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Evaluation of 2‑methoxyestradiol serum levels as a potential prognostic marker in malignant melanoma
(2021)
Experimental findings indicated that 2‑methoxyestradiol (2‑ME), an endogenous metabolite of 17β‑estradiol, may exhibit anti‑tumorigenic properties in various types of tumour, such as melanoma and endometrial carcinoma. In patients with endometrial cancer, the serum levels of 2‑ME are decreased compared with those in healthy controls, and this finding has been associated with a poor outcome. The aim of the present study was to examine whether the serum levels of 2‑ME are decreased in patients with melanoma, and whether this decrease may be correlated with disease stage and, therefore, serve as a prognostic indicator. ELISA was used to detect serum levels of 2‑ME in patients with stage I‑IV malignant melanoma (MM). A cohort of 78 patients with MM was analysed, along with 25 healthy controls, among whom 15 were women in the second trimester of pregnancy (positive control). As expected, significantly elevated levels of serum 2‑ME were observed in pregnant control patients compared with those in patients with MM and healthy controls. There was no observed correlation between 2‑ME serum levels in patients with MM and disease stage, tumour thickness, lactate dehydrogenase or S100 calcium‑binding protein B levels. In addition, the 2‑ME levels of patients with MM did not differ significantly from those of normal healthy controls. Overall, the findings of the present study indicated that the 2‑ME serum levels in patients with MM were not decreased, and there was no correlation with early‑ or advanced‑stage disease. Therefore, in contrast to published results on endometrial cancer, endogenous serum 2‑ME levels in MM were not found to be correlated with tumour stage and did not appear to be a suitable prognostic factor in MM.
Resting state fMRI has been employed to identify alterations in functional connectivity within or between brain regions following acute and chronic exposure to Δ9-tetrahydrocannabinol (THC), the psychoactive component in cannabis. Most studies focused a priori on a limited number of local brain areas or circuits, without considering the impact of cannabis on whole-brain network organization. The present study attempted to identify changes in the whole-brain human functional connectome as assessed with ultra-high field (7T) resting state scans of cannabis users (N = 26) during placebo and following vaporization of cannabis. Two distinct data-driven methodologies, i.e. network-based statistics (NBS) and connICA, were used to identify changes in functional connectomes associated with acute cannabis intoxication and history of cannabis use. Both methodologies revealed a broad state of hyperconnectivity within the entire range of major brain networks in chronic cannabis users compared to occasional cannabis users, which might be reflective of an adaptive network reorganization following prolonged cannabis exposure. The connICA methodology also extracted a distinct spatial connectivity pattern of hypoconnectivity involving the dorsal attention, limbic, subcortical and cerebellum networks and of hyperconnectivity between the default mode and ventral attention network, that was associated with the feeling of subjective high during THC intoxication. Whole-brain network approaches identified spatial patterns in functional brain connectomes that distinguished acute from chronic cannabis use, and offer an important utility for probing the interplay between short and long-term alterations in functional brain dynamics when progressing from occasional to chronic use of cannabis.
The microtubule (MT) cytoskeleton is crucial for cell motility and migration by regulating multiple cellular activities such as transport and endocytosis of key components of focal adhesions (FA). The kinesin-13 family is important in the regulation of MT dynamics and the best characterized member of this family is the mitotic centromere-associated kinesin (MCAK/KIF2C). Interestingly, its overexpression has been reported to be related to increased metastasis in various tumor entities. Moreover, MCAK is involved in the migration and invasion behavior of various cell types. However, the precise molecular mechanisms were not completely clarified. To address these issues, we generated CRISPR/dCas9 HeLa and retinal pigment epithelium (RPE) cell lines overexpressing or downregulating MCAK. Both up- or downregulation of MCAK led to reduced cell motility and poor migration in malignant as well as benign cells. Specifically, it’s up- or downregulation impaired FA protein composition and phosphorylation status, interfered with a proper spindle and chromosome segregation, disturbed the assembly and disassembly rate of FA, delayed cell adhesion, and compromised the plus-tip dynamics of MTs. In conclusion, our data suggest MCAK act as an important regulator for cell motility and migration by affecting the actin-MT cytoskeleton dynamics and the FA turnover, providing molecular mechanisms by which deregulated MCAK could promote malignant progression and metastasis of tumor cells.
Einleitung: Frailty (engl. für Gebrechlichkeit) bezeichnet eine mit hohem Alter zunehmende Verschlechterung des körperlichen und kognitiven Zustandes von Individuen, woraufhin der Körper nicht mehr in der Lage ist, adäquat auf äußere und innere Stressoren zu reagieren. Frailty ist mit einer erhöhten Morbiditäts- und Mortalitätsrate sowie längerer Krankenhausverweildauer und erhöhter postoperativer Komplikationsrate verbunden und stellt folglich einen chirurgischen Risikofaktor dar.
Problemstellung: Die Relevanz eines strukturierten Frailty Assessments in der präoperativen Risikostratifizierung führte zur Indikationsstellung, diverse validierte Risk Assessment Tools auf ihre prädiktive Vorhersagekraft bezüglich des Auftretens von postoperativen Komplikationen und postoperativer Sterbewahrscheinlichkeit zu untersuchen.
Methoden: In die vorliegende Studie wurden Patienten, die in dem Zeitraum vom 01.09.2018 und 31.01.2019 in der allgemeinchirurgischen Ambulanz vorstellig waren und einen allgemeinchirurgischen Eingriff erhielten, aufgenommen. Mittels Fragebögen wurden die Scores „Risk Analysis Index“, „Edmonton Frail Scale“ sowie „Charlson Comorbidity Index“ präoperativ erhoben und retrospektiv mit Daten aus der digitalen Patientenakte zusammengeführt. Endpunkte waren die 90-Tages- Mortalität sowie das Auftreten von schweren postoperativen Komplikationen ab Clavien Dindo Grad 3b. Die Analyse erfolgte in SPSS mittels Chi-Quadrat Test, t- Test und ROC-Kurven Analysen.
Ergebnisse: Das durchschnittliche Alter der Studienkohorte lag bei 56 ± 15.9 Jahren und der Anteil männlicher Patienten überwog mit 59.2% (n=282).
Die Fragebögen wurden 739 Patienten vorlegt und 476 Patienten konnten in die Datenanalyse eingeschlossen werden. Die 90-Tages-Mortalität lag bei 2.7% (n=13) und 9% (n=43) erlitten schwere postoperative Komplikationen ab Clavien-Dindo Grad IIIb. Die Einteilung nach der ASA-Klassifikation (p=0.024), maligne Diagnosen -7-(p<0.001) und Majorkomplikationen (p<0.001) stellten präoperative Risikofaktoren für postoperative 90-Tage-Mortalität dar. Von den Risk Assessment Scores zeigte lediglich der Risk Analysis Index eine signifikante Korrelation auf (p=0.013). Ein mittels ROC-Analyse ermittelter Cut-Off Wert von 23 klassifizierte 166 (34.9%) Patienten als frail, die mit 69% Sensitivität und 66% Spezifität (AUC=0.735) ein erhöhtes Risiko für postoperatives Versterben innerhalb von 90 Tagen aufwiesen (p=0.008). Risikofaktoren für das Auftreten schwerer postoperativer Komplikationen waren die ASA-Klassifikation (p=0.041), längere Krankenhausverweildauer (p<0.001) und maligne Diagnosen (p<0.001). Der Charlson Comorbidity Index (p=0.031) und RAI-C Werte ≥ 23 (p<0.001) korrelierten signifikant mit Majorkomplikationen. Das Alter ab 65 Jahren stellte mit 77 % Spezifität und 69 % Sensitivität ebenfalls einen prädiktiven Risikofaktor für postoperative Mortalität dar (AUC=0,787).
Schlussfolgerung: Mithilfe validierter Risk Assessment Tools ist es möglich Patienten, die ein erhöhtes Risiko für postoperative negative Ereignisse aufweisen, bereits präoperativ zu erkennen. Dies ermöglicht eine bessere Beurteilung der chirurgischen Indikationsstellung sowie das rechtzeitige Ergreifen von risikominimierenden Maßnahmen. Es ist notwendig die Ergebnisse dieser Arbeit künftig mit risikominimierenden Maßnahmen zu verknüpfen und zu untersuchen, ob die Implementierung der Risk Assessment Tools zu verbesserten postoperativen Ergebnissen führt, wenn modifizierbare Faktoren verbessert werden.
Bilateral simultaneous cochlear implantation is a safe method of hearing rehabilitation in adults
(2023)
Purpose: Bilateral cochlear implantation is an effective treatment for patients with bilateral profound hearing loss. In contrast to children, adults mostly choose a sequential surgery. This study addresses whether simultaneous bilateral CI is associated with higher rates of complications compared to sequential implantation.
Methods: 169 bilateral CI surgeries were analyzed retrospectively. 34 of the patients were implanted simultaneously (group 1), whereas 135 patients were implanted sequentially (group 2). The duration of surgery, the incidence of minor and major complications and the duration of hospitalization of both groups were compared.
Results: In group 1, the total operating room time was significantly shorter. The incidences of minor and major surgical complications showed no statistically significant differences. A fatal non-surgical complication in group 1 was particularly extensively reappraised without evidence of a causal relationship to the chosen mode of care. The duration of hospitalization was 0.7 days longer than in unilateral implantation but 2.8 days shorter than the combined two hospital stays in group 2.
Conclusion: In the synopsis of all considered complications and complication-relevant factors, equivalence of simultaneous and sequential cochlear implantation in adults in terms of safety was found. However, potential side effects related to longer surgical time in simultaneous surgery must be considered individually. Careful patient selection with special consideration to existing comorbidities and preoperative anesthesiologic evaluation is essential.
Untreated periodontal disease may influence general health. However, how may a physician, who is not trained in periodontal probing, detect untreated periodontitis?
Activated matrix metalloproteinase-8 (aMMP-
8) in saliva correlates with periodontal probing parameters. Thus, sensitivity and specificity of a chair-side test for aMMP-8 to detect periodontitis were evaluated. Thirty cases [untreated chronic periodontitis (ChP); 15 generalized moderate and 15 generalized severe] and 30 controls [probing depths (PD) ≤3 mm, vertical probing attachment level (PAL-V) ≤2 mm at <30 % of sites) were examined periodontally (PD, PAL-V, bleeding on probing). Subsequently, the aMMP-8 test was performed. The test kit
becomes positive with ≥25 ng/ml aMMP-8 in the sample.
The aMMP-8 test was positive in 87 % of ChP and in 40 % of controls. That corresponds to a sensitivity of 87 % and a specificity of 60 %. The sensitivity to detect generalized severe ChP was 93 % (60 % specificity). Backward
stepwise logistic regression analysis to explain positive
aMMP-8 tests identified exclusively ChP with an odds of 9.8 (p < 0.001). Positive results of the aMMP-8 test significantly correlate with generalized ChP. The aMMP-8 test may be used by physicians to detect periodontitis in their patients.
Colorectal cancer (CRC) is one of the most common tumor entities worldwide and a common cause of cancer-associated death. Colorectal cancer liver metastases (CRLM) thereby constitute a severe life-limiting factor. The therapy of CRLM presents a major challenge and surgical resection as well as systemic chemotherapy remain the first-line treatment options. Over the years several locoregional, vascular- and image-based treatments offered by interventional radiologists have emerged when conventional therapies fail, or metastases recurrence occurs. Among such options is the conventional/traditional transarterial chemoembolization (cTACE) by local injection of a combination of chemotherapeutic- and embolic-agents. A similar treatment is the more recent irinotecan-loaded drug-eluting beads TACE (DEBIRI-TACE), which are administered using the same approach. Numerous studies have shown that these different types of chemoembolization can be applied in different clinical settings safely. Furthermore, such treatments can also be combined with other local or systemic therapies. Unfortunately, due to the incoherent patient populations of studies investigating TACE in CRLM, critics state that the definite evidence supporting positive patient outcomes is still lacking. In the following article we review studies on conventional and DEBIRI-TACE. Although highly dependent on the clinical setting, prior therapies and generally the study population, cTACE and DEBIRI-TACE show comparable results. We present the most representative studies on the different chemoembolization procedures and compare the results. Although there is compelling evidence for both approaches, further studies are necessary to determine which patients profit most from these therapies. In conclusion, we determine TACE to be a viable option in CRLM in different clinical settings. Nevertheless, a multidisciplinary approach is desired to offer patients the best possible care.
In den Bürgerwissenschaften, auch bekannt unter dem englischen Begriff Citizen Science, existiert eine Vielzahl an Forschungsansätzen und Methoden. Während diese in vielen wissenschaftlichen Disziplinen gut etabliert sind, finden sich augenscheinlich relativ wenige davon in der medizinischen und Gesundheitsforschung. Allerdings zeigt ein Blick in die Praxis, dass bürgerwissenschaftliche Ansätze in der Medizin und Gesundheitsforschung durchaus praktiziert werden, jedoch häufig unter anderen Namen. Der Artikel bietet aus interdisziplinärer Perspektive einen (selektiven) Überblick über Begriffe, reflektiert diese und die dahinterstehenden Methoden und diskutiert sie vergleichend. Im Fokus steht dabei der Grad der Beteiligung der Bürger*innen bzw. Patient*innen an wissenschaftlicher Forschung.
Low platelet count predicts reduced survival in potentially resectable hepatocellular carcinoma
(2022)
The prognostic role of platelet count in hepatocellular carcinoma (HCC) remains unclear, and in fact both thrombocytopenia and thrombocytosis are reported as predictors of unfavourable outcomes. This study aimed to clarify the prognostic value of preoperative platelet count in potentially resectable HCC. We retrospectively reviewed 128 patients who underwent hepatic resection for HCC at a tertiary academic centre (2007–2019). Patient data were modelled by regression analysis, and platelet count was treated as a continuous variable. 89 patients had BCLC 0/A tumours and 39 had BCLC B tumours. Platelet count was higher in patients with larger tumours and lower in patients with higher MELD scores, advanced fibrosis, and portal hypertension (p < 0.001 for all listed variables). After adjusting for BCLC stage and tumour diameter, low platelet count associated with reduced overall survival (hazard ratio 1.25 per 50/nL decrease in platelet count, 95% confidence interval (CI) 1.02–1.53, p = 0.034) and increased perioperative mortality (odds ratio 1.96 per 50/nL decrease in platelet count, 95% CI 1.19–3.53, p = 0.014). Overall, low platelet count correlates with increased liver disease severity, inferior survival, and excess perioperative mortality in resectable HCC. These insights might be applied in clinical practice to better select patients for resection.
Hintergrund: Epilepsie bezeichnet eine Erkrankung, welche durch eine anhaltende Prädisposition für Symptome, die im Zusammenhang mit einer ungewöhnlich starken oder synchronisierten elektrischen Aktivität des Gehirns auftreten (=epileptischer Anfall) charakterisiert ist. Mutationen in dem Gen DEPDC5 (Dishevelled, Egl-10 and Pleckstrin (DEP) domain-containing protein 5) sind mit fokalen Epilepsien assoziiert und führen in Tiermodellen und humanen Modellen zu einer Überaktivierung des mTOR-Signalweges. Auf neuromorphologischer Ebene zeigt sich die mTOR-Überaktivierung durch eine Vergrößerung des Zelldurchmessers und einer zunehmenden Verästelung der Neuriten. Ziel dieser Studie war es, die morphologischen Auswirkungen der DEPDC5-assoziierten mTOR-Überaktivierung in der SH-SY5Y-Neuroblastomzelllinie zu untersuchen. Dadurch soll eine Einschätzung getroffen werden, ob das im Zusammenhang mit neurodegenerativen Erkrankungen bereits gut etablierte SH-SY5Y-Zellmodell auch bei der Untersuchung epilepsieassoziierter Pathomechanismen zum Einsatz kommen kann.
Methoden: Unter Einsatz der CRISPR/Cas9-Methode wurden Knockout(KO)-Mutationen in Exon 2 und Exon 3 des DEPDC5-Gens erzeugt und diese mittels Sanger-Sequenzierung bestätigt. Danach wurden die Knockouts auf RNA- und Proteinebene, durch Real-time-RT-PCR und Western Blot validiert. Die bestätigten homozygoten DEPDC5-KO-Zelllinen wurden anschließend mittels Western Blot auf eine mTOR-Überaktivierung untersucht. Zuletzt erfolgte die neuromorphologische Validierung des DEPDC5-KO. Die Zellgröße proliferierender SH-SY5Y wurden mittels Durchflusszytometrie (FACS) untersucht. Zudem bestimmten wir die neuronale Architektur differenzierter SH-SY5Y unter Einsatz der Sholl-Analyse.
Ergebnisse: Es konnten vier unabhängige DEPDC5-KO-SH-SY5Y-Zelllinien mit homozygoten Indel-Mutationen und vorzeitigem Stoppcodon in Exon 3 generiert werden. Die erwartete Reduktion an DEPDC5-mRNA konnte mittels Real-time 10 RT-PCR nicht festgestellt werden. Die Abwesenheit des Proteins konnte durch Western Blot aber gezeigt werden. Funktionell konnte für alle Zelllinien eine mTOR-Überaktivierung mittels Western Blot nachgewiesen werden. Dabei konnte phosphoryliertes AKT (AKT serine/threonine kinase 1) als stabilster Marker etabliert werden. Auf neuromorphologischer Ebene ließ sich ein Trend in Richtung vergrößertem Zelldurchmesser bei verlängertem Auswachsen der Neuriten feststellen, wobei sich für das Modell Unterschiede zwischen den einzelnen Klonen ergaben.
Diskussion: In dieser Studie gelang es erstmals, den Zusammenhang zwischen DEPDC5-KO und einer mTOR-Überaktivierung in der onkogenen SH-SY5Y-Zelllinie zu replizieren. Das verlängerte Auswachsen der Neuriten, bei jedoch gleichbleibender Anzahl peripherer Verästelungen, stellt dabei einen neuen Befund dar und könnte durch die frühe neuronale Entwicklungsstufe des SH-SY5Y-Zellmodells erklärt werden. Auf Grundlage der Ergebnisse dieser Arbeit lässt sich sagen, dass das robuste und kostengünstige SH-SY5Y-Zellmodell insbesondere für high-throughput Methoden und Screeningassays ein geeignetes Modell ist. Durch die Kombination mit reiferen Zellmodellen, wie beispielsweise iPSCs (induced pluripotent stem cells), könnte der Phänotyp eines DEPDC5-KO und anderer mTOR-assoziierter Epilepsien, möglichst umfassend in-vitro dargestellt werden.
Background: The Global Burden of Diseases Study 2017 predicted that chronic obstructive pulmonary disease (COPD) is the second leading cause of death, the fourth leading cause of premature death, and the third cause for DALYs lost in Nepal. However, data on the population-based prevalence of COPD in Nepal are very limited. This study aims to assess the prevalence of COPD and factors associated with the occurrence of COPD in Nepal.
Methods: From a nationally representative, population-based cross-sectional study on chronic non-communicable diseases, the prevalence of COPD and its associated factors was determined. Of 12,557 participants aged over 20 years, 8945 participants completed a questionnaire and spirometry. Eligible participants were also asked to answer a COPD diagnostic questionnaire for screening COPD cases, and if needed underwent pre-bronchodilator and post-bronchodilator spirometry. COPD was defined as a post-bronchodilator FEV1/FVC (forced expiratory volume in 1 s/forced vital capacity) ratio of < 0.70. Multivariate logistic regression was performed to identify factors associated with COPD. Sampling weights were used for all data analyses.
Results: The prevalence of COPD in Nepal was 11.7% (95% CI: 10.5% to 12.9 %), which increased with age, and higher in those with a low educational level, those who had smoked ≥ 50 pack-years, persons having a low body mass index (BMI), and residents of Karnali province. Multivariate analysis revealed that being aged 60 years and above, having a low BMI, low educational status, having smoked more than 50 pack-years, provincial distribution, and ethnicity were independent predictors of COPD.
Conclusion: COPD is a growing and serious public health issue in Nepal. Factor such as old age, cigarette smoking, low educational attainment, low BMI, ethnicity, and locality of residence (province-level variation) plays a vital role in the occurrence of COPD. Strategies aimed at targeting these risk factors through health promotion and education interventions are needed to decrease the burden of COPD.
Supported by the German Alliance Against Depression, 82 regions in Germany launched their own community-based multi-level intervention programs targeting both depression and suicidal behavior prior to January 2016. Sixteen of these regions have implemented the full 4-level intervention program comprising 1) training of General Practitioners, 2) a public awareness campaign, 3) training of community facilitators and 4) support for depressed patients and their relatives for at least three years. The aim of the study was to examine possible suicide prevention effects in these sixteen 4-level intervention regions (comprising a population of 6,976,309) by 1) comparing the annual suicide rates during the 3-year intervention period to a 10-year baseline and 2) comparing these differences to corresponding trends in Germany after excluding all intervention regions (Germany-IR). Primary outcome was the annual rate of suicides. Analyses included negative binomial regression models. When examining differences between suicide rates during the intervention period compared to the baseline period, only a trend towards a significant reduction was found. This reduction of suicides in the sixteen 4-level intervention regions did not differ from that in Germany-IR as control. The interpretation of these findings has to take into account that the training of General Practitioners, police and other community facilitators might have improved the recognition of suicides, thus increasing detection rates. Furthermore, destigmatizing effects of the public awareness campaigns might have increased the number of suicides by lowering suicide threshold (“normalization”) for those at risk and by decreasing the rate of suicides deliberately hidden by suicide victims or their relatives.
Das Glioblastom ist eine tödliche maligne Erkrankung des zentralen Nervensystems. Etablierte Therapiekonzepte resultieren in einer Fünfjahresüberlebensrate von fünf Prozent. Die derart infauste Prognose wird unter anderem bedingt durch die Heterogenität des Tumors. Insbesondere einer Population stammzellartiger Zellen wird die Verantwortung für Resistenz und Rekurrenz des Glioblastoms zugesprochen. Die genuine Plastizität des Glioblastoms mit entsprechender Fähigkeit zur Änderungen tumorweiter Expressionsprofile und Ausbildung einzigartiger funktioneller Fähigkeiten kann ohne gezielte Beeinträchtigung von stammzellartigen Zellen womöglich nicht ausreichend überwunden werden. Als Urheber kritischer Eigenschaften erscheint die erfolgreiche Elimination dieser Population innerhalb des Glioblastoms notwendig um nachhaltige Therapieerfolge zu erzielen. Mögliche Strategien der Elimination stammzellartiger Zellen setzen an Differenzierung und Ausbeutung stammzelltypischer Signalwege zur Modulation dieser Zellen an. Hierdurch sollen zentrale Fähigkeiten der Population stammzellartiger Zellen, wie Selbsterneuerung, Resistenz gegenüber Strahlen- und Chemotherapie und erneute Formation heterogener Tumore, überwunden werden.
Zentrale zelluläre Prozesse, welche zum Erhalt des stammzellartigen Zustandes dieser Zellen beitragen, sind unter anderem der Hedgehog- und Notch-Signalweg. Einer Beeinträchtigung dieser Signalwege wohnt womöglich die Fähigkeit der effektiven Modulation zentraler Eigenschaften stammzellartiger Zellen inne. Neben diesen Signalwegen gibt es eine Reihe weiterer Prozesse, welchen eine Urheberschaft an der Resistenz der Zellen zugesprochen wird. Hierzu zählt beispielweise der Prozess der Autophagie. Die Autophagie ist ein hochkonservierter zellulärer Mechanismus zur Selbsterneuerung durch Selbstdegradation fehlerhafter zellulärer Komponenten. Gleichzeitig kann die Autophagie durch eine Überaktivität zu einem spezifischen, autophagischen Zelltod beitragen. Die Modulation dieses Dualismus kann in einer Vielzahl von Tumoren, so auch im Glioblastom, das Schicksal einer tumorfördernden Autophagie in eine antitumorale Autophagie ändern.
Im Rahmen dieser Arbeit wurde erstmalig eine Modulation zentraler Eigenschaften stammzellartiger Zellen durch die Beeinflussung ihrer zellulären Prozesse mittels kombinierter Therapie durch Arsentrioxid oder GANT und (-)-Gossypol gezeigt. Arsentrioxid wirkt unspezifisch unter anderem als Inhibitor von Notch- und Hedgehog-Signalweg. Diese Inhibition wurde auch in den untersuchten Zellen nachgewiesen und führte zu einer Reduktion von stammzelltypischen Markerproteinen und Fähigkeiten der Tumorgenese in -vitro und ex -vivo, sowie zur Sensitivierung gegenüber strahleninduzierten Schäden. Gegenüber einer spezifischen Hedgehog-Inhibition durch eine GANT-vermittelte Bindung an Gli-Transkriptionsfaktoren zeigten sich deutliche Vorteile der dualen Inhibition durch Arsentrioxid hinsichtlich der genannten Eigenschaften. Die Kombination der Substanzen mit dem pan-Bcl-Inhibitor (-)-Gossypol führte zu einer synergistischen Steigerung der antitumoralen Effekte. (-)-Gossypol wird in Gliomzellen insbesondere mit der Modulation der autophagischen Maschinerie und Auslösung eines autophagischen Zelltodes in Verbindung gebracht. Die Ergebnisse weisen parallele Signalweginteraktionen mit effektiver Modulation des DNA-Damage-Response-Systems durch die Reduktion des Proteins CHEK als kausalen Mechanismus des Synergismus der Substanzen aus.
Die beobachteten Änderungen der typischen Eigenschaften stammzellartiger Zellen durch die Therapie mit Arsentrioxid und (-)-Gossypol implizieren lohnende Folgeuntersuchungen zur weiteren Evaluation dieser Effekte in -vivo, um zukünftig translationale Ableitungen zu erlauben. Die Heterogenität des Glioblastoms und seine genuine Plastizität lassen sich womöglich erfolgreich durch multiple Eingriffe in unterschiedliche zelluläre Prozesse, hierunter Notch- und Hedgehog-Signaling, modulieren. Hierdurch könnten zentrale Eigenschaften des Glioblastoms eventuell effektiv verändert und Resistenz sowie Rekurrenz überwunden werden.
The impact of GABAergic transmission on neuronal excitability depends on the Cl--gradient across membranes. However, the Cl--fluxes through GABAA receptors alter the intracellular Cl- concentration ([Cl-]i) and in turn attenuate GABAergic responses, a process termed ionic plasticity. Recently it has been shown that coincident glutamatergic inputs significantly affect ionic plasticity. Yet how the [Cl-]i changes depend on the properties of glutamatergic inputs and their spatiotemporal relation to GABAergic stimuli is unknown. To investigate this issue, we used compartmental biophysical models of Cl- dynamics simulating either a simple ball-and-stick topology or a reconstructed CA3 neuron. These computational experiments demonstrated that glutamatergic co-stimulation enhances GABA receptor-mediated Cl- influx at low and attenuates or reverses the Cl- efflux at high initial [Cl-]i. The size of glutamatergic influence on GABAergic Cl--fluxes depends on the conductance, decay kinetics, and localization of glutamatergic inputs. Surprisingly, the glutamatergic shift in GABAergic Cl--fluxes is invariant to latencies between GABAergic and glutamatergic inputs over a substantial interval. In agreement with experimental data, simulations in a reconstructed CA3 pyramidal neuron with physiological patterns of correlated activity revealed that coincident glutamatergic synaptic inputs contribute significantly to the activity-dependent [Cl-]i changes. Whereas the influence of spatial correlation between distributed glutamatergic and GABAergic inputs was negligible, their temporal correlation played a significant role. In summary, our results demonstrate that glutamatergic co-stimulation had a substantial impact on ionic plasticity of GABAergic responses, enhancing the attenuation of GABAergic inhibition in the mature nervous systems, but suppressing GABAergic [Cl-]i changes in the immature brain. Therefore, glutamatergic shift in GABAergic Cl--fluxes should be considered as a relevant factor of short-term plasticity.
Purpose: To compare the effective lens position (ELP), anterior chamber depth (ACD) changes, and visual outcomes in patients with and without pseudoexfoliation syndrome (PEX) after cataract surgery.
Design: Prospective, randomized, fellow-eye controlled clinical case series.
Methods: This prospective comparative case series enrolled 56 eyes of 56 consecutive patients with (n = 28) or without PEX (n = 28) and clinically significant cataract who underwent standard phacoemulsification and were implanted with single-piece acrylic posterior chamber intraocular lenses (IOLs). The primary outcome parameters were the ACD referring to the distance between the corneal anterior surface and the lens anterior surface, which is an indicator of the postoperative axial position of the IOL (the so-called ELP) and distance corrected visual acuity (DCVA).
Results: Before surgery, the ACD was 2.54 ± 0.42 mm in the PEX group and 2.53 ± 0.38 mm in the control group (p = 0.941). Postoperatively, the ACD was 4.29 ± 0.71 mm in the PEX group and 4.33 ± 0.72 mm in the normal group, respectively (p = 0.533). There was no significant difference in ACD changes between groups (PEX group: 1.75 ± 0.74 mm, control group: 1.81 ± 0.61 mm, p = 0.806) and DCVA pre- (p = 0.469) and postoperatively (PEX group: 0.11 ± 0.13 logMAR, control group: 0.09 ± 0.17 logMAR, p = 0.245) between groups.
Conclusion: Preoperative and postoperative ACD, as an indicator of ELP, between PEX eyes and healthy eyes after cataract surgery showed no significant difference. Phacoemulsification induced similar changes in eyes with PEX compared to healthy eyes.
Background: Sodium bituminosulfonate is derived from naturally occurring sulphur-rich oil shale and is used for the treatment of the inflammatory skin disease rosacea. Major molecular players in the development of rosacea include the release of enzymes that process antimicrobial peptides which, together with reactive oxygen species (ROS) and vascular endothelial growth factor (VEGF), promote pro-inflammatory processes and angiogenesis. The aim of this study was to address the molecular mechanism(s) underlying the therapeutic benefit of the formulation sodium bituminosulfonate dry substance (SBDS), which is indicated for the treatment of skin inflammation, including rosacea.
Methods: We investigated whether SBDS regulates the expression of cytokines, the release of the antimicrobial peptide LL-37, calcium mobilization, proteases (matrix metalloproteinase, elastase, kallikrein (KLK)5), VEGF or ROS in primary human neutrophils. In addition, activity assays with 5-lipoxygenase (5-LO) and recombinant human MMP9 and KLK5 were performed.
Results: We observed that SBDS reduces the release of the antimicrobial peptide LL-37, calcium, elastase, ROS and VEGF from neutrophils. Moreover, KLK5, the enzyme that converts cathelicidin to LL-37, and 5-LO that produces leukotriene (LT)A4, the precursor of LTB4, were both inhibited by SBDS with an IC50 of 7.6 μg/mL and 33 μg/mL, respectively.
Conclusion: Since LTB4 induces LL-37 which, in turn, promotes increased intracellular calcium levels and thereby, ROS/VEGF/elastase release, SBDS possibly regulates the LTB4/LL-37/calcium – ROS/VEGF/elastase axis by inhibiting 5-LO and KLK5. Additional direct effects on other pro-inflammatory pathways such as ROS generation cannot be ruled out. In summary, SBDS reduces the generation of inflammatory mediators from human neutrophils possibly accounting for its anti-inflammatory effects in rosacea.
Effects of foam rolling duration on tissue stiffness and perfusion: a randomized cross-over trial
(2021)
Despite its beneficial effects on flexibility and muscle soreness, there is still conflicting evidence regarding dose-response relationships and underlying mechanisms of foam rolling (FR). This study aimed to investigate the impact of different FR protocols on tissue perfusion and tissue stiffness. In a randomized crossover trial, two FR protocols (2x1 min, 2x3 min) were applied to the right anterior thigh of twenty healthy volunteers (11 females, 25 ± 4 years). Tissue perfusion (near infrared spectroscopy, NIRS) and stiffness (Tensiomyography, TMG and Myotonometry, MMT) were assessed before and after FR application. Variance analyses revealed a significant interaction of FR duration and tissue perfusion (F[1,19] = 7.098, p = 0.015). Local blood flow increased significantly from pre to post test (F[1,19] = 7.589, p = 0.013), being higher (Δ +9.7%) in the long-FR condition than in the short-FR condition (Δ +2.8%). Tissue stiffness (MMT) showed significant main effects for time (F[1,19] = 12.074, p = 0.003) and condition (F[1,19] = 7.165, p = 0.015) with decreases after short-FR (Δ -1.6%) and long-FR condition (Δ -1.9%). However, there was no time*dose-interaction (F[1,19] = 0.018, p = 0.895). No differences were found for TMG (p > 0.05). FR-induced changes failed to exceed the minimal detectable change threshold (MDC). Our data suggest that increased blood flow and altered tissue stiffness may mediate the effects of FR although statistical MDC thresholds were not achieved. Longer FR durations seem to be more beneficial for perfusion which is of interest for exercise professionals designing warm-up and cool-down regimes. Further research is needed to understand probable effects on parasympathetic outcomes representing systemic physiological responses to locally applied FR stimulations.
Graph data is an omnipresent way to represent information in machine learning. Especially, in neuroscience research, data from Diffusion-Tensor Imaging (DTI) and functional Magnetic Resonance Imaging (fMRI) is commonly represented as graphs. Exploiting the graph structure of these modalities using graph-specific machine learning applications is currently hampered by the lack of easy-to-use software. PHOTONAI Graph aims to close the gap between domain experts of machine learning, graph experts and neuroscientists. Leveraging the rapid machine learning model development features of the Python machine learning API PHOTONAI, PHOTONAI Graph enables the design, optimization, and evaluation of reliable graph machine learning models for practitioners. As such, it provides easy access to custom graph machine learning pipelines including, hyperparameter optimization and algorithm evaluation ensuring reproducibility and valid performance estimates. Integrating established algorithms such as graph neural networks, graph embeddings and graph kernels, it allows researchers without significant coding experience to build and optimize complex graph machine learning models within a few lines of code. We showcase the versatility of this toolbox by building pipelines for both resting–state fMRI and DTI data in the hope that it will increase the adoption of graph-specific machine learning algorithms in neuroscience research.
Context information supports serial dependence of multiple visual objects across memory episodes
(2019)
Visual perception operates in an object-based manner, by integrating associated features via attention. Working memory allows a flexible access to a limited number of currently relevant objects, even when they are occluded or physically no longer present. Recently, it has been shown that we compensate for small changes of an object’s feature over memory episodes, which can support its perceptual stability. This phenomenon was termed ‘serial dependence’ and has mostly been studied in situations that comprised only a single relevant object. However, since we are typically confronted with situations where several objects have to be perceived and held in working memory, the central question of how we selectively create temporal stability of several objects has remained unsolved. As different objects can be distinguished by their accompanying context features, like their color or temporal position, we tested whether serial dependence is supported by the congruence of context features across memory episodes. Specifically, we asked participants to remember the motion directions of two sequentially presented colored dot fields per trial. At the end of a trial one motion direction was cued for continuous report either by its color (Experiment 1) or serial position (Experiment 2). We observed serial dependence, i.e., an attractive bias of currently toward previously memorized objects, between current and past motion directions that was clearly enhanced when items had the same color or serial position across trials. This bias was particularly pronounced for the context feature that was used for cueing and for the target of the previous trial. Together, these findings demonstrate that coding of current object representations depends on previous representations, especially when they share similar content and context features. Apparently the binding of content and context features is not completely erased after a memory episode, but it is carried over to subsequent episodes. As this reflects temporal dependencies in natural settings, the present findings reveal a mechanism that integrates corresponding bundles of content and context features to support stable representations of individualized objects over time.
As the current SARS-CoV-2 pandemic continues, serological assays are urgently needed for rapid diagnosis, contact tracing and for epidemiological studies. So far, there is little data on how commercially available tests perform with real patient samples and if detected IgG antibodies provide protective immunity. Focusing on IgG antibodies, we demonstrate the performance of two ELISA assays (Euroimmun SARS-CoV-2 IgG & Vircell COVID-19 ELISA IgG) in comparison to one lateral flow assay ((LFA) FaStep COVID-19 IgG/IgM Rapid Test Device) and two in-house developed assays (immunofluorescence assay (IFA) and plaque reduction neutralization test (PRNT)). We tested follow up serum/plasma samples of individuals PCR-diagnosed with COVID-19. Most of the SARS-CoV-2 samples were from individuals with moderate to severe clinical course, who required an in-patient hospital stay.
For all examined assays, the sensitivity ranged from 58.8 to 76.5% for the early phase of infection (days 5-9) and from 93.8 to 100% for the later period (days 10-18) after PCR-diagnosed with COVID-19. With exception of one sample, all positive tested samples in the analysed cohort, using the commercially available assays examined (including the in-house developed IFA), demonstrated neutralizing (protective) properties in the PRNT, indicating a potential protective immunity to SARS-CoV-2. Regarding specificity, there was evidence that samples of endemic coronavirus (HCoV-OC43, HCoV-229E) and Epstein Barr virus (EBV) infected individuals cross-reacted in the ELISA assays and IFA, in one case generating a false positive result (may giving a false sense of security). This need to be further investigated.