-apoptotischen Proteinen zu Gunsten der pro-apoptotischen Proteine verschoben und die Induktion von Apoptose begünstigt.
Insgesamt zeigen die Ergebnisse, dass DLBCL Zelllinien sensitiv auf eine Behandlung mit Smac mimetic und Proteasom-Inhibitor reagieren und damit eine mögliche neue Behandlungsstrategie für diese heterogene Tumorerkrankung darstellt.
Context: Autoimmune polyglandular syndrome (APS-2: autoimmune Addison’s disease or type 1 diabetes) is conferred by predisposing HLA molecules, vitamin D deficiency, and heritable susceptibility. Organ destruction is accompanied by cytokine alterations. We addressed the monocytic cytokines of two distinct APS-2 cohorts, effects of vitamin D and HLA DQ risk.
Methods: APS-2 patients (n = 30) and healthy controls (n = 30) were genotyped for HLA DQA1/DQB1 and their CD14+ monocytes stimulated with IL1β and/or 1,25(OH)2D3 for 24 h. Immune regulatory molecules (IL-6, IL-10, IL-23A, IL-15, CCL-2, PD-L1), vitamin D pathway gene transcripts (CYP24A1, CYP27B1, VDR), and CD14 were analyzed by enzyme-linked immunosorbent assay and RTqPCR. Results: Pro-inflammatory CCL-2 was higher in APS-2 patients than in controls (p = 0.001), whereas IL-6 showed a trend – (p = 0.1). In vitro treatment with 1,25(OH)2D3 reduced proinflammatory cytokines (IL-6, CCL-2, IL-23A, IL-15) whereas anti-inflammatory cytokines (IL-10 and PD-L1) rose both in APS-type 1 diabetes and APS-Addison´s disease. Patients with adrenal autoimmunity showed a stronger response to vitamin D. Expression of IL-23A and vitamin D pathway genes VDR and CYP27B1 varied by HLA genotype and was lower in healthy individuals with high-risk HLA (p = 0.0025; p = 0.04), while healthy controls with low-risk HLA showed a stronger IL-10 and CD14 expression (p = 0.01; p = 0.03). Conclusion: 1,25(OH)2D3 regulates the monocytic response in APS-2 disorders type 1 diabetes or Addison´s disease. The monocytic cytokine profile of individuals carrying HLA high-risk alleles is proinflammatory, enhances polyglandular autoimmunity and can be targeted by vitamin D.
Background: Vacuum cleaning, which is associated with musculoskeletal complaints, is frequently carried out in private households and by professional cleaners. The aim of this pilot study was to quantify the movements during habitual vacuuming and to characterize the movement profile with regard to its variability. Methods: The data were collected from 31 subjects (21 f/10 m) using a 3D motion analysis system (XSens). Eight vacuum cleaners were used to vacuum polyvinyl chloride (PVC) and carpet floors. In 15 joints of the right upper extremity, the trunk and the lower extremities, Principal Component Analysis was used to determine the predominantly varying joints during vacuuming. Results: The movements of the trunk and the lower extremities were relatively constant and, therefore, had less influence. The shoulder, elbow and wrist joints were identified as joints that can be decisive for the movement profile and that can be influenced. These joints were represented in the course of the vacuuming cycle by the mean movement with its standard deviation. Conclusion: In summary, the generalization of a movement profile is possible for the trunk and the lower extremities due to the relative homogeneity. In future it will be necessary to identify factors influencing variability in order to draw conclusions about movement ergonomics.
The assessment of knee or hip joint loading by external joint moments is mainly used to draw conclusions on clinical decision making. However, the correlation between internal and external loads has not been systematically analyzed. This systematic review aims, therefore, to clarify the relationship between external and internal joint loading measures during gait. A systematic database search was performed to identify appropriate studies for inclusion. In total, 4,554 articles were identified, while 17 articles were finally included in data extraction. External joint loading parameters were calculated using the inverse dynamics approach and internal joint loading parameters by musculoskeletal modeling or instrumented prosthesis. It was found that the medial and total knee joint contact forces as well as hip joint contact forces in the first half of stance can be well predicted using external joint moments in the frontal plane, which is further improved by including the sagittal joint moment. Worse correlations were found for the peak in the second half of stance as well as for internal lateral knee joint contact forces. The estimation of external joint moments is useful for a general statement about the peak in the first half of stance or for the maximal loading. Nevertheless, when investigating diseases as valgus malalignment, the estimation of lateral knee joint contact forces is necessary for clinical decision making because external joint moments could not predict the lateral knee joint loading sufficient enough. Dependent on the clinical question, either estimating the external joint moments by inverse dynamics or internal joint contact forces by musculoskeletal modeling should be used.
SUMOylation is a reversible posttranslational modification pathway catalyzing the conjugation of small ubiquitin-related modifier (SUMO) proteins to lysine residues of distinct target proteins. SUMOylation modifies a wide variety of cellular regulators thereby affecting a multitude of key processes in a highly dynamic manner. The SUMOylation pathway displays a hallmark in cellular stress-adaption, such as heat or redox stress. It has been proposed that enhanced cellular SUMOylation protects the brain during ischemia, however, little is known about the specific regulation of the SUMO system and the potential target proteins during cardiac ischemia and reperfusion injury (I/R). By applying left anterior descending (LAD) coronary artery ligation and reperfusion in mice, we detect dynamic changes in the overall cellular SUMOylation pattern correlating with decreased SUMO deconjugase activity during I/R injury. Further, unbiased system-wide quantitative SUMO-proteomics identified a sub-group of SUMO targets exhibiting significant alterations in response to cardiac I/R. Notably, transcription factors that control hypoxia- and angiogenesis-related gene expression programs, exhibit altered SUMOylation during ischemic stress adaptation. Moreover, several components of the ubiquitin proteasome system undergo dynamic changes in SUMO conjugation during cardiac I/R suggesting an involvement of SUMO signaling in protein quality control and proteostasis in the ischemic heart. Altogether, our study reveals regulated candidate SUMO target proteins in the mouse heart, which might be important in coping with hypoxic/proteotoxic stress during cardiac I/R injury.
Physiologically based pharmacokinetic/pharmacodynamic (PBPK/PD) models can serve as a powerful framework for predicting the influence as well as the interaction of formulation, genetic polymorphism and co-medication on the pharmacokinetics and pharmacodynamics of drug substances. In this study, flurbiprofen, a potent non-steroid anti-inflammatory drug, was chosen as a model drug. Flurbiprofen has absolute bioavailability of ~95% and linear pharmacokinetics in the dose range of 50–300 mg. Its absorption is considered variable and complex, often associated with double peak phenomena, and its pharmacokinetics are characterized by high inter-subject variability, mainly due to its metabolism by the polymorphic CYP2C9 (fmCYP2C9 ≥ 0.71). In this study, by leveraging in vitro, in silico and in vivo data, an integrated PBPK/PD model with mechanistic absorption was developed and evaluated against clinical data from PK, PD, drug-drug and gene-drug interaction studies. The PBPK model successfully predicted (within 2-fold) 36 out of 38 observed concentration-time profiles of flurbiprofen as well as the CYP2C9 genetic effects after administration of different intravenous and oral dosage forms over a dose range of 40–300 mg in both Caucasian and Chinese healthy volunteers. All model predictions for Cmax, AUCinf and CL/F were within two-fold of their respective mean or geometric mean values, while 90% of the predictions of Cmax, 81% of the predictions of AUCinf and 74% of the predictions of Cl/F were within 1.25 fold. In addition, the drug-drug and drug-gene interactions were predicted within 1.5-fold of the observed interaction ratios (AUC, Cmax ratios). The validated PBPK model was further expanded by linking it to an inhibitory Emax model describing the analgesic efficacy of flurbiprofen and applying it to explore the effect of formulation and genetic polymorphisms on the onset and duration of pain relief. This comprehensive PBPK/PD analysis, along with a detailed translational biopharmaceutic framework including appropriately designed biorelevant in vitro experiments and in vitro-in vivo extrapolation, provided mechanistic insight on the impact of formulation and genetic variations, two major determinants of the population variability, on the PK/PD of flurbiprofen. Clinically relevant specifications and potential dose adjustments were also proposed. Overall, the present work highlights the value of a translational PBPK/PD approach, tailored to target populations and genotypes, as an approach towards achieving personalized medicine.
To successfully learn using open Internet resources, students must be able to critically search, evaluate and select online information, and verify sources. Defined as critical online reasoning (COR), this construct is operationalized on two levels in our study: (1) the student level using the newly developed Critical Online Reasoning Assessment (CORA), and (2) the online information processing level using event log data, including gaze durations and fixations. The written responses of 32 students for one CORA task were scored by three independent raters. The resulting score was operationalized as “task performance,” whereas the gaze fixations and durations were defined as indicators of “process performance.” Following a person-oriented approach, we conducted a process mining (PM) analysis, as well as a latent class analysis (LCA) to test whether—following the dual-process theory—the undergraduates could be distinguished into two groups based on both their process and task performance. Using PM, the process performance of all 32 students was visualized and compared, indicating two distinct response process patterns. One group of students (11), defined as “strategic information processers,” processed online information more comprehensively, as well as more efficiently, which was also reflected in their higher task scores. In contrast, the distributions of the process performance variables for the other group (21), defined as “avoidance information processers,” indicated a poorer process performance, which was also reflected in their lower task scores. In the LCA, where two student groups were empirically distinguished by combining the process performance indicators and the task score as a joint discriminant criterion, we confirmed these two COR profiles, which were reflected in high vs. low process and task performances. The estimated parameters indicated that high-performing students were significantly more efficient at conducting strategic information processing, as reflected in their higher process performance. These findings are so far based on quantitative analyses using event log data. To enable a more differentiated analysis of students’ visual attention dynamics, more in-depth qualitative research of the identified student profiles in terms of COR will be required.
Background: Both EPO levels and anemia have shown prognostic value in several cardiac disorders. An observational study with a prospective follow-up was performed to investigate their independent prognostic roles in severe aortic stenosis. Methods: An up to 36-month follow-up of consecutive patients with severe aortic stenosis undergoing TAVR in a high-volume center was performed. Patients with eGRF <30 mL/min/1.73 m2 were excluded. EPO levels and/or anemia status and its association with mid-term mortality were assessed. Results: Out of 407, 360 met eligibility criteria. Median age was 83 years, with 71.4% having a NYHA class III/IV. Anemia was present in 51.9%, and iron deficiency in 52.8%. Median (IQR) EPO levels were 14.4 (9.30–24.30) mIU/mL. Median follow-up was 566 days. Anemia was associated with overall mortality (HR 2.40, 95% CI 1.51–3.80, p < 0.001). Higher logEPO levels were associated with mid-term mortality (HR 4.05, 95% CI 2.29–7.16, p < 0.001), even after adjusting for clinically and/or statistically relevant factors (multivariate HR 2.25, 95 CI 1.09–4.66, p = 0.029). Kaplan-Meier analyses showed early diverging curves for anemia vs. non-anemia, whereas curves for patients in various EPO level quartiles started to diverge at about 100 days, with differences consistently increasing during the subsequent entire follow-up period. Conclusions: Differently from anemia, which was a strong predictor for both early and late mortality in severe aortic stenosis after TAVR, independent prognostic value of EPO only emerged after post-TAVR recovery. EPO prognostic value was independent from anemia and mild-to-moderate renal dysfunction. High EPO levels could be useful to identify patients with severe aortic stenosis showing a compromised mid-term survival in spite of TAVR use and independently from early TAVR results.
Objective: This study aims to evaluate catheter management in acute epididymitis (AE) patients requiring inpatient treatment and risk factors predicting severity of disease.
Material and Methods: Patients with diagnosed AE and inpatient treatment between 2004 and 2019 at the University Hospital Frankfurt were analyzed. A risk score, rating severity of AE, including residual urine > 100 ml, fever > 38.0°C, C-reactive protein (CRP) > 5 mg/dl, and white blood count (WBC) > 10/nl was introduced.
Results: Of 334 patients, 107 (32%) received a catheter (transurethral (TC): n = 53, 16%, suprapubic (SPC): n = 54, 16%). Catheter patients were older, exhibited more comorbidities, and had higher CRP and WBC compared with the non-catheter group (NC). Median length of stay (LOS) was longer in the catheter group (7 vs. 6 days, p < 0.001), whereas necessity of abscess surgery and recurrent epididymitis did not differ. No differences in those parameters were recorded between TC and SPC. According to our established risk score, 147 (44%) patients exhibited 0–1 (low-risk) and 187 (56%) 2–4 risk factors (high-risk). In the high-risk group, patients received a catheter significantly more often than with low-risk (TC: 22 vs. 9%; SPC: 19 vs. 12%, both p ≤ 0.01). Catheter or high-risk patients exhibited positive urine cultures more frequently than NC or low-risk patients. LOS was comparable between high-risk patients with catheter and low-risk NC patients.
Conclusion: Patients with AE who received a catheter at admission were older, multimorbid, and exhibited more severe symptoms of disease compared with the NC patients. A protective effect of catheters might be attributable to patients with adverse risk constellations or high burden of comorbidities. The introduced risk score indicates a possibility for risk stratification.
Evoked potentials in the amplitude-time spectrum of the electroencephalogram are commonly used to assess the extent of brain responses to stimulation with noxious contact heat. The magnitude of the N- and P-waves are used as a semi-objective measure of the response to the painful stimulus: the higher the magnitude, the more painful the stimulus has been perceived. The strength of the N-P-wave response is also largely dependent on the chosen reference electrode site. The goal of this study was to examine which reference technique excels both in practical and theoretical terms when analyzing noxious contact heat evoked potentials (CHEPS) in the amplitude-time spectrum. We recruited 21 subjects (10 male, 11 female, mean age of 55.79 years). We applied seven noxious contact heat stimuli using two temperatures, 51°C, and 54°C, to each subject. During EEG analysis, we aimed to identify the referencing technique which produces the highest N-wave and P-wave amplitudes with as little artifactual influence as possible. For this purpose, we applied the following six referencing techniques: mathematically linked A1/A2 (earlobes), average reference, REST, AFz, Pz, and mathematically linked PO7/PO8. We evaluated how these techniques impact the N-P amplitudes of CHEPS based on our data from healthy subjects. Considering all factors, we found that mathematically linked earlobes to be the ideal referencing site to use when displaying and evaluating CHEPS in the amplitude-time spectrum.
Alzheimer’s disease (AD) is the major cause of dementia. It is characterized by the accumulation of abnormal proteins (amyloid-β plaque and neurofibrillary tangles) leading to loss of synapses, dendrites, neurons, memory and cognition. Sporadic late-onset AD is the major type of AD characterized by unclear etiology and a lack of disease-modifying therapy. To understand this disease, an alternative AD hypothesis has been proposed: AD may resemble diabetes in the brain or “diabetes type 3”. This hypothesis is supported by the fact that (1) brain glucose hypometabolism precedes AD clinical symptoms and (2) diabetes increases the risk of AD. To test this hypothesis, wild-type rats receiving intracerebroventricular administration of streptozotocin (icv-STZ) were used as a model. Streptozotocin (STZ) is a glucosamine-nitrosourea compound commonly used to induce experimental diabetes by peripheral administration. A similar pathological mechanism to peripheral STZ is then proposed to explain icv-STZ toxicity: insulin receptor signaling impairment results in glucose hypometabolism leading to cognitive deficits.
Objective: Icv-STZ model seems promising as a toxin-induced, non-transgenic AD model with the possibility to connect AD and diabetes mellitus (DM), one of the risk factors for AD. However, the mechanisms of how icv-STZ induced AD-like symptoms are unclear. Therefore, using microdialysis as the main technique, we tested 2 AD hypotheses in this model: (1) the glucose hypometabolism as an alternative AD hypothesis and (2) the cholinergic deficit as an important characteristic of AD pathology. Hippocampus was chosen because cholinergic function in this region is severely affected in AD. In comparison, the striatum was chosen because it contains cholinergic interneurons and is less affected in AD.
Methods: In this study, we used male Wistar rats of 190-220 g body weight (5 weeks of age). The rats were injected intracerebrally with STZ at a dose of 3 mg/kg (2x1.5 mg/kg; „high dose“) and 0.6 mg/kg („low dose“) with saline as control. After 21 days, samples were collected to investigate cholinergic and metabolic changes using histology, biochemistry, and neurochemistry. Brain injury was confirmed using GFAP staining and Fluoro jade staining in the hippocampus. Mitochondrial toxicity was investigated by measurement of mitochondrial
respiratory function in both hippocampus and striatum. Cholinergic markers such as acetylcholinesterase (AChE) activity, choline acetyltransferase (ChAT) activity, and choline transporter (CHT-1) activity, commonly known as high-affinity choline uptake (HACU), were measured in both hippocampus and striatum using a spectrophotometer and a scintillator.
Microdialysis is the main technique in our study. It was done in awake animals under behavioral or pharmacological stimulation. We used a self-built probe with a semi-permeable membrane (pore size of 30 kDa) that was implanted in either hippocampus or striatum. The probes were then perfused with artificial cerebrospinal fluid (aCSF) supplemented with 0.1 μM neostigmine for extracellular acetylcholine level measurement. During the perfusion, small hydrophilic compounds from brain extracellular space diffuse into the dialysates. Dialysates of 15 minutes intervals were collected for 90 minutes and used for analysis. After collection of dialysates for the first 90 minutes (basal data), rats were moved to an open field box (35x32x20 cm) for behavioral stimulation. After collection of the second 90 minute dialysates, the rats were transferred back to the microdialysis cage and dialysates were collected for another 90 minutes. On day 2, after collection of dialysates under basal conditions, 1 μM scopolamine was added to the perfusion solution for stimulation of acetylcholine release. The dialysates were also collected for 90 min followed by another 90 min of dialysis without scopolamine. The microdialysate samples were then analyzed as follows. ACh level was measured by HPLC-ECD. Glucose metabolites (glucose, lactate, pyruvate) were measured by a CMA-600 microanalyzer. An alternative energy metabolite (beta-hydroxybutyrate/BHB) was measured by GC-MS. Choline and glycerol as membrane breakdown markers were also measured by HPLC-ECD and CMA-600 microanalyzer, respectively. Markers of oxidative stress (isoprostanes) were measured using a commercially available ELISA kit.
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An overexpression of the E3 ubiquitin ligase TRIM25 is implicated in several human cancers and frequently correlates with a poor prognosis and occurrence of therapy resistance in patients. Previous studies of our group have identified the mRNA encoding the pro-apoptotic caspase-2 as a direct target of the ubiquitous RNA binding protein human antigen R (HuR). The constitutive HuR binding observed in colon carcinoma cells negatively interferes with the translation of caspase-2 mainly through binding to the 5' untranslated region (UTR) of caspase-2 and thereby confers an increased survival of tumor cells. The main objective of this thesis was to unravel novel regulatory proteins critically involved in the control of caspase-2 translation and their impact on therapeutic drug resistance of human colon carcinoma cells. By employing RNA affinity chromatography in combination with mass-spectrometry, among several putative caspase-2 mRNA binding proteins, we have identified the tripartite motif-containing protein 25 (TRIM25) as novel caspase-2 translation regulatory protein in colon carcinoma cells. The constitutive TRIM25 binding to caspase-2 mRNA in two different human colorectal carcinoma cell lines was validated by ribonucleoprotein (RNP)-immunoprecipitation (RIP)-RT-PCR assay and by means of biotin-labeled RNA-pull-down assay. Since caspase-2 is a caspase which is particularly involved in the DNA-damage-induced apoptosis, I tested the functional relevance of negative caspase-2 regulation by TRIM25 for chemotherapeutic drug-induced cell death of different adenocarcinoma cells by RNA interference (RNAi)- mediated loss-of-function and gain-of-function approaches. In the first part of the thesis, I could demonstrate that transient silencing of TRIM25 caused a significant increase in caspase-2 protein levels without affecting the amount of corresponding mRNAs. Mechanistically, the TRIM25 silencing-triggered increase in caspase-2 was totally impaired by cycloheximide, indicating that the stimulatory effects on caspase-2 levels depend on protein synthesis. This finding was corroborated by RNP/polysomal fractionation, which revealed that the transient knockdown of TRIM25 caused a significant redistribution of caspase-2 transcripts from the fraction of RNP particles to that from translationally active polyribosomes.
The second part of my thesis aimed at the elucidation of the functional consequences of the negative caspase-2 regulation by TRIM25 for enhanced tumor cell survival. Thereby, I found that the siRNA-mediated knockdown of TRIM25 caused a significant increase in the chemotherapeutic drug-induced cleavage of caspase-3 and to elevations in cytoplasmic cytochrome c levels implicating that TRIM25 depletion did mainly affect the intrinsic apoptotic pathway. Concordantly, the ectopic expression of TRIM25 caused a reduction in caspase-2 protein levels, concomitant with an attenuated sensitivity of tumor cells to doxorubicin.
To test the functional impact of caspase-2 in the TRIM25 depletion-dependent sensitization to drug-induced apoptosis, I employed a siRNA-mediated knockdown of caspase-2. Interestingly, the strong induction of caspase-3 and -7 cleavage after doxorubicin treatment was fully impaired after the additional knockdown of caspase-2, indicating the sensitizing effects by TRIM25 knockdown depend on caspase-2.
Data from this thesis identified the TRIM25 as a novel RNA-binding protein of caspase-2 mRNA, which negatively interferes with the translation of caspase-2 and which functionally contributes to chemotherapeutic drug resistance of colon carcinoma cells. Interfering with the negative TRIM25-caspase-2 axis may represent a promising therapeutic avenue for sensitizing colorectal cancers to conventional anti-tumor therapies.
Bipolar disorder (BD) and major depressive disorder (MDD) are severe mood disorders that belong to the most debilitating diseases worldwide. Differentiating both mood disorders often poses a major clinical challenge, leading to frequent misdiagnoses. Objective biomarkers able to differentiate individuals with BD and MDD therefore represent a psychiatric research field of utmost importance. Recent studies have applied resting-state fMRI paradigms and found promising results differentiating both disorders based on the acquired data. However, most of these studies have focused their efforts on acutely depressed patients. Thus, it remains unclear whether the aberrations remain in a symptomless disease state.
The here presented study addresses these issues by evaluating the ability to differentiate both disorders from one another by conducting a between-group comparison of functional brain network connectivity (FNC) obtained from resting-state fMRI data. Data were collected from 20 BD, 15 MDD patients and 30 age- and gender-matched healthy controls (HC). Graph theoretical analyses were applied to detect differences in functional network organization between the groups on a global and regional network level.
Network analysis detected frontal, temporal and subcortical nodes in emotion regulation areas such as the limbic system and associated regions exhibiting significant differences in network integration and segregation in BD compared to MDD patients and HC. Participants with MDD and HC only differed in frontal and insular network centrality.
These results indicate that a significantly altered brain network topology in the limbic system might be a trait marker specific to BD. Brain network analysis in these regions may therefore be used to differentiate euthymic BD not only from HC but also from patients with MDD.