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Introduction: The newest intravenous (IV) iron products show an improved safety profile over predecessors, allowing for the rapid administration of relatively high doses. Ferric derisomaltose (FDI; also known as iron isomaltoside), ferric carboxymaltose (FCM), and ferumoxytol (FER), are successful treatments for iron deficiency (Europe; FDI and FCM) and iron deficiency anemia (US; FDI, FCM, and FER). Areas covered: This review focusses on the chemistry and structure of FDI, FCM, and FER, and on three key aspects of IV iron safety: (1) hypersensitivity; (2) hypophosphatemia and sequelae; (3) cardiovascular safety. Expert opinion: Although the safety of modern IV iron has improved, immediate infusion reactions and the development of hypophosphatemia must be appreciated and recognized by those who prescribe and administer IV iron. Immediate infusion reactions can occur with any IV iron and are usually mild; severe reactions – particularly anaphylaxis – are extremely rare. The recognition and appropriate management of infusion reactions is an important consideration to the successful administration of IV iron. Severe, persistent, hypophosphatemia is a specific side effect of FCM. No cardiovascular safety signal has been identified for IV iron. Ongoing trials in heart failure will provide additional long-term efficacy and safety data.
New reactive coenzyme analogues for affinity labeling of NAD+ and NADP+ dependent dehydrogenases
(1995)
Reactive coenzyme analogues ω-(3-diazoniumpyridinium)alkyl adenosine diphosphate were prepared by reaction of ω-(3-aminopyridinium)alkyl adenosine diphosphate with nitrous acid. In these compounds the nicotinamide ribose is substituted by hydrocarbon chains of varied lengths (n-ethyl to n-pentyl). The diazonium compounds are very unstable and decompose rapidly at room temperature. They show a better stability at 0 °C. L actate and alcohol dehydrogenase do not react with any of the analogues. Glyceraldehyde-3-phosphate dehydrogenase reacts rapidly with the diazonium pentyl compound. Decreasing the length of the alkyl chain significantly decreases the inactivation velocity. 3α,20β-Hydroxysteroid dehydrogenase reacts at 0 °C with the ethyl homologue and slowly with the propyl compound. The butyl-and pentyl analogues do not inactivate at 0 °C. Tests with 14C -labeled 2-(3-diazoniumpyridinium)ethyl adenosine diphosphate show that complete loss of enzyme activity results after incorporation of 2 moles of inactivator into 1 mole of tetrameric enzyme. 4-(3-Acetylpyridinium)butyl 2 ′-phospho-adenosine diphosphate, a structural analogue of NADP +, was prepared by condensation of adenosine-2,3-cyclophospho-5′-phosphomorpholidate with (3-acetylpyridinium)butyl phosphate, followed by hydrolysis of the cyclic phosphoric acid ester with 2 ′:3′-cyclonucleotide-3′-phosphodiesterase. Because of the redox potential (-315 mV) and the distance between the pyridinium and phosphate groups, this analogue is a hydrogen acceptor and its reduced form a hydrogen donor in tests with alcohol dehyd rogenase from Thermoanaerobium brockii. The reduced form of the coenzyme analogue also is a hydrogen donor with glutathione reductase. With other NADP +-dependent dehydrogenases the com pound has been show n to be a competitive inhibitor against the natural coenzyme. The acetyl group reacts with bromine to form the bromoacetyl group. This reactive bromoacetyl analogue is a specific active-site directed irreversible inhibitor of isocitrate dehydrogenase.
Background: The alpha7 nicotinic acetylcholine receptor (Chrna7) plays an essential anti-inflammatory role in immune homeostasis and was recently found on mast cells (MC). Psychosocial stress can trigger MC hyperactivation and increases pro-inflammatory cytokines in target tissues such as the skin. If the cholinergic system (CS) and Chrna7 ligands play a role in these cascades is largely unknown. Objective: To elucidate the role of the CS in the response to psychosocial stress using a mouse-model for stress-triggered cutaneous inflammatory circuits. Methods: Key CS markers (ACh, Ch, SLURP-1, SLURP-2, Lynx1, Chrm3, Chrna7, Chrna9, ChAT, VAChT, Oct3, AChE, and BChE) in skin and its MC (sMC), MC activation, immune parameters (TNFα, IL1β, IL10, TGFβ, HIF1α, and STAT3) and oxidative stress were analyzed in skin from 24 h noise-stressed mice and in cultured MC (cMC) from C57BL/6 or Chrna7-Knockout mice. Results: First, Chrna7 and SLURP-1 mRNA were exclusively upregulated in stressed skin. Second, histomorphometry located Chrna7 and SLURP-1 in nerves and sMC and demonstrated upregulated contacts and increased Chrna7+ sMC in stressed skin, while 5 ng/mL SLURP-1 degranulated cMC. Third, IL1β+ sMC were high in stressed skin, and while SLURP-1 alone had no significant effect on cMC cytokines, it upregulated IL1β in cMC from Chrna7-KO and in IL1β-treated wildtype cMC. In addition, HIF1α+ sMC were high in stressed skin and Chrna7-agonist AR-R 17779 induced ROS in cMC while SLURP-1 upregulated TNFα and IL1β in cMC when HIF1α was blocked. Conclusions: These data infer that the CS plays a role in the regulation of stress-sensitive inflammatory responses but may have a surprising pro-inflammatory effect in healthy skin, driving IL1β expression if SLURP-1 is involved.
Atrial fibrillation (AF) continues to be a leading cause of cerebrovascular morbidity and mortality resulting from cardioembolic stroke. Oral anticoagulation therapy has been shown to decrease the incidence of cardioembolic stroke in patients with AF by more than 50%. Appropriate use of anticoagulation with vitamin K antagonists requires precise adherence and monitoring. A number of factors that potentially induce patients' dissatisfaction reduce quality of patient life. New direct oral anticoagulants, such as the direct factor Xa inhibitors rivaroxaban, apixaban, edoxaban, and the thrombin inhibitor dabigatran, were developed to overcome the limitations of the conventional anticoagulant drugs. However, models to optimize the benefit of therapy and to ensure that therapy can be safely continued are missing for the new oral anticoagulants. This review will briefly describe the new oral anticoagulants dabigatran, rivaroxaban, apixaban, and edoxaban with focus on their use for prevention of embolic events in AF. Moreover, it will discuss the safety, efficacy, cost data, and benefit for patients' quality of life and adherence.
Angiogenesis is essential for tumor growth and progression. It has been demonstrated that tumor growth beyond a size 1 to 2 mm3 requires the induction of new vessels. Angiogenesis is regulated by several endogenous stimulators and inhibitors of endothelial cell migration, proliferation and tube formation. Under physiological conditions these mediators of endothelial cell growth are in balance and vessel growth is limited. In fact, within the angiogenic balance endothelial cell turnover is sufficient to maintain a functional vascular wall but does not allow vessel growth. Tumor growth an progression has successfully been correlated to the serum concentration of angiogenic mediators. Furthermore, the vascular density of tumor tissues could be correlated to the clinical course of the disease in several tumor entities. Within the last years several new mediators of endothelial cell growth have been isolated e.g. angiopoietin 1, angiopoietin 2, midkine, pleiotropin, leptin and maspin. In this review we discuss the mechanisms leading to tumor angiogenesis and describe some of the newer mediators of endothelial cell stimulation and inhibition.
Objectives: To investigate the prevalence of depressive symptoms in rheumatoid arthritis (RA) patients using two previously validated questionnaires in a large patient sample, and to evaluate depressive symptoms in the context of clinical characteristics (e.g. remission of disease) and patient-reported impact of disease.
Methods: In this cross-sectional study, the previously validated Patient Health Questionnaire (PHQ-9) and Beck-Depression Inventory II (BDI-II) were used to assess the extent of depressive symptoms in RA patients. Demographic background, RA disease activity score (DAS28), RA impact of disease (RAID) score, comorbidities, anti-rheumatic therapy and antidepressive treatment, were recorded. Cut-off values for depressive symptomatology were PHQ-9 ≥5 or BDI-II ≥14 for mild depressive symptoms or worse and PHQ-9 ≥ 10 or BDI-II ≥ 20 for moderate depressive symptoms or worse. Prevalence of depressive symptomatology was derived by frequency analysis while factors independently associated with depressive symptomatology were investigated by using multiple logistic regression analyses. Ethics committee approval was obtained, and all patients provided written informed consent before participation.
Results: In 1004 RA-patients (75.1% female, mean±SD age: 61.0±12.9 years, mean disease duration: 12.2±9.9 years, DAS28 (ESR): 2.5±1.2), the prevalence of depressive symptoms was 55.4% (mild or worse) and 22.8% (moderate or worse). Characteristics independently associated with depressive symptomatology were: age <60 years (OR = 1.78), RAID score >2 (OR = 10.54) and presence of chronic pain (OR = 3.25). Of patients classified as having depressive symptoms, only 11.7% were receiving anti-depressive therapy.
Conclusions: Mild and moderate depressive symptoms were common in RA patients according to validated tools. In routine clinical practice, screening for depression with corresponding follow-up procedures is as relevant as incorporating these results with patient-reported outcomes (e.g. symptom state), because the mere assessment of clinical disease activity does not sufficiently reflect the prevalence of depressive symptoms.
Clinical trial registration number: This study is registered in the Deutsches Register Klinischer Studien (DRKS00003231) and ClinicalTrials.gov (NCT02485483).
Lyme disease (LD), which is caused by genospecies of the Borrelia burgdorferi sensu lato complex, is the most common vector-borne disease in the Northern hemisphere. Spirochetes are transmitted by Ixodes ticks and maintained in diverse vertebrate animal hosts. Following tick bite, spirochetes initially establish a localized infection in the skin. However, they may also disseminate hematogenously to several distal sites, including heart, joints, or the CNS. Because they need to survive in diverse microenvironments, from tick vector to mammalian hosts, spirochetes have developed multiple strategies to combat the numerous host defense mechanisms. One of these strategies includes the production of a number of complement-regulator acquiring surface proteins (CRASPs) which encompass CspA, CspZ, and OspE paralogs to blunt the complement pathway. These proteins are capable of preventing complement activation on the spirochete surface by binding to complement regulator Factor H. The genes encoding these CRASPs differ in their expression patterns during the tick-to-host infection cycle, implying that these proteins may exhibit different functions during infection. This review summarizes the recent published reports which investigated the roles that each of these molecules plays in conferring tick-borne transmission and dissemination in vertebrate hosts. These findings offer novel mechanistic insights into LD pathobiology and may facilitate the identification of new targets for preventive strategies against Lyme borreliosis.
New histone deacetylase inhibitors as potential therapeutic tools for advanced prostate carcinoma
(2008)
The anti-epileptic drug valproic acid is also under trial as an anti-cancer agent due to its histone deacetylase (HDAC) inhibitory properties. However, the effects of valproic acid (VPA) are limited and concentrations required for exerting anti-neoplastic effects in vitro may not be reached in tumour patients. In this study, we tested in vitro and in vivo effects of two VPA-derivatives (ACS2, ACS33) on pre-clinical prostate cancer models. PC3 and DU-145 prostate tumour cell lines were treated with various concentrations of ACS2 or ACS33 to perform in vitro cell proliferation 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assays and to evaluate tumour cell adhesion to endothelial cell monolayers. Analysis of acetylated histones H3 and H4 protein expression was performed by western blotting. In vivo tumour growth was conducted in subcutaneous xenograft mouse models. Tumour sections were assessed by immunohistochemistry for histone H3 acetylation and proliferation. ACS2 and ACS33 significantly up-regulated histone H3 and H4 acetylation in prostate cancer cell lines. In micromolar concentrations both compounds exerted growth arrest in PC3 and DU-145 cells and prevented tumour cell attachment to endothelium. In vivo, ACS33 inhibited the growth of PC3 in subcutaneous xenografts. Immunohistochemistry and western blotting confirmed increased histone H3 acetylation and reduced proliferation. ACS2 and ACS33 represent novel VPA derivatives with superior anti-tumoural activities, compared to the mother compound. This investigation lends support to the clinical testing of ACS2 or ACS33 for the treatment of prostate cancer.
In this manuscript a comprehensive coverage of recent developments in the drug therapy of vasospasm while providing the background information that neuroscientists need to understand its rationale. The range of new agents available for treatment of cerebral vasospasm is expanding rapidly along with rapid advances in pharmacology and physiology that are uncovering the mechanisms of this disease. Although there are many publications for treatment of cerebral vasospasm, most are focusing on different aspects of vasospasm treatment and many have limited value due to insufficient quality. Moreover, the complexity of this, in many cases deleterious condition, is enormous and the information needed to understand drug effects is accordingly often not readily available in a single source. A number of pharmacological and medical therapies are currently in use or being investigated in an attempt to reverse cerebral vasospasm, but only a few have proven to be useful. Current research efforts promise the eventual production of new medical therapies. At last, recommendations for the use of different treatment stages based on currently available clinical data are provided.
In our previous work we showed that NGAL, a protein involved in the regulation of proliferation and differentiation, is overexpressed in human breast cancer (BC) and predicts poor prognosis. In neoadjuvant chemotherapy (NACT) pathological complete response (pCR) is a predictor for outcome. The aim of this study was to evaluate NGAL as a predictor of response to NACT and to validate NGAL as a prognostic factor for clinical outcome in patients with primary BC. Immunohistochemistry was performed on tissue microarrays from 652 core biopsies from BC patients, who underwent NACT in the GeparTrio trial. NGAL expression and intensity was evaluated separately. NGAL was detected in 42.2% of the breast carcinomas in the cytoplasm. NGAL expression correlated with negative hormone receptor (HR) status, but not with other baseline parameters. NGAL expression did not correlate with pCR in the full population, however, NGAL expression and staining intensity were significantly associated with higher pCR rates in patients with positive HR status. In addition, strong NGAL expression correlated with higher pCR rates in node negative patients, patients with histological grade 1 or 2 tumors and a tumor size <40 mm. In univariate survival analysis, positive NGAL expression and strong staining intensity correlated with decreased disease-free survival (DFS) in the entire cohort and different subgroups, including HR positive patients. Similar correlations were found for intense staining and decreased overall survival (OS). In multivariate analysis, NGAL expression remained an independent prognostic factor for DFS. The results show that in low-risk subgroups, NGAL was found to be a predictive marker for pCR after NACT. Furthermore, NGAL could be validated as an independent prognostic factor for decreased DFS in primary human BC.
Background: Supracondylar fractures of the humerus are a common injury in pediatric traumatology. The most common operative therapy is closed reduction and percutaneous pinning using K-wires. Common complications associated with this entity are neurovascular lesions, especially of the brachial artery and the median nerve.
Methods: We report two cases of patients treated in our trauma-center with supracondylar fracture of the humerus (AO IV°) and neurovascular complications.
Results: Both patients underwent open revision and recovered completely in their further course.
Conclusion: We recommend detailed neurovascular examination initially and after reposition of the fracture. The threshold for open reduction in cases of irreducible fractures should be low. In the presence of neurovascular impairment an open revision is mandatory, even months after the initial Trauma.
Cancer therapies have experienced significant advances in recent years. While conventional cytotoxic chemotherapy has long been the cornerstone for the treatment of many tumor entities, uprising immunotherapies have revolutionized the therapeutic landscape. Among them, immune checkpoint inhibitors (ICIs) with their demonstrated increased overall survival rates and response rates in cancer patients are now FDA-approved for metastatic melanoma and multiple other malignancies. Despite their clinical benefit in cancer therapies, ICIs can induce unique autoimmune-like toxicities known as immune-related adverse events (irAEs), which can involve any organ system including the nervous system. Although neurotoxicities are rare complications of ICI therapy they are often severe and can lead to long-term disability or even death if left untreated.
Neurological irAEs exhibit a broad spectrum of clinical presentations affecting the entire nervous system. Diagnosing neurological irAEs is often challenging as symptoms and laboratory findings can be uncharacteristic for common neurological disorders and clinical experience with ICI-mediated toxicities is still limited. In light of expanding clinical indications for ICIs, physicians will encounter ICI-mediated neurotoxicities more frequently. Thus, thorough characterizations of the diverse set of neurological irAEs are essential for optimal patient care, the prevention of severe ICI-mediated complications, and the development of diagnostic and therapeutic algorithms. This work portrays the clinical presentation, management and outcome of neurological irAEs following ICI therapies.
Patients with neurotoxicities related to ICIs who presented at the Yale New Haven Hospital between January 2014 and June 2018 were retrospectively identified from the quality control database. A comprehensive chart review was performed and data regarding patient demographics, medical history, ICI regimen and neurotoxicity were recorded. In total, 18 patients with neurological irAEs following ICI therapy for melanoma, small cell lung cancer, non-small cell lung cancer, and Merkel-cell carcinoma were identified. Neurotoxicities included central nervous system disorders comprising central demyelinating disorder,autoimmune encephalitis predominantly affecting the grey matter, and aseptic meningitis. Peripheral nervous system toxicities included sensorimotor polyneuropathy and myasthenia gravis. Cases of hypophysitis were also recorded. Time to onset of neurological irAEs ranged from 1 to72 weeks with a median of five weeks. In all patients ICIs were held and steroids initiated. Additional immunomodulatory therapies were required in nine patients. Sixteen of 18 patients showed neurological improvement. Fourteen patients had highgrade neurotoxicity (grade 3-4), six of whom deceased due to cancer progression, while none of the low-grade neurotoxicity patients (grade 1-2) died. High-grade neurotoxicity was identified as a negative prognostic marker for overall survival (p = 0.046).
This work shows that neurotoxicities present early-onset, rapidly progressive complications of ICIs with a broad spectrum of clinical phenotypes affecting the central nervous system, peripheral nervous system, and neuroendocrine system. A high index of caution for neurological irAEs is warranted throughout ICI therapy as timely diagnosis and management can reduce morbidity and mortality. Randomized clinical trials are needed to develop standardized diagnostic and therapeutic algorithms of ICI-induced neurotoxicities.
Given the ongoing global SARS-CoV-2-vaccination efforts, clinical awareness needs to be raised regarding the possibility of an increased incidence of SARS-CoV-2-vaccine-related immune-mediated thrombocytopenia in patients with intracerebral hemorrhage (ICH) secondary to cerebral sinus and vein thrombosis (CVT) requiring (emergency) neurosurgical treatment in the context of vaccine-induced immune thrombotic thrombocytopenia (VITT). Only recently, an association of vaccinations and cerebral sinus and vein thrombosis has been described. In a number of cases, neurosurgical treatment is warranted for these patients and special considerations are warranted when addressing the perioperative coagulation. We, herein, describe the past management of patients with VITT and established a literature-guided algorithm for the treatment of patients when addressing the impaired coagulation in these patients. Increasing insights addressing the pathophysiology of SARS-CoV-2-vaccine-related immune-mediated thrombocytopenia guide physicians in developing an interdisciplinary algorithm taking into account the special considerations of this disease.
Mycophenolat-Mofetil (MMF) hemmt die Aktivität von Mikrogliazellen und verringert den exzitotoxischen neuronalen Schaden in organotypischen hippocampalen Schnittkulturen (OHSC). Der Tractus perforans ist die wichtigste neuronale afferente Verbindung zwischen entorhinalem Kortex (EC) und Gyrus dentatus (GD) im Hippocampus. Er besteht aus Axonen, deren Ursprungsneurone im EC liegen und die im GD terminieren. Ziel dieser Arbeit war es, die Wirkung von MMF auf den Erhalt dieser Projektion zu untersuchen. Methodisch wurde zu diesem Zweck die Fluoreszenzmarkierung des Tractus perforans in der organotypischen hippokampalen Schnittkultur (OHSC) etabliert. Die von uns angestrebte retrograde Färbemethode sollte entorhinale Neurone unter der Voraussetzung markieren, dass deren Axone (Tractus perforans) intakt waren. Ein guter neuronaler Erhalt sollte sich in einem entsprechend erhaltenen Tractus perforans und retrograd markierten entorhinalen Neuronen wiederspiegeln. OHSC aus 8 Tage alten Wistar Ratten wurden für 9 div (days in vitro) mit oder ohne MMF (100 mikro g/ml) kultiviert. Zunächst wurde methodisch die retrograde Markierung des Tractus perforans mit dem lipophilen Farbstoff DiI (1,1’-Dioctadecyl-3,3,3’,3’-tetramethylindo-carbocyaninperchlorat) in der OHSC etabliert und mit dem hydrophilen Dextranamin Mini Ruby versucht. Die retrograde Markierung entorhinaler Neurone und die durchgängige Darstellung des Tractus perforans in der OHSC mit Mini Ruby gelang in unseren Versuchen nicht, während die Markierung mit DiI erfolgreich war. Nach der Fixierung wurde die retrograde Markierung des Tractus perforans durch das Platzieren eines DiI-Kristalles im GD eingeleitet. Die auf diese Weise mit DiI markierten entorhinalen Neurone wurden mit neuronenspezifischen Antikörpern gegen NeuN gegengefärbt und somit zweifelsfrei als Neurone identifiziert. An diesem Modell wurde der Einfluß von MMF auf die Zahl DiI/NeuN doppelmarkierter entorhinaler Neurone quantitativ ausgewertet. Die quantitative Analyse erfolgte an Bildern, die mit einem konfokalen Laser Scanning Mikroskop gewonnen wurden. Die quantitative Auswertung retrograd mit DiI markierter OHSC zeigte, dass die Anzahl der DiI-NeuN doppelmarkierten entorhinalen Neurone in den MMF behandelten OHSC 19fach höher war als in den unbehandelten OHSC (p<0,05). Unsere Ergebnisse zeigen, dass MMF den Erhalt ganzer neuronaler Fasertrakte und Projektionen in der OHSC verbessert. Vor dem Hintergrund vorhandener Arbeiten, die auf neuroprotektive Effekte der MMF deuten, scheint MMF ein aussichtsreicher Kandidat für die Reduzierung des Sekundärschadens im Rahmen von Verletzungen des zentralen Nervensystems zu sein.
Einleitung In ihrer klinischen Symptomatik lassen sich der ischämische Schlaganfall (IS) und die intrazerebrale Blutung (ICH) nicht sicher unterscheiden. Hinsichtlich der Akuttherapie, die eine möglichst schnelle Wiederherstellung der zerebralen Sauerstoffversorgung („time is brain“) zum Ziel hat, ist diese Differenzierung jedoch essentiell. Das Ziel der vorliegenden Arbeit ist der Nachweis serologischer Biomarker in der Frühphase des Schlaganfalls zur Differenzierung zwischen IS und ICH. Hypothesen-gestützt wurden aufgrund pathophysiologischer Überlegungen hierfür die ZNS-spezifischen Proteine GFAP, UCH-L1, pNf-H, MBP und Tau untersucht. In einem hypothesenfreien Ansatz wurden Serumproben von Schlaganfallpatienten massenspektrometrisch analysiert.
Material und Methoden Die Patientenrekrutierung für die vorliegende Arbeit erfolgte im Rahmen der prospektiven, multizentrischen BE FAST II-Studie zur Evaluation von GFAP als Biomarker der akuten ICH. Von Mai 2012 bis April 2014 wurden Serumproben von Patienten mit akuter Schlaganfallsymptomatik in der Klinik für Neurologie der Goethe-Universität Frankfurt am Main gesammelt. Mittels kommerziell verfügbaren ELISA-Kits wurden die Serumkonzentrationen der Proteine UCH-L1, pNf-H, MBP und Tau bestimmt. Die Analyse der GFAP-Serumkonzentration erfolgte durch Roche Diagnostics mit Hilfe des Elecsys®-Systems, einem Elektrochemiluminiszenz-Immunoassay. Für die Massenspektrometrie wurden Serumproben aus der BE FAST-I-Studie, die von Ende des Jahres 2010 bis Anfang des Jahres 2011 asserviert wurden, eingesetzt. Die massenspektrometrischen Untersuchungen wurden in der Abteilung „Funktionelle Proteomics“ im Fachbereich Medizin der Goethe-Universität Frankfurt am Main durchgeführt.
Ergebnisse Tau und MBP ließen sich in den meisten Serumproben nicht nachweisen. In der pNf-H-Messung lag die Konzentration bei 27 von 35 Patienten oberhalb der Nachweisgrenze, wobei sich kein signifikanter Unterschied zwischen IS und ICH ergab (p = 0,69). UCH-L1 ließ sich bei 28 von 29 Patienten nachweisen. In der IS-Gruppe war eine signifikant (p = 0,005) höhere UCH-L1-Konzentration nachweisbar (Median 5,71 ng/ml) als in der ICH-Gruppe (Median 2,37 ng/ml). GFAP war bei allen 45 Patienten nachweisbar mit signifikant (p < 0,00005) höherer Konzentration in der ICH-Gruppe (Median 2,87 ng/ml) verglichen mit der IS-Gruppe (Median 0,01 ng/ml). Zudem fand sich eine positive Korrelation der UCH-L1-Werte in der IS-Gruppe mit dem Patientenalter (r = 0,62, p = 0,01), sowie eine positive Korrelation der GFAP-Werte in der ICH-Gruppe mit dem Patientenalter (r = 0,54, p = 0,03), dem NIHSS-Wert (r = 0,69, p = 0,04) und mit dem ICB-Volumen (r = 0,60, p = 0,01). In der massenspektrometrischen Analyse ließ sich eine Top Liste aus 22 Proteinen erstellen, die jeweils signifikante Unterschiede zwischen IS und ICH aufweisen.
Diskussion Die Rolle des Ubiquitin-Proteasom-System (UPS) und insbesondere von UCH-L1 beim IS ist bislang noch nicht abschließend geklärt. Nach einer zerebralen Ischämie ist jedoch eine Upregulation von UCH-L1 beschrieben, u.a. durch eine verstärkte UPS-Aktivität durch Aggregate fehlgefalteter Proteine. Daneben reagieren Neurone sensibler auf eine Hypoxie als Gliazellen mit einer dominierenden Freisetzung neuronaler Proteine wie UCH-L1. Bei ICH kommt es dagegen eher zu einer unspezifischen Destruktion des Hirngewebes mit vorwiegender glialer Schädigung und rascher Freisetzung glialer Proteine wie GFAP. Mit UCH-L1 und GFAP konnten zwei Proteine als erfolgsversprechende Kandidaten zur Differenzierung zwischen IS und ICH in der Frühphase identifiziert werden. Zur weiteren Validierung sind Untersuchungen an einer großen Population notwendig, die auch kleinere Infarkte und Hirnblutungen einschließt. Auch der Einfluss epidemiologischer und klinischer Faktoren wie z.B. dem Patientenalter muss weiter evaluiert werden.
Die mittels Massenspektrometrie erstellte Top Liste aus 22 Proteinen enthält vielversprechende Biomarker-Kandidaten, die signifikante Unterschiede zwischen IS und ICH aufweisen und ebenso an einem großen Patientenkollektiv weiter untersucht werden müssen.
Die Objekterkennung spielt für die menschliche Wahrnehmung eine zentrale Rolle. Hierzu nutzen wir das visuelle System in ähnlichem Maße wie den Tastsinn zur Exploration unserer Umwelt. In Kombination beider Sinne gelingt es uns unser Umfeld adäquat wahrzunehmen. Um postulierte Interaktionen zwischen visuellem und haptischem System aufzudecken und näher zu untersuchen, bedienten wir uns der Methode der funktionellen Magnetresonanztomographie.
Vorangehende funktionell bildgebende Studien über visuo-haptische zerebrale Informationsverarbeitung beschrieben den lateralen okzipi-talen taktil-visuellen Kortex (LOtv) und den intraparietalen Sulcus (IPS) als Hauptkandidaten für visuo-haptische Integration (Amedi et al., 2005; Sathian, 2005). Die meisten Studien betrachteten jedoch alleinig Schnittmengen aus Ergebnissen nach unimodaler Aktivierung. Um nun strengere statistische Kriterien für das Auffinden visuo-haptischer Integrationsareale zu testen (Beauchamp, 2005; Laurienti et al., 2005), suchten wir nach Regionen, welche durch direkte bimodale Stimulation stärker aktiviert werden, als nach Darbietung unimodaler Reize. Ziel dieser Arbeit war es, in Anlehnung an vorbestehende Literatur unter Zuhilfenahme strengerer statistischer Kriterien und mittels abstrakten Stimulations-Materials nach Integrationseffekten infolge simultaner visuo-haptischer Stimulation im menschlichen Gehirn zu suchen. Neurophysiologische Grundlage dieses Vorhabens ist dabei die Annahme, dass neuronale Gruppen spezifische Funktionen erfüllen und deren Aktivität über das sogenannte „Blood Oxygen Level Dependend-Signal“ (BOLD-Signal) mittels fMRT sichtbar gemacht werden kann.
Sechzehn gesunde Probanden partizipierten an der vorliegenden Studie. Während des Experiments kamen Schwarz-weiß-Fotografien und haptisch zu explorierende Figuren wahlweise von Tieren oder abstrakten Objekten zum Einsatz. Diese wurden dem jeweiligen Probanden teils als Einzelreiz (rein visuell/rein haptisch), teils simultan als visuo-haptische Reize während des fMRT-Messvorgangs dargeboten. Diese visuo-haptische Objektdarbietung führte zu einer signifikanten Aktivierung verschiedener kortikaler Gehirnregionen. Im Rahmen unseres Experiments konnten hauptsächlich drei bilaterale Regionen identifiziert werden, welche einen visuo-haptischen Integrationseffekt für das verwendete Stimulusmaterial zeigten: LOtv, IPS und das anteriore Cerebellum. Interessanterweise zeigte das rechtslaterale Cerebellum den robustesten visuo-haptischen Effekt, der weder vom Stimulusmaterial (Tiere/Fribbles), noch von der Kongruenz der dargebotenen Reize abzuhängen schien.
Aufgrund der Beobachtung, dass selbst isolierte motorische Beanspruchung Aktivationssignale im Gehirn auslösen kann, wurde ein zweites Studienprotokoll zum Ausschluss motorischer Aktivität als alleinige Komponente der Signalantwort entwickelt und eine zusätzliche rein motorische Kontrollbedingung eingeführt. Im Folgenden ließen sich die im Hauptexperiment identifizierten Regionen auch unter dieser zusätzlichen Bedingung abbilden. Mit unserem Studiendesign gelang es, die in der Literatur als multisensorisch vorbeschriebenen Regionen erneut nachzuweisen. Zusätzlich deuten unsere Ergebnisse darauf hin, dass es cerebelläre bimodal integrierende Areale gibt, welche auch in Abwesenheit zusätzlicher Aufgabenstellungen eine wichtige Rolle in visuo-haptischen Verarbeitungsprozessen spielen. Es bleibt jedoch abzuwarten, ob diese Regionen zukünftig endgültig als multisensorisch einzustufen sind.
Selbstverletzendes Verhalten – die selbst herbeigeführte Verletzung des eigenen
Körpers – wird bisher in diagnostischen Manualen nicht als eigenständiges
Krankheitsbild geführt, sondern lediglich als Symptom verschiedener psychischer
Krankheitsbilder, wie Essstörungen, Abhängigkeitsstörungen, Zwangsstörungen und
vor allem als ein Kriterium der Borderline Persönlichkeitsstörung, erwähnt. Aufgrund
dessen beschäftigte sich die vorliegende Arbeit ausschließlich mit dem
Symptomkomplex Selbstverletzendes Verhalten und suchte erstmalig nach einem
gemeinsamen Korrelat des Phänomens auf neuronaler Ebene. Im Kontext der
vorliegenden Untersuchung wurden zehn Patienten mit Selbstverletzendem Verhalten
ausgewählt und zunächst gebeten unter Zuhilfenahme der Selbstbeurteilungs-
Fragebögen DSHI und SHBQ ihre Selbstverletzung und mögliche suizidale Handlungen
zu charakterisieren. In einem Interview wurden die Patienten zu ihrer psychischen
Krankengeschichte befragt, der HADS-D diente der Erfassung von Komorbiditäten.
Anschließend erfolgte eine Messung der zehn Selbstverletzer sowie zehn gesunder
Kontrollprobanden mittels funktioneller Magnetresonanztomographie während einer
visuellen Präsentation von symptomspezifischen Stimuli. Im Rahmen eines Blockdesigns
wurden Bilder mit selbstverletzenden und suizidalen Szenen randomisiert
dargeboten. Die emotionale Bedeutsamkeit und Valenz der gezeigten Bilder wurden
anschließend mithilfe eines Post-fMRT-Befragungsbogens eruiert.
Die Auswahl der Patienten nach dem Selbstverletzenden Verhalten und nicht nach der
Diagnose war ebenso wie das Design mit selbstverletzenden und suizidalen Stimuli
einzigartig. Die Ergebnisse dieser innovativen Studie offenbarten bei den Patienten
beim Betrachten der selbstverletzenden Szenen eine gesteigerte Aktivität eines weit
gefächertes Netzwerkes von Gehirnarealen, die eine essenzielle Rolle in der
Verarbeitung von Emotionen spielen. Dazu zählen vor allem limbische Strukturen wie
Amygdala und Hippocampus, aber auch frontale Areale, im Besonderen der
präfrontale Cortex. Diese Strukturen sind vergleichbar mit denen, die bei einer
Borderline Persönlichkeitsstörung neuronal verändert sind. Die Präsentation der
suizidalen Bilder rief ebenfalls eine Mehraktivierung der genannten Regionen hervor,
allerdings in einem geringeren Ausmaß.
Im Zusammenhang mit den selbstverletzenden Szenen ist vor allem die erstmalige
Darstellung von Arealen, die dem Belohnungssystem zuzuordnen sind und teilweise
Bestandteil dopaminerger Bahnen sind, hervorzuheben. So präsentierten sich die
Substantia nigra, Teile des Mesenzephalons und vor allem die Basalganglien verstärkt
aktiviert. Dies deutet darauf hin, dass erstmalig neuronale Strukturen abgebildet
wurden, die spezifisch für das Selbstverletzende Verhalten sind. Da die erhöhte
Aktivität der genannten Gehirnareale mit der neuronalen Momentaufnahme eines
Suchtkranken vergleichbar ist, wäre eine mögliche Einordnung der Selbstverletzung in
die bestehende Kategorie der Abhängigkeitserkrankungen naheliegend. Die
beschriebene Studie legt den Zusammenhang zwischen Selbstverletzenden Verhalten
und einer Abhängigkeitsstörung zum ersten Mal in dieser Form dar, so dass
weitergehende Untersuchungen in diese Richtung notwendig sind. Jedoch wird mittels
der Resultate der funktionellen Magnetresonanztomographie ein besseres Verständnis
des komplexen Charakters der Erkrankung ermöglicht und Veränderungen in der
Behandlung und dem individuellen Umgang mit dem Selbstverletzer müssen in
Betracht gezogen werden. Weiterhin verdeutlichen die Studienresultate, dass die
Etablierung der Erkrankung als eigenständiger Symptomkomplex in gängige Diagnostikund
Behandlungsmanuale in Zukunft unumgänglich sein wird.
Das visuelle Arbeitsgedächtnis (AG) kann visuelle Information enkodieren, über eine kurze Zeitperiode aktiv halten und mit neu wahrgenommener Information vergleichen. Dadurch ermöglicht es eine Reihe höherer kognitiver Funktionen ( z.B. Kopfrechnen). Störungen des visuellen AGs sind ein relevantes Symptom neurologischer und psychiatrischer Erkrankungen. Die funktionellen und neuronalen Prozesse, die dem visuellen AG unterliegen, stellen eine fundamentale Frage der kognitiven Neurowissenschaft dar. Bisherige Forschung hat bereits einen großen Beitrag zum Verständnis der Vorgänge während der Enkodierungs- und Halte-Phase des AGs geleistet. Die neuronalen Korrelate der Wiedererkennung (WE) hingegen sind relativ unbekannt. Ziel der vorliegenden Studie war es, die neuronalen Mechanismen der WE anhand zweier Modulationen (Gedächtnisbelastung und Ähnlichkeit zwischen Merk- und Test-Stimulus) zu erforschen. Den neuronalen Grundlagen von Ähnlichkeit zwischen wurde bislang nahezu keine Beachtung geschenkt, ihre Untersuchung stellte deshalb eine wesentliche Motivation der Arbeit dar. Da erhöhte Gedächtnislast bei einer endlichen Anzahl an Stimuli zu einer erhöhten Anzahl an möglichen ähnlichen Test-Stimuli und auf diese Weise zu einer erhöhten Ähnlichkeit zwischen Merk- und Test-Stimulus führen kann, sind die Effekte beider Modulationen konfundiert. Es sollte deshalb zusätzlich der Nachweis für einen ähnlichkeitsunabhängigen Lasteffekt erbracht werden. Im Rahmen der vorliegenden Dissertation stand der zeitliche Ablauf der zu erwartenden kortikalen Aktivationen im Mittelpunkt des Interesses. Aus diesem Grund kam die Magnetenzephalographie (MEG) mit ihrem hervorragenden zeitlichen und guten räumlichen Auflösungsvermögen zum Einsatz. Die neuronale Aktivität von 17 Probanden wurde mittels MEG erfasst. Zusätzlich wurden Verhaltensdaten (VD) in Form von Reaktionszeit (RZ) und Korrektheit (KH) der Antworten aufgezeichnet. Als Stimuli dienten 15 verschiedene Farben, die einmal den gesamten Farbkreis abbildeten. 1 oder 3 verschiedenfarbige Quadrate dienten als Merk-Stimuli und ein farbiges Quadrat, das einem der vorher gezeigten glich (G), ihm ähnlich (Ä) oder unähnlich (U) war, folgte als Test-Stimulus. Die Probanden antworteten per Fingerheben aus einer Lichtschranke, ob der Test-Stimulus dem Merk-Stimulus glich (G) oder nicht glich (Ä, U). Insgesamt führten die 2 Belastungsmodulationen und die 3 Ähnlichkeitsmodulationen zu einem 2 x 3 Design, das eine Untersuchung der Haupteffekte und Interaktionen von Ähnlichkeit und Last ermöglichte. Die Ergebnisse der VD decken sich mit früheren Erkenntnissen, die mit ansteigender Gedächtnislast und Ähnlichkeit von einer signifikanten Verminderung der KH der Antworten sowie einer signifikanten Zunahme der RZ berichteten. Zusätzlich konnte eine signifikante Interaktion beider Modulationen beobachtet werden. Mit zunehmender Gedächtnislast verlängerte sich die RZ, bzw. verminderte sich die KH der Antworten für gleiche Testreize stärker als für ungleiche (Ä, U). Es konnten wesentliche neue Erkenntnisse über die neuronalen Korrelate der WE im visuellen AG gewonnen werden. Für die Ähnlichkeits-Modulation konnten drei zeitlich, räumlich und funktionell distinkte Ereigniskorrelierte-Felder (EKF)-Komponenten detektiert werden: eine frühe Komponente, die stärker auf U im Vergleich zu Ä und G Stimuli ansprach, eine mittlere, die mit der Schwierigkeit der Aufgabe assoziiert war sowie eine späte Komponente, die als Korrelat einer kategorialen Entscheidung interpretiert wurde. Diese Ergebnisse replizieren Befunde von Studien über die Entscheidungsfindung und die summierte Ähnlichkeit im Langzeitgedächtnis (LZG) und liefern gleichzeitig neue Hinweise für eine funktionelle Dissoziation verschiedener Komponenten der WE im visuellen AG. Die WE scheint aus der Berechnung der summierten Ähnlichkeit, der Entscheidungsfindung sowie der Evidenzevaluation unter schwierigeren Bedingungen zu bestehen. Es gelang außerdem der Nachweis eines ähnlichkeitsunabhängigen Effektes der Lastmodulation. Es konnte eine bilateral parieto-okzipitale sowie eine linksseitig fronto-temporale Aktivierung erfasst werden, die wahrscheinlich allgemeinen Schwierigkeitseffekten entsprechen. Unter ansteigender Gedächtnisbelastung kam es zu einer Zunahme der Amplitude beider Aktivitäten. Diese Ergebnisse bestätigen Befunde über die Amplitudenentwicklung während der Halte-Phase, die als Heranziehung zusätzlicher Ressourcen unter schwierigeren Bedingungen gedeutet wurden. Die EKF-Daten konnten jedoch keine Bestätigung des in den VD nachgewiesenen Interaktionseffektes bringen. Vielversprechende Ansätze für zukünftige Studien bieten eine präzisere Bestimmung der räumlichen Verteilung sowie eine weitere Evaluation der kognitiven Funktion der neuronalen Aktivität der Ähnlichkeit, da die Ähnlichkeit zwischen Merk- und Test-Stimulus eine entscheidende Rolle bei der Beschränkung der WE-Leistung einzunehmen scheint.
The physiology of our most complex organ, the brain, is still not comprehensively understood. The brain basically serves the processing, storing and binding of external and internal information, and thereby generates amazing phenomena like the understanding of oneself as an individual entitiy. How exactly information is encoded and represented, how individual neurons or networks of neurons actually interact, is a gigantic puzzle, whose pieces were collected since many decades. Subject of scientific discussions are the basic spatiotemporal structures of neuronal representations. Suggestions and observations reach hereby from simple rate coding of individual neurons to synchronous activity of larger ensembles. To approach answers to these questions, our working group has used a combination of different recording techniques that allowed for the comparison of neuronal interactions on different spatial scales. We focused on prefrontal neuronal interactions during visual short-term memory. Herefore two rhesus monkeys had been trained to perform a visual short-term memory task. We measured and recorded their neuronal activity by means of a microelectrode matrix that could be inserted into the cortex via a closable chamber, which had been previously implanted above prefrontal cortex. The acquired signal was separated into two components: a high-frequency component, that represents the spiking output activity of few neurons in the vicinity of each electrode tip (multi-unit activity), and a low-frequency component, that results from dendritic input activity of larger neuronal assemblies (local field potential). From one of the experimental animals we also recorded mass signals of even larger neuronal populations by means of small silverball electrodes, that had been implated into the skull above prefrontal cortex (skull EEG) in the context of a pilot project. In the first subproject, we analyzed the selectivity of output signals with respect to the memorized stimulus and task performance. We compared selectivities of local recording sites (multi-unit activity) with the selectivities of patterns created by the combined activity of all recording sites, thus representing the activity of large and distributed ensembles. Local neuronal activity correlated with the course of the visual short-term memory task, but was not highly discriminative with respect to different visual stimuli. We could show that the population activity was significantly more specific. Concerning task performance, we obtained the same result, albeit less pronounced. Further analyses revealed that the patterns of distributed ensemble activity were only partly based on realtime coordination of neuronal activity, and in addition, did not remain stable across the time course of the short-term memory task. In the second subproject, we focused on the oscillatory behavior of the local field potential. After a time-frequency analysis, we studied different frequency bands concerning stimulus selectivity and task performance of the monkey. We hereby found significant modulations of oscillations in the beta- and gamma-frequency range, that correlated with different periods of the task. Especially for oscillations in beta- and low-gamma-range, we observed phase-locking of oscillations between different recording sites, which could play an important role as internal clock to coordinate spatially separate activity. Local high-gamma oscillations themselves seemed to be important for the maintenance of information. These results could be partly confirmed by mass signals of EEG. In sum, our results support the hypothesis that information is represented in the brain by means of concerted activity of spatially distributed neuronal ensembles. This activity again appears to be coordinated by oscillatory activity in beta- and low-gamma-frequency ranges. A deeper understanding of central nervous information processing could contribute to better treatment of diseases like Parkinson’s, Alzheimer’s as well as epilepsy, and neuropsychiatric disorders like schizophrenia.
Neuronal activity differs between wakefulness and sleep states. In contrast, an attractor state, called self-organized critical (SOC), was proposed to govern brain dynamics because it allows for optimal information coding. But is the human brain SOC for each vigilance state despite the variations in neuronal dynamics? We characterized neuronal avalanches – spatiotemporal waves of enhanced activity - from dense intracranial depth recordings in humans. We showed that avalanche distributions closely follow a power law – the hallmark feature of SOC - for each vigilance state. However, avalanches clearly differ with vigilance states: slow wave sleep (SWS) shows large avalanches, wakefulness intermediate, and rapid eye movement (REM) sleep small ones. Our SOC model, together with the data, suggested first that the differences are mediated by global but tiny changes in synaptic strength, and second, that the changes with vigilance states reflect small deviations from criticality to the subcritical regime, implying that the human brain does not operate at criticality proper but close to SOC. Independent of criticality, the analysis confirms that SWS shows increased correlations between cortical areas, and reveals that REM sleep shows more fragmented cortical dynamics.
Neuronal dynamics differs between wakefulness and sleep stages, so does the cognitive state. In contrast, a single attractor state, called self-organized critical (SOC), has been proposed to govern human brain dynamics for its optimal information coding and processing capabilities. Here we address two open questions: First, does the human brain always operate in this computationally optimal state, even during deep sleep? Second, previous evidence for SOC was based on activity within single brain areas, however, the interaction between brain areas may be organized differently. Here we asked whether the interaction between brain areas is SOC. ...
Communication with the hematopoietic system is a vital component of regulating brain function in health and disease. Traditionally, the major routes considered for this neuroimmune communication are by individual molecules such as cytokines carried by blood, by neural transmission, or, in more severe pathologies, by the entry of peripheral immune cells into the brain. In addition, functional mRNA from peripheral blood can be directly transferred to neurons via extracellular vesicles (EVs), but the parameters that determine their uptake are unknown. Using varied animal models that stimulate neuronal activity by peripheral inflammation, optogenetics, and selective proteasome inhibition of dopaminergic (DA) neurons, we show that the transfer of EVs from blood is triggered by neuronal activity in vivo. Importantly, this transfer occurs not only in pathological stimulation but also by neuronal activation caused by the physiological stimulus of novel object placement. This discovery suggests a continuous role of EVs under pathological conditions as well as during routine cognitive tasks in the healthy brain.
Bei 70 Patienten mit einem metastasierenden Seminom wurde die neuronspezifische Enolase (NSE) im Serum bestimmt und mit den anerkannten Tumormarkern Alpha-Fetoprotein (AFP) und humanem Choriongonadotropin (HCG) verglichen. Erhöhte NSE-Konzentrationen wurden bei 40 Patienten (58%) gemessen. Nach der durchgeführten Chemotherapie beobachteten wir einen Abfall der NSE-Aktivität in den Normbereich. Die Bestimmungen von NSE wurden mit radioimmunologischen und fluorometrischen DELFIA*-Verfahren durchgeführt.
Purpose: Bilateral vocal cord dysfunction (bVCD) is a rare but feared complication of thyroid surgery. This long term retrospective study determined the effect of intraoperative neuromonitoring (IONM) of the recurrent laryngeal nerve (RLN) during thyroid surgeries with regard to the rate of bVCD and evaluated the frequency as well as the outcome of staged operations. Methods: Retrospective analysis of prospectively documented data (2000–2019) of a tertiary referral centers’ database. IONM started in 2000 and, since 2010, discontinuation of surgery was encouraged in planned bilateral surgeries to prevent bVCD, if non-transient loss of signal (ntLOS) occurred on the first side. Datasets of the most recent 40-month-period were assessed in detail to determine the clinical outcome of unilateral ntLOS in planned bilateral thyroid procedures. Results: Of 22,573 patients, 65 had bVCD (0.288%). The rate of bVCD decreased from 0.44 prior to 2010 to 0.09% after 2010 (p < 0.001, Chi2). Case reviews of the most recent 40 months period identified ntLOS in 113/3115 patients (3.6%, 2.2% NAR), of which 40 ntLOS were recorded during a planned bilateral procedure (n = 952, 2.1% NAR). Of 21 ntLOS occurring on the first side of the bilateral procedure, 15 procedures were stopped, subtotal contralateral resections were performed, and thyroidectomy was continued in 3 patients respectively, with the use of continuous vagal IONM. Eighteen cases of VCD were documented postop, and all but one patient had a full recovery. Seven patients had staged resections after 1 to 18 months (median 4) after the first procedure. Conclusion: IONM facilitates reduced postoperative bVCD rates. IONM is, therefore, recommendable in planned bilateral procedures. The rate of non-complete bilateral surgery after intraoperative non-transient LOS was 2%.
Background and purpose: During acute coronavirus disease 2019 (COVID-19) infection, neurological signs, symptoms and complications occur. We aimed to assess their clinical relevance by evaluating real-world data from a multinational registry. Methods: We analyzed COVID-19 patients from 127 centers, diagnosed between January 2020 and February 2021, and registered in the European multinational LEOSS (Lean European Open Survey on SARS-Infected Patients) registry. The effects of prior neurological diseases and the effect of neurological symptoms on outcome were studied using multivariate logistic regression. Results: A total of 6537 COVID-19 patients (97.7% PCR-confirmed) were analyzed, of whom 92.1% were hospitalized and 14.7% died. Commonly, excessive tiredness (28.0%), headache (18.5%), nausea/emesis (16.6%), muscular weakness (17.0%), impaired sense of smell (9.0%) and taste (12.8%), and delirium (6.7%) were reported. In patients with a complicated or critical disease course (53%) the most frequent neurological complications were ischemic stroke (1.0%) and intracerebral bleeding (ICB; 2.2%). ICB peaked in the critical disease phase (5%) and was associated with the administration of anticoagulation and extracorporeal membrane oxygenation (ECMO). Excessive tiredness (odds ratio [OR] 1.42, 95% confidence interval [CI] 1.20–1.68) and prior neurodegenerative diseases (OR 1.32, 95% CI 1.07–1.63) were associated with an increased risk of an unfavorable outcome. Prior cerebrovascular and neuroimmunological diseases were not associated with an unfavorable short-term outcome of COVID-19. Conclusion: Our data on mostly hospitalized COVID-19 patients show that excessive tiredness or prior neurodegenerative disease at first presentation increase the risk of an unfavorable short-term outcome. ICB in critical COVID-19 was associated with therapeutic interventions, such as anticoagulation and ECMO, and thus may be an indirect complication of a life-threatening systemic viral infection.
Neuroligin-3 (Nlgn3), a neuronal adhesion protein implicated in autism spectrum disorder (ASD), is expressed at excitatory and inhibitory postsynapses and hence may regulate neuronal excitation/inhibition balance. To test this hypothesis, we recorded field excitatory postsynaptic potentials (fEPSPs) in the dentate gyrus of Nlgn3 knockout (KO) and wild-type mice. Synaptic transmission evoked by perforant path stimulation was reduced in KO mice, but coupling of the fEPSP to the population spike was increased, suggesting a compensatory change in granule cell excitability. These findings closely resemble those in neuroligin-1 (Nlgn1) KO mice and could be partially explained by the reduction in Nlgn1 levels we observed in hippocampal synaptosomes from Nlgn3 KO mice. However, unlike Nlgn1, Nlgn3 is not necessary for long-term potentiation. We conclude that while Nlgn1 and Nlgn3 have distinct functions, both are required for intact synaptic transmission in the mouse dentate gyrus. Our results indicate that interactions between neuroligins may play an important role in regulating synaptic transmission and that ASD-related neuroligin mutations may also affect the synaptic availability of other neuroligins.
Der Begriff Hirndoping beschreibt die Einnahme von Medikamenten mit dem Ziel der geistigen Leistungssteigerung. Diese Medikamente sind verschreibungspflichtig und bei den Konsumenten medizinisch nicht indiziert, werden also zweckentfremdet. Mittlerweile ist aus dem Thema Hirndoping ein Thema geworden, welches öffentlich diskutiert wird. Zeitung, Presse und sogar die Film- und Fernsehindustrie beschäftigen sich mit diesem Thema. So nimmt unter anderem die gestresste Mutter Lynette aus der US-Serie «Desperate Housewives» die Ritalin-Tablette ihres Sohnes ein, um so den anstrengenden Alltag besser meistern zu können. In dem US-Film «Ohne Limit - Die Droge für Reichtum und Macht» dreht sich alles um eine Droge, welche die Leistungsfähigkeit ins unermessliche steigern kann.
In der aktuellen Presse findet man immer öfter Schlagzeilen wie beispielsweise Folgendes: „Studenten unter Druck: Hirndoping kein Massenphänomen“.
Doch auch die Lebensmittel- und Pharmaindustrie ist beim Thema Leistungssteigerung in der Ideenfindung sehr kreativ. Manche Substanzen „verleihen einem Flügel“ (Red Bull®), andere sind lecker in Schokolade eingepackt (Pocket Coffee®) und wieder andere sollen die Menschen geistig aktiver machen (Gingium®).
Der Großteil der bisherigen Studien zum Thema Hirndoping stammt aus den Vereinigten Staaten von Amerika. Erst seit kurzer Zeit wird auch die Prävalenz von Hirndoping in Deutschland untersucht. Wie viele Schülerinnen und Schüler sowie Studentinnen und Studenten Substanzen zur geistigen Leistungssteigerung einnehmen, wurde teils schon für bestimmte Regionen und bestimmte Fachrichtungen stichprobenartig ermittelt. Bisher liegen allerdings noch keine umfangreichen Daten zur Prävalenz von Hirndoping bei Medizinstudenten vor. Daher untersuchte diese Studie die Einnahme von Leistungssteigernden Substanzen bei Medizinstudenten in Frankfurt am Main.
Introduction: Dysphagia is a common and severe symptom of traumatic brain injury (TBI) affecting up to 78% of patients. It is associated with pneumonia, increased morbidity, and mortality. Although subdural hematoma (SDH) accounts for over 50% of TBI, the occurrence of dysphagia in this subtype has not been investigated yet.
Methods: All patients with SDH admitted to the author's institution between the years 2007 and 2020 were included in the study. Patients with SDH and clinical suspicion for dysphagia received a clinical swallowing assessment by a speech and language pathologist (SLP). Furthermore, the severity of dysphagia was rated according to swallowing disorder scale. Functional outcome was evaluated by the Glasgow outcome scale (GOS).
Results: Out of 545 patients with SDH, 71 patients had dysphagia (13%). The prevalence of dysphagia was significantly lower in the surgical arm compared to the conservative arm (11.8 vs. 21.8%; OR 0.23; p = 0.02). Independent predictors for dysphagia were GCS < 13 at admission (OR 4.17; p < 0.001), cardiovascular disease (OR 2.29; p = 0.002), and pneumonia (OR 2.88; p = 0.002), whereas the operation was a protective factor (OR 0.2; p < 0.001). In a subgroup analysis, right-sided SDH was an additional predictor for dysphagia (OR 2.7; p < 0.001). Overall, patients with dysphagia improved significantly under the SLP treatment from the initial diagnosis to hospital discharge (p < 0.01). However, a subgroup of patients with the most severe grade of dysphagia showed no significant improvement. Patients with dysphagia had significantly worse outcomes (GOS 1–3) compared to those without dysphagia (48.8 vs. 26.4%; p < 0.001).
Conclusion: Dysphagia is a frequent symptom in SDH, and the early identification of dysphagia is crucial regarding the initiation of treatment and functional outcome. Surgery is effective in preventing dysphagia and should be considered in high-risked patients.
Background: Dysphagia is a common and severe symptom of traumatic brain injury (TBI) affecting up to 78% of patients. It is associated with pneumonia, increased morbidity and mortality. Although subdural hematoma (SDH) accounts for over 50% of TBI, the occurrence of dysphagia in this subtype has not been investigated. This study investigates the overall frequency, clinical predictors of dysphagia and functional outcome of patients with SDH associated dysphagia.
Methods: All patients presenting in author ́s institution between 2007 and 2020 with SDH were included in the study. Patients with SDH and clinical suspicion for dysphagia received a clinical swallowing assessment by a speech and language pathologist (SLP). Furthermore the severity of dysphagia was rated according to swallowing disorder scale.Functional outcome was evaluated by Glasgow outcome scale (GOS).
Results: Of 545 patients with SDH, 71 patients had dysphagia (13%). The prevalence of dysphagia was significantly lower in the surgical arm compared to the conservative arm (11.8% vs 21.8%; OR 0.23; p=0.02). Independent predictors for dysphagia were GCS <13 at admission (p<0.001; OR 4.17), cardiovascular disease (p=0.002; OR 2.29) and pneumonia (p=0.002; OR 2.88) whereas operation was a protective factor (p<0.001; OR 0.2). All patients with dysphagia improved significantly under SLP treatment from initial diagnosis to hospital discharge (p<0.01). However, patients with most severe grade of dysphagia showed no significant improvement during the clinical course. Patients with dysphagia had significantly worse outcome (GOS 1-3) compared to those without dysphagia (48.8% vs 26.4%; p<0.001).
Conclusion: Dysphagia is a frequent symptom in SDH and the early identification of dysphagia is crucial regarding initiation of treatment and functional outcome. Surgery is effective in preventing dysphagia and should be considered in high-risked patients.
Neurogenic/neuropathic bowel dysfunction (NBD) is common in children who are affected by congenital and acquired neurological disease, and negatively impacts quality of life. In the past, NBD received less attention than neurogenic bladder, generally being considered only in spina bifida (the most common cause of pediatric NBD). Many methods of conservative and medical management of NBD are reported, including relatively recently Transanal Irrigation (TAI). Based on the literature and personal experience, an expert group (pediatric urologists/surgeons/gastroenterologists with specific experience in NBD) focused on NBD in children and adolescents. A statement document was created using a modified Delphi method. The range of causes of pediatric NBD are discussed in this paper. The various therapeutic approaches are presented to improve clinical management. The population of children and adolescents with NBD is increasing, due both to the higher survival rate and better diagnosis. While NBD is relatively predictable in producing either constipation or fecal incontinence, or both, its various effects on each patient will depend on a wide range of underlying causes and accompanying comorbidities. For this reason, management of NBD should be tailored individually with a combined multidisciplinary therapy appropriate for the status of the affected child and caregivers.
Die vorliegende Übersicht zum Biomarker Neurofilament-Leichtketten (NFL) wird im Rahmen der Serie „Biomarker“ des Zentralblatts für Arbeitsmedizin, Arbeitsschutz und Ergonomie publiziert. Das NFL ist ein Serummarker in der Diagnostik der multiplen Sklerose. NFL eignet sich als Marker zur Therapie‑, Verlaufs- und Rezidivkontrolle von multipler Sklerose. Hier zeigt dieser eine hohe Sensitivität und Spezifität.
Ataxia telangiectasia (A-T) is a progressive and life-limiting disease associated with cerebellar ataxia due to progressive cerebellar degeneration. In addition to ataxia, which is described in detail, the presence of chorea, dystonia, oculomotor apraxia, athetosis, parkinsonism, and myoclonia are typical manifestations of the disease. The study aimed to evaluate the specificity and sensitivity of neurofilament light chain (NfL) as a biomarker of neurodegeneration in relation to SARA score. In this prospective trial, one visit of 42 A-T patients aged 1.3–25.6 years (mean 11.6 ± 7.3 years) was performed, in which NfL was determined from serum by ELISA. Additionally, a neurological examination of the patients was performed. Blood was collected from 19 healthy volunteers ≥ 12 years of age. We found significantly increased levels of NfL in patients with A-T compared to healthy controls (21.5 ± 3.6 pg/mL vs. 9.3 ± 0.49 pg/mL, p ≤ 0.01). There was a significant correlation of NfL with age, AFP, and SARA. NfL is a new potential progression biomarker in blood for neurodegeneration in A-T which increases with age.
Objectives: Gliomas are often diagnosed due to epileptic seizures as well as neurocognitive deficits. First treatment choice for patients with gliomas in speech-related areas is awake surgery, which aims at maximizing tumor resection while preserving or improving patient’s neurological status. The present study aimed at evaluating neurocognitive functioning and occurrence of epileptic seizures in patients suffering from gliomas located in language-related areas before and after awake surgery as well as during their follow up course of disease.
Materials and Methods: In this prospective study we included patients who underwent awake surgery for glioma in the inferior frontal gyrus, superior temporal gyrus, or anterior temporal lobe. Preoperatively, as well as in the short-term (median 4.1 months, IQR 2.1-6.0) and long-term (median 18.3 months, IQR 12.3-36.6) postoperative course, neurocognitive functioning, neurologic status, the occurrence of epileptic seizures and number of antiepileptic drugs were recorded.
Results: Between 09/2012 and 09/2019, a total of 27 glioma patients, aged 36.1 ± 11.8 years, were included. Tumor resection was complete in 15, subtotal in 6 and partial in 6 patients, respectively. While preoperatively impairment in at least one neurocognitive domain was found in 37.0% of patients, postoperatively, in the short-term, 36.4% of patients presented a significant deterioration in word fluency (p=0.009) and 34.8% of patients in executive functions (p=0.049). Over the long-term, scores improved to preoperative baseline levels. The number of patients with mood disturbances significantly declined from 66.7% to 34.8% after surgery (p=0.03). Regarding seizures, these were present in 18 (66.7%) patients prior to surgery. Postoperatively, 22 (81.5%) patients were treated with antiepileptic drugs with all patients presenting seizure-freedom.
Conclusions: In patients suffering from gliomas in eloquent areas, the combination of awake surgery, regular neurocognitive assessment - considering individual patients´ functional outcome and rehabilitation needs – and the individual adjustment of antiepileptic therapy results in excellent patient outcome in the long-term course.
Our ability to select relevant information from the environment is limited by the resolution of attention – i.e., the minimum size of the region that can be selected. Neural mechanisms that underlie this limit and its development are not yet understood. Functional magnetic resonance imaging (fMRI) was performed during an object tracking task in 7- and 11-year-old children, and in young adults. Object tracking activated canonical fronto-parietal attention systems and motion-sensitive area MT in children as young as 7 years. Object tracking performance improved with age, together with stronger recruitment of parietal attention areas and a shift from low-level to higher-level visual areas. Increasing the required resolution of spatial attention – which was implemented by varying the distance between target and distractors in the object tracking task – led to activation increases in fronto-insular cortex, medial frontal cortex including anterior cingulate cortex (ACC) and supplementary motor area, superior colliculi, and thalamus. This core circuitry for attentional precision was recruited by all age groups, but ACC showed an age-related activation reduction. Our results suggest that age-related improvements in selective visual attention and in the resolution of attention are characterized by an increased use of more functionally specialized brain regions during the course of development.
Men and women differ in their vulnerability to a variety of stress-related illnesses, but the underlying neurobiological mechanisms are not well understood. This is likely due to a comparative dearth of neurobiological studies that assess male and female rodents at the same time, while human neuroimaging studies often don’t model sex as a variable of interest. These sex differences are often attributed to the actions of sex hormones, i.e. estrogens, progestogens and androgens. In this review, we summarize the results on sex hormone actions in the hippocampus and seek to bridge the gap between animal models and findings in humans. However, while effects of sex hormones on the hippocampus are largely consistent in animals and humans, methodological differences challenge the comparability of animal and human studies on stress effects. We summarise our current understanding of the neurobiological mechanisms that underlie sex-related differences in behavior and discuss implications for stress-related illnesses.
Neuro-ophthalmological signs and symptoms are common in the emergency department but are a frequent source of diagnostic uncertainties. However, neuro-ophthalmological signs often allow a precise neuro-topographical localization of the clinical problem. A practical concept is presented how to perform a neuro-ophthalmological examination at the bedside and to interpret key findings under the aspect of emergency medicine with limited resources.
Neuraminidase inhibitors in influenza treatment and prevention – is it time to call it a day?
(2018)
Stockpiling neuraminidase inhibitors (NAIs) such as oseltamivir and zanamivir is part of a global effort to be prepared for an influenza pandemic. However, the contribution of NAIs for the treatment and prevention of influenza and its complications is largely debatable due to constraints in the ability to control for confounders and to explore unobserved areas of the drug effects. For this study, we used a mathematical model of influenza infection which allowed transparent analyses. The model recreated the oseltamivir effects and indicated that: (i) the efficacy was limited by design, (ii) a 99% efficacy could be achieved by using high drug doses (however, taking high doses of drug 48 h post-infection could only yield a maximum of 1.6-day reduction in the time to symptom alleviation), and (iii) contributions of oseltamivir to epidemic control could be high, but were observed only in fragile settings. In a typical influenza infection, NAIs’ efficacy is inherently not high, and even if their efficacy is improved, the effect can be negligible in practice.
Following the discovery of context-dependent synchronization of oscillatory neuronal responses in the visual system, the role of neural synchrony in cortical networks has been expanded to provide a general mechanism for the coordination of distributed neural activity patterns. In the current paper, we present an update of the status of this hypothesis through summarizing recent results from our laboratory that suggest important new insights regarding the mechanisms, function and relevance of this phenomenon. In the first part, we present recent results derived from animal experiments and mathematical simulations that provide novel explanations and mechanisms for zero and nero-zero phase lag synchronization. In the second part, we shall discuss the role of neural synchrony for expectancy during perceptual organization and its role in conscious experience. This will be followed by evidence that indicates that in addition to supporting conscious cognition, neural synchrony is abnormal in major brain disorders, such as schizophrenia and autism spectrum disorders. We conclude this paper with suggestions for further research as well as with critical issues that need to be addressed in future studies.
Introduction: Theory of mind (ToM) is important for social interactions and typical development and has been found to be impaired in patients with anorexia nervosa (AN) and bulimia nervosa (BN). Hypoactivation in frontotemporal brain regions seems to be the underlying neural mechanism in AN while whole-brain analyses in BN are lacking.
Methods: We used the well-validated social recognition task fMRI paradigm to assess ToM in a total of 72 female adolescents (16 BN, 18 AN and 38 matched healthy controls [HC]).
Results: Compared to HCBN, patients with BN showed hyperactivity during ToM-activity in the right frontal pole, middle temporal gyrus and left temporal pole and differed fundamentally from hypoactivation in these regions observed in patients with AN before and after short-term weight rehabilitation. Interaction and overlap analyses confirmed that similar regions were affected in opposite directions in both diseases. Hyperactivations in BN in the right middle temporal gyrus and right frontal pole were associated with clinical BN-severity markers binging and purging frequency.
Discussion: The hyperactivation in BN suggest different underlying neural mechanisms for ToM compared to AN. Hyperactivity might correspond to a different but also ineffective cognitive style in patients with BN when approaching social interactions. These important transdiagnostic differences are relevant for future brain-targeted therapeutic approaches.
Theory of mind (ToM), or the ability to infer and predict the intentions, thoughts and beliefs of others, involves cognitive perspective taking (cognitive ToM/cToM) and understanding emotions (affective ToM/aToM). While behavioral evidence indicates that ToM is influenced by sex and age, no study has examined the influence of these variables on the neural correlates of cToM and aToM in late childhood/adolescence. Using fMRI with 35 typically-developing youths (aged 9–18 years, 12 males), we investigated the influence of sex and age on the neural correlates of cToM and aToM. We also examined how callous-unemotional traits, indexing a lack of empathy, were related to brain responses during aToM. Across both conditions, we found convergent activity in ToM network regions, such as superior temporal sulcus/temporoparietal junction (TPJ) and precuneus across males and females, but males recruited the left TPJ significantly more than females during cToM. During aToM, age was negatively correlated with brain responses in frontal, temporal and posterior midline regions, while callous-unemotional traits were positively correlated with right anterior insula responses. These results provide the first evidence in youth that sex influences the neural correlates of cToM, while age and callous-unemotional traits are specifically related to brain responses during aToM.
Background: Body dysmorphic disorder (BDD) is characterized by an excessive preoccupation with one or more perceived flaws in one’s own appearance. Previous studies provided evidence for deficits in configural and holistic processing in BDD. Preliminary evidence suggests abnormalities at an early stage of visual processing. The present study is the first examining early neurocognitive perception of the own face in BDD by using electroencephalography (EEG). We investigated the face inversion effect, in which inverted (upside-down) faces are disproportionately poorly processed compared to upright faces. This effect reflects a disruption of configural and holistic processing, and in consequence a preponderance of featural face processing.
Methods: We recorded face-sensitive event-related potentials (ERPs) in 16 BDD patients and 16 healthy controls, all unmedicated. Participants viewed upright and inverted (upside-down) images of their own face and an unfamiliar other face, each in two facial emotional expressions (neutral vs. smiling). We calculated the early ERP components P100, N170, P200, N250, and the late positive component (LPC), and compared amplitudes among both groups.
Results: In the early P100, no face inversion effects were found in both groups. In the N170, both groups exhibited the common face inversion effects, with significantly larger N170 amplitudes for inverted than upright faces. In the P200, both groups exhibited larger inversion effects to other (relative to own) faces, with larger P200 amplitudes for other upright than inverted faces. In the N250, no significant group differences were found in face processing. In the LPC, both groups exhibited larger inversion effects to other (relative to own) faces, with larger LPC amplitudes for other inverted than upright faces. These overall patterns appeared to be comparable for both groups. Smaller inversion effects to own (relative to other) faces were observed in none of these components in BDD, relative to controls.
Conclusions: The findings suggest no evidence for abnormalities at all levels of early face processing in our observed sample of BDD patients. Further research should investigate the neural substrates underlying BDD symptomatology.
Neuronal nitric oxide synthase (NOS-I) impacts on fear/anxiety-like behavior in animals. In humans, the short (S) allele of a functional promotor polymorphism of NOS1 (NOS1 ex1f-VNTR) has been shown to be associated with higher anxiety and altered fear conditioning in healthy subjects in the amygdala and hippocampus (AMY/HIPP). Here, we explore the role of NOS1 ex1f-VNTR as a pathophysiological correlate of panic disorder and agoraphobia (PD/AG). In a sub-sample of a multicenter cognitive behavioral therapy (CBT) randomized controlled trial in patients with PD/AG (n = 48: S/S-genotype n=15, S/L-genotype n=21, L/L-genotype n=12) and healthy control subjects, HS (n = 34: S/S-genotype n=7, S/L-genotype n=17, L/L-genotype=10), a differential fear conditioning and extinction fMRI-paradigm was used to investigate how NOS1 ex1f-VNTR genotypes are associated with differential neural activation in AMY/HIPP. Prior to CBT, L/L-allele carriers showed higher activation than S/S-allele carriers in AMY/HIPP. A genotype × diagnosis interaction revealed that the S-allele in HS was associated with a pronounced deactivation in AMY/HIPP, while patients showed contrary effects. The interaction of genotype × stimulus type (CS+, conditioned stimulus associated with an aversive stimulus vs. CS-, unassociated) showed effects on differential learning in AMY/HIPP. All effects were predominately found during extinction. Genotype associated effects in patients were not altered after CBT. Low statistical power due to small sample size in each subgroup is a major limitation. However, our findings provide first preliminary evidence for dysfunctional neural fear conditioning/extinction associated with NOS1 ex1f-VNTR genotype in the context of PD/AG, shedding new light on the complex interaction between genetic risk, current psychopathology and treatment-related effects.
Disorder-relevant but task-unrelated stimuli impair cognitive performance in social anxiety disorder (SAD); however, time course and neural correlates of emotional interference are unknown. The present study investigated time course and neural basis of emotional interference in SAD using event-related functional magnetic resonance imaging (fMRI). Patients with SAD and healthy controls performed an emotional stroop task which allowed examining interference effects on the current and the succeeding trial. Reaction time data showed an emotional interference effect in the current trial, but not the succeeding trial, specifically in SAD. FMRI data showed greater activation in the left amygdala, bilateral insula, medial prefrontal cortex (mPFC), dorsal anterior cingulate cortex (ACC), and left opercular part of the inferior frontal gyrus during emotional interference of the current trial in SAD patients. Furthermore, we found a positive correlation between patients’ interference scores and activation in the mPFC, dorsal ACC and left angular/supramarginal gyrus. Taken together, results indicate a network of brain regions comprising amygdala, insula, mPFC, ACC, and areas strongly involved in language processing during the processing of task-unrelated threat in SAD. However, specifically the activation in mPFC, dorsal ACC, and left angular/supramarginal gyrus is associated with the strength of the interference effect, suggesting a cognitive network model of attentional bias in SAD. This probably comprises exceeded allocation of attentional resources to disorder-related information of the presented stimuli and increased self-referential and semantic processing of threat words in SAD.
Background: Autobiographical memory (AM) changes are the hallmark of Alzheimer's disease (AD) and mild cognitive impairment (MCI). In recent neuroimaging studies, AM changes have been associated with numerous cerebral sites, such as the frontal cortices, the mesial temporal lobe, or the posterior cingulum. Regional glucose uptake in these sites was investigated for underlying subdimensions using factor analysis. Subsequently, the factors were examined with respect to AM performance in a subgroup of patients.
Methods: Data from 109 memory clinic referrals, who presented with MCI (n = 60), mild AD (n = 49), or were cognitively intact, were analyzed. The glucose metabolic rates determined by positron emission tomography (PET) with 18F-fluorodeoxyglucose (FDG) in 34 cerebral sites important for AM were investigated for underlying subdimensions by calculating factor analysis with varimax rotation. Subsequently, the respective factor scores were correlated with the episodic and semantic AM performance of 22 patients, which was measured with a semi-structured interview assessing episodic memories (characterized by event-related emotional, sensory, contextual, and spatial–temporal details) and personal semantic knowledge from three periods of life (primary school, early adulthood, and recent years).
Results: Factor analysis identified seven factors explaining 69% of the variance. While patients with MCI and AD showed lower values than controls on the factors frontal cortex, mesial temporal substructures, and occipital cortex, patients with MCI presented with increased values on the factors posterior cingulum and left temporo-prefrontal areas. The factors anterior cingulum and right temporal cortex showed only minor, non-significant group differences. Solely, the factor mesial temporal substructures was significantly correlated with both episodic memories (r = 0.424, p < 0.05) and personal semantic knowledge (r = 0.547, p < 0.01) in patients with MCI/AD.
Conclusions: The factor structure identified corresponds by large to the morphological and functional interrelations of the respective sites. While reduced glucose uptake on the factors frontal cortex, mesial temporal substructures, and occipital cortex in the patient group may correspond to neurodegenerative changes, increased values on the factors posterior cingulum and left temporo-prefrontal areas in MCI may result from compensatory efforts. Interestingly, changes of the mesial temporal substructures were correlated with both semantic and episodic AM. Our findings suggest that AM deficits do not only reflect neurodegenerative changes but also refer to compensatory mechanisms as they involve both quantitative losses of specific memories and qualitative changes with a semantization of memories.
The pathophysiological role of neural autoantibodies in acute psychotic disorders is receiving increased attention. However, there is still an ongoing debate, whether predominantly psychotic manifestations of autoimmune encephalitides exist that may remain undetected and, thus, untreated. Furthermore, it is discussed if such conditions can be diagnosed based on serum antibody results or if a reliable diagnosis requires additional cerebrospinal fluids (CSF) results. In this study, we screened pairs of serum and CSF samples from antipsychotic-naïve individuals with first-episode schizophrenic psychosis (FEP, n = 103), clinical high risk for psychosis (CHR, n = 47), and healthy volunteers (HV, n = 40) for eight different antibodies against various antigens that have been shown to be associated with autoimmune encephalitides: N-methyl-D-aspartate receptor (NMDAR, NR1 subunits only), glutamic acid decarboxylase (GAD65), leucine-rich glioma inactivated protein 1 (LGI1), contactin-associated protein-like 2 protein (CASPR2), α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptor (AMPAR) subunit 1, AMPAR subunit 2, γ-aminobutyric acid-B receptors (GABABR), and glycine receptors. All patients were within the norm with regards to a careful neurological examination, a magnetic resonance imaging (MRI) of the brain, an electroencephalogram (EEG), and routine blood pathology. All CSF samples were autoantibody-negative. In three serum samples of individuals with FEP, we detected low-titer CASPR2 immunoglobulin (Ig) G antibodies (≤1:160, n = 2) and non-IgG antibodies against NMDAR (n = 1) (overall serum-autoantibody prevalence in FEP: 2.91%). However, the IgG titers were below the laboratory cut-off defined for positivity, and non-IgG antibodies are of no clinical relevance. This suggests that there were no cases of autoimmune encephalitis in our cohort. Our results highlight the importance and the high specificity of CSF analysis to reliably detect autoantibodies. They confirm the hypothesis that pure psychotic manifestations of antibody-associated autoimmune encephalitides without any additional neuropsychiatric findings are very rare. However, special attention must be paid to those presenting with atypical mental illnesses with additional neurological symptoms, evidence of clinically-significant cognitive involvement, profound sleep-wake perturbations, seizures, electroencephalographic, or magnetic resonance imaging pathologies to be able to identify cases with autoimmune-mediated psychiatric syndromes.
Im Rahmen des Vortrags wird zunächst ein Überblick über die aktuell angewandten Linsensysteme in der (refraktiven) Kataraktchirurgie sowie im Rahmen des RLA gesprochen. Hierzu zählen die monofokalen sphärischen Standardlinsen, aber auch asphärische, torische und multifokale Implantate.
Speziell wird auf die Ergebnisse einer Studie zu einem neuen multifokalen-torischen Implantat eingegangen. Der Schwerpunkt des Vortrages liegt dann weiterhin auf den trifokalen Korrektionsmöglichkeiten. Zum einen wird die sog. binokulare Trifokalität, bei der zwei multifokale Intraokularlinsen unterschiedlicher Addition implantiert werden, besprochen. Durch die Anpassung jeweils eines Auges an den Intermediär- bzw. Nahbereich soll so bei verringerten optischen Phänomenen ein deutliches Sehen in drei Hauptdistanzen ermöglicht werden. Weiterhin befasst sich der Vortrag aber auch mit den neuen echten trifokalen Optiksystemen, welche ebenfalls deutliches Sehen in verschiedenen Entfernungen gewährleisten können.
Im dritten Teil des Vortrages werden aktuelle Langzeitergebnisse aus einer FDA Studie zur Evaluation einer kammerwinkelgestützten phaken Intraokularlinse, mit speziellem Augenmerk auf den cornealen Endothelzellverlust, sowie eine neuartige sulcusgestütze phake Intraokularlinse mit zentralem Loch zur Glaukomvermeidung vorgestellt.
Hintergrund: Eine adäquate Anpassung der Glukokortikoidsubstitution an unterschiedliche Situationen ist essenziell für Leistungsfähigkeit und Lebensqualität von Patienten mit Nebennierenrindeninsuffizienz (NNRI). Sie dient darüber hinaus der Vermeidung lebensbedrohlicher adrenaler Krisen.
Ziel der Arbeit: Verbesserung der Versorgung von Patienten mit Nebennierenrindeninsuffizienz.
Material und Methoden: Selektive Literaturrecherche unter besonderer Berücksichtigung neuerer Studien.
Ergebnisse: Eine optimale Glukokortikoidsubstitution hat das Ziel, die physiologischen Kortisolschwankungen möglichst genau nachzuahmen. Hier haben in den letzten Jahren Präparate mit veränderter Pharmakokinetik das Therapiespektrum erweitert. Im Vordergrund stehen eine adäquate Anpassung der Substitution in Stresssituationen sowie die Vermeidung und adäquate Behandlung adrenaler Krisen, die mit einer Inzidenz von 4,8 bis 8,3 Krisen pro 100 Patientenjahre auftreten und mit einer Mortalität von etwa 0,5 pro 100 Patientenjahre weiterhin eine tödliche Bedrohung darstellen.
Schlussfolgerung: Zur Verhinderung lebensbedrohlicher Nebennierenkrisen ist eine Schulung von Patienten, Angehörigen und insbesondere auch medizinischem Personal notwendig.
Hintergrund: Bisher gibt es nur wenige Daten bezüglich des Neuauftretens von Vorhofflimmern nach dem Verschluss des persistierenden Foramen ovale (PFO). Methodik: In der Zeit von 1994 bis Januar 2007 wurde bei 1349 Patienten, im Alter von 17 bis 85 Jahren (mittleres Alter 50 Jahre), ein PFO kathetertechnisch verschlossen. Vor der Intervention erlitten 696 einen ischämischen Schlaganfall, 610 eine transitorisch Ischämische Attacke (TIA), 22 eine periphere Embolie, 8 Migräneattacken und 13 Patienten eine Dekompressionskrankheit. Es wurden 535 Amplatzer-, 379 Helex-, 270 STARFlex-, 131 Premere-, 9 SIDERIS-, 9 ASDOS-, 7 CardioSEAL-, 5 AngelWings- und 4 PFO-Star-Okkluder implantiert. Die Nachuntersuchungen beinhalteten ein EKG nach einem, drei und sechs Monaten. Jedes Jahr wurde ein EKG wiederholt und Fragebögen an die Patienten verschickt. Ergebnisse: Die Nachbeobachtungszeit betrug im Mittel 38,1 ± 28 Monate. 1324 von 1334 (99.3%) nahmen an der 6-Monats-Nachuntersuchung, 1198 von 1220 (98.2%) an der 1-Jahres-Nachuntersuchung -, 747 von 778 (96%) an der 3-, 374 von 393 (95.2%) an der 5- und 21 von 21 (100%) an der 10-Jahres-Nachuntersuchung teil. Vorhofflimmern trat bei 50 Patienten, kombiniert mit Vorhofflattern bei zwei weiteren, nur Vorhofflattern bei einem Patient auf (insgesamt 53 von 1349, 3,9%). Bei 33 Patienten wurde das Vorhofflimmern innerhalb der ersten vier Wochen diagnostiziert, bei 8 Patienten innerhalb sechs Monaten, bei 12 Patienten noch später. 23 Patienten entwickelten paroxysmales, 4 von ihnen rezidivierend, 28 persistierendes und 2 permanentes Vorhofflimmern. Die Inzidenz beim Amplatzer-Okkluder betrug 3% (16/535), 1,8% (7/379) beim Helex-, 10% (27/270) beim STARFlex-, 1,5% (2/131) beim Premere-, 11% (1/9) beim SIDERIS-, 0/9 beim ASDOS-, 0/7 beim CardioSEAL-, 0/5 beim AngelWings- und 0/4 beim PFO-Star-Okkluder. Der Unterschied zwischen dem STARFlex- versus Premere- (+), Amplatzer- (+) und Helex- (+) Okkluder war statistisch signifikant (jedes p<0,05). Bei 13 Patienten wurde Vorhofflimmern während einer Routinenachuntersuchung entdeckt, die anderen 40 Patienten waren symptomatisch. Bei 22 Patienten wurde der Sinusrhythmus mittels medikamentöser Konversion erreicht, bei 7 Patienten mittels elektrischer Kardioversion. 20 Patienten erhielten eine medikamentöse Prophylaxe, 22 zusätzlich Marcumar. 1 Patient erlitt eine TIA, 2 Patienten einen Schlaganfall (1 während einer Episode von Vorhofflimmern). Das Alter war ein positiver Prädiktor für Vorhofflimmern (p=0,0009). Bei 3 Patienten wurde ein Thrombus auf dem Okkluder diagnostiziert. Bei 1 von 3 Patienten wurde Vorhofflimmern eine Woche vor Diagnosestellung des Thrombus entdeckt, bei 2 von 3 Patienten wurde Vorhofflimmern und Thrombus zeitgleich diagnostiziert. Patienten mit Vorhofflimmern (3/53) haben eine signifikant höhere Inzidenz (p=0,02) Thromben zu entwickeln, verglichen mit Patienten ohne Vorhofflimmern (13/1296). Schlussfolgerung: Permanentes oder symptomatisches Vorhofflimmern ist eine seltene Komplikation nach PFO-Verschluss. Es trat häufiger beim STARFlex-Okkluder auf. Für gewöhnlich war es vorübergehend, es kann jedoch zur Thrombusbildung auf dem Okkluder führen. Eine frühzeitige Diagnostik und Behandlung sind wichtig.
The multifunctional molecule netrin-1 is upregulated in various malignancies and has recently been presented as a major general player in tumorigenesis leading to tumor progression and maintenance in various animal models. However, there is still a lack of clinico-epidemiological data related to netrin-1 expression. Therefore, the aim of our study was to elucidate the association of netrin-1 expression and patient survival in brain metastases since those constitute one of the most limiting factors for patient prognosis. We investigated 104 brain metastases cases for netrin-1 expression using in-situ hybridization and immunohistochemistry with regard to clinical parameters such as patient survival and MRI data. Our data show that netrin-1 is strongly upregulated in most cancer subtypes. Univariate analyses revealed netrin-1 expression as a significant factor associated with poor patient survival in the total cohort of brain metastasis patients and in sub-entities such as non-small cell lung carcinomas. Interestingly, many cancer samples showed a strong nuclear netrin-1 signal which was recently linked to a truncated netrin-1 variant that enhances tumor growth. Nuclear netrin-1 expression was associated with poor patient survival in univariate as well as in multivariate analyses. Our data indicate both total and nuclear netrin-1 expression as prognostic factors in brain metastases patients in contrast to other prognostic markers in oncology such as patient age, number of brain metastases or Ki67 proliferation index. Therefore, nuclear netrin-1 expression constitutes one of the first reported molecular biomarkers for patient survival in brain metastases. Furthermore, netrin-1 may constitute a promising target for future anti-cancer treatment approaches in brain metastases.
Nephronectin regulates atrioventricular canal differentiation via Bmp4-Has2 signaling in zebrafish
(2011)
The extracellular matrix is crucial for organogenesis. It is a complex and dynamic component that regulates cell behavior by modulating the activity, bioavailability and presentation of growth factors to cell surface receptors. Here, we determined the role of the extracellular matrix protein Nephronectin (Npnt) in heart development using the zebrafish model system. The vertebrate heart is formed as a linear tube in which myocardium and endocardium are separated by a layer of extracellular matrix termed the cardiac jelly. During heart development, the cardiac jelly swells at the atrioventricular (AV) canal, which precedes valve formation. Here, we show that Npnt expression correlates with this process. Morpholino-mediated knockdown of Npnt prevents proper valve leaflet formation and trabeculation and results in greater than 85% lethality at 7 days post-fertilization. The earliest observed phenotype is an extended tube-like structure at the AV boundary. In addition, the expression of myocardial genes involved in cardiac valve formation (cspg2, fibulin 1, tbx2b, bmp4) is expanded and endocardial cells along the extended tube-like structure exhibit characteristics of AV cells (has2, notch1b and Alcam expression, cuboidal cell shape). Inhibition of has2 in npnt morphants rescues the endocardial, but not the myocardial, expansion. By contrast, reduction of BMP signaling in npnt morphants reduces the ectopic expression of myocardial and endocardial AV markers. Taken together, our results identify Npnt as a novel upstream regulator of Bmp4-Has2 signaling that plays a crucial role in AV canal differentiation.
There are special challenges in implementing parenteral nutrition (PN) in paediatric patients, which arises from the wide range of patients, ranging from extremely premature infants up to teenagers weighing up to and over 100 kg, and their varying substrate requirements. Age and maturity-related changes of the metabolism and fluid and nutrient requirements must be taken into consideration along with the clinical situation during which PN is applied. The indication, the procedure as well as the intake of fluid and substrates are very different to that known in PN-practice in adult patients, e.g. the fluid, nutrient and energy needs of premature infants and newborns per kg body weight are markedly higher than of older paediatric and adult patients. Premature infants <35 weeks of pregnancy and most sick term infants usually require full or partial PN. In neonates the actual amount of PN administered must be calculated (not estimated). Enteral nutrition should be gradually introduced and should replace PN as quickly as possible in order to minimise any side-effects from exposure to PN. Inadequate substrate intake in early infancy can cause long-term detrimental effects in terms of metabolic programming of the risk of illness in later life. If energy and nutrient demands in children and adolescents cannot be met through enteral nutrition, partial or total PN should be considered within 7 days or less depending on the nutritional state and clinical conditions.
The outcome of high-risk soft tissue sarcoma (STS) is poor with radical surgery being the only potentially curative modality. Pazopanib is a multikinase inhibitor approved for the treatment of metastatic STS. Herein, in terms of the German Interdisciplinary Sarcoma Group (GISG-04/NOPASS) trial, we evaluate the potential role of kinetic analysis of fludeoxyglucose F-18 (18F-FDG) data derived from the application of dynamic positron emission tomography/computed tomography (PET/CT) in response assessment to pazopanib of STS patients scheduled for surgical resection. Sixteen STS patients treated with pazopanib as neoadjuvant therapy before surgery were enrolled in the analysis. All patients underwent dynamic PET/CT prior to and after pazopanib treatment. Data analysis consisted of visual (qualitative) analysis of the PET/CT scans, semi-quantitative evaluation based on standardized uptake value (SUV) calculations, and quantitative analysis of the dynamic 18F-FDG PET data, based on two-tissue compartment modeling. Resection specimens were histopathologically assessed and the percentage of regression grade was recorded in 14/16 patients. Time to tumor relapse/progression was also calculated. In the follow-up, 12/16 patients (75%) were alive without relapse, while four patients (25%) relapsed, among them one patient died. Median histopathological regression was 20% (mean 26%, range 5–70%). The studied population was dichotomized using a histopathological regression grade of 20% as cut-off. Based on this threshold, 10/14 patients (71%) showed partial remission (PR), while stable disease (SD) was seen in the rest 4 evaluable patients (29%). Semi-quantitative evaluation showed no statistically significant change in the widely used PET parameters, SUVaverage and SUVmax. On the other hand, 18F-FDG kinetic analysis revealed a significant decrease in the perfusion-related parameter K1, which reflects the carrier-mediated transport of 18F-FDG from plasma to tumor. This decrease can be considered as a marker in response to pazopanib in STS and could be due to the anti-angiogenic effect of the therapeutic agent.
Background: To study neoadjuvant chemoradiotherapy (nCRT) and potential predictive factors for response in locally advanced oral cavity cancer (LA-OCC).
Methods: The INVERT trial is an ongoing single-center, prospective phase 2, proof-of-principle trial. Operable patients with stage III-IVA squamous cell carcinomas of the oral cavity were eligible and received nCRT consisting of 60 Gy with concomitant cisplatin and 5-fluorouracil. Surgery was scheduled 6-8 weeks after completion of nCRT. Explorative, multiplex immunohistochemistry (IHC) was performed on pretreatment tumor specimen, and diffusion-weighted magnetic resonance imaging (DW-MRI) was conducted prior to, during nCRT (day 15), and before surgery to identify potential predictive biomarkers and imaging features. Primary endpoint was the pathological complete response (pCR) rate.
Results: Seventeen patients with stage IVA OCC were included in this interim analysis. All patients completed nCRT. One patient died from pneumonia 10 weeks after nCRT before surgery. Complete tumor resection (R0) was achieved in 16/17 patients, of whom 7 (41%, 95% CI: 18-67%) showed pCR. According to the Clavien-Dindo classification, grade 3a and 3b complications were found in 4 (25%) and 5 (31%) patients, respectively; grade 4-5 complications did not occur. Increased changes in the apparent diffusion coefficient signal intensities between MRI at day 15 of nCRT and before surgery were associated with better response (p=0.022). Higher abundances of programmed cell death protein 1 (PD1) positive cytotoxic T-cells (p=0.012), PD1+ macrophages (p=0.046), and cancer-associated fibroblasts (CAFs, p=0.036) were associated with incomplete response to nCRT.
Conclusion: nCRT for LA-OCC followed by radical surgery is feasible and shows high response rates. Larger patient cohorts from randomized trials are needed to further investigate nCRT and predictive biomarkers such as changes in DW-MRI signal intensities, tumor infiltrating immune cells, and CAFs.
Neisseria meningitidis is a strictly human pathogen that has two facets since asymptomatic carriage can unpredictably turn into fulminant forms of infection. Meningococcal pathogenesis relies on the ability of the bacteria to break host epithelial or endothelial cellular barriers. Highly restrictive, yet poorly understood, mechanisms allow meningococcal adhesion to cells of only human origin. Adhesion of encapsulated and virulent meningococci to human cells relies on the expression of bacterial type four pili (T4P) that trigger intense host cell signalling. Among the components of the meningococcal T4P, the concomitantly expressed PilC1 and PilC2 proteins regulate pili exposure at the bacterial surface, and until now, PilC1 was believed to be specifically responsible for T4P-mediated meningococcal adhesion to human cells. Contrary to previous reports, we show that, like PilC1, the meningococcal PilC2 component is capable of mediating adhesion to human ME180 epithelial cells, with cortical plaque formation and F-actin condensation. However, PilC1 and PilC2 promote different effects on infected cells. Cellular tracking analysis revealed that PilC1-expressing meningococci caused a severe reduction in the motility of infected cells, which was not the case when cells were infected with PilC2-expressing strains. The amount of both total and phosphorylated forms of EGFR was dramatically reduced in cells upon PilC1-mediated infection. In contrast, PilC2-mediated infection did not notably affect the EGFR pathway, and these specificities were shared among unrelated meningococcal strains. These results suggest that meningococci have evolved a highly discriminative tool for differential adhesion in specific microenvironments where different cell types are present. Moreover, the fine-tuning of cellular control through the combined action of two concomitantly expressed, but distinctly regulated, T4P-associated variants of the same molecule (i.e. PilC1 and PilC2) brings a new model to light for the analysis of the interplay between pathogenic bacteria and human host cells.
Needlestick injuries: a density-equalizing mapping and socioeconomic analysis of the global research
(2020)
Background: Needlestick injuries have caused a deleterious effect on the physical and mental health of millions of health-care workers over the past decades, being responsible for occupational infections with viruses such as HIV or hepatis C. Despite this heavy burden of disease, no concise studies have been published on the global research landscape so far.
Methods: We used the New Quality and Quantity Indices in Science platform to analyze global NSI research (n = 2987 articles) over the past 115 years using the Web of Science and parameters such as global versus country-specific research activities, semi-qualitative issues, and socioeconomic figures.
Results: Density-equalizing mapping showed that although a total of n = 106 countries participated in NSI research, large parts of Africa and South America were almost invisible regarding global participation in NSI research. Average citation rate (cr) analysis indicated a high rate for Switzerland (cr = 25.1), Italy (cr = 23.5), and Japan (cr = 19.2). Socioeconomic analysis revealed that the UK had the highest quotient QGDP of 0.13 NSI-specific publications per bill. US-$ gross domestic product (GDP), followed by South Africa (QGDP = 0.12). Temporal analysis of HIV versus hepatitis research indicated that NSI-HIV research culminated in the early 1990s, whereas NSI-hepatitis research increased over the observed period from the 1980s until the last decade.
Conclusion: Albeit NSI research activity is generally increasing, the growth is asymmetrical from a global viewpoint. International strategies should be followed that put a focus on NSI in non-industrialized areas of the world.
Background: To investigate whether patients with critical emergency conditions are seeking or receiving the medical care that they require we characterized the reality of care for patients presenting with Neuro-emergencies during the first phase of the COVID-19 pandemic.
Methods: In this observational, longitudinal cohort study, all neurosurgical admissions that presented to our Department between February 1st and April 15th during the COVID-19 pandemic and during the same time-period in 2019 were identified and categorized according to the presence of a Neuro-emergency, the route of admission, management, and the category of disease. Further, the clinical course of patients with chronic subdural hematoma (cSDH) was investigated as a Neuro-emergency representative for a wide variety of semi-urgent symptoms.
Results: During the pandemic, the percentage of Neuro-emergencies among all neurosurgical admissions remained similar as in 2019 but a larger proportion presented through the emergency department than through the outpatient clinic or by referral (*p=0.009). The total number of Neuro-emergencies was significantly reduced (*p=0.0007) across all types of disease, particularly in severe vascular (*p=0.036) but also in spinal (*p=0.007) and hydrocephalus (*p=0.048) emergencies. Strikingly, elderly patients with cSDH and mild to moderate symptoms presented less frequently, with more severe symptoms (*p=0.046) and were less likely to reach favorable outcome (*p=0.003).
Conclusions: Despite pandemic-related restrictive measures and reallocation of resources, patients with Neuro-emergencies should be encouraged to present regardless of the severity of symptoms because deferred presentation may result in adverse outcome. Thus, conservation of critical healthcare resources remains essential in spite fighting COVID-19.
ND3, ND1 and 39kDa subunits are more exposed in the de-active form of bovine mitochondrial complex I
(2014)
An intriguing feature of mitochondrial complex I from several species is the so-called A/D transition, whereby the idle enzyme spontaneously converts from the active (A) form to the de-active (D) form. The A/D transition plays an important role in tissue response to the lack of oxygen and hypoxic deactivation of the enzyme is one of the key regulatory events that occur in mitochondria during ischaemia. We demonstrate for the first time that the A/D conformational change of complex I does not affect the macromolecular organisation of supercomplexes in vitro as revealed by two types of native electrophoresis. Cysteine 39 of the mitochondrially-encoded ND3 subunit is known to become exposed upon de-activation. Here we show that even if complex I is a constituent of the I+III2+IV (S1) supercomplex, cysteine 39 is accessible for chemical modification in only the D-form. Using lysine-specific fluorescent labelling and a DIGE-like approach we further identified two new subunits involved in structural rearrangements during the A/D transition: ND1 (MT-ND1) and 39kDa (NDUFA9). These results clearly show that structural rearrangements during de-activation of complex I include several subunits located at the junction between hydrophilic and hydrophobic domains, in the region of the quinone binding site. De-activation of mitochondrial complex I results in concerted structural rearrangement of membrane subunits which leads to the disruption of the sealed quinone chamber required for catalytic turnover.
Highlights
• NCoR1 is the most highly expressed endothelial corepressor.
• Loss of NCoR1 promotes angiogenic function in endothelial cells.
• Loss of NCoR1 promotes a tip cell position during angiogenic sprouting.
Abstract
Corepressors negatively regulate gene expression by chromatin compaction. Targeted regulation of gene expression could provide a means to control endothelial cell phenotype. We hypothesize that by targeting corepressor proteins, endothelial angiogenic function can be improved. To study this, the expression and function of nuclear corepressors in human umbilical vein endothelial cells (HUVEC) and in murine organ culture was studied. RNA-seq revealed that nuclear receptor corepressor 1 (NCoR1), silencing mediator of retinoid and thyroid hormone receptors (SMRT) and repressor element-1 silencing transcription factor (REST) are the highest expressed corepressors in HUVECs. Knockout and knockdown strategies demonstrated that the depletion of NCoR1 increased the angiogenic capacity of endothelial cells, whereas depletion of SMRT or REST did not. Interestingly, the effect was VEGF signaling independent. NCoR1 depletion significantly upregulated angiogenesis-associated genes, especially tip cell genes, including ESM1, DLL4 and NOTCH4, as observed by RNA- and ATAC-seq. Confrontation assays comparing cells with and without NCoR1-deficiency revealed that loss of NCoR1 promotes a tip-cell position during spheroid sprouting. Moreover, a proximity ligation assay identified NCoR1 as a direct binding partner of the Notch-signaling-related transcription factor RBPJk. Luciferase assays showed that siRNA-mediated knockdown of NCOR1 promotes RBPJk activity. Furthermore, NCoR1 depletion prompts upregulation of several elements in the Notch signaling cascade. Downregulation of NOTCH4, but not NOTCH1, prevented the positive effect of NCOR1 knockdown on spheroid outgrowth. Collectively, these data indicate that decreasing NCOR1 expression is an attractive approach to promote angiogenic function.
Signal transducer and activator of transcription 5 (STAT5) is a transcription factor that activates prolactin (PRL)-dependent gene expression in the mammary gland. For the activation of its target genes, STAT5 recruits coactivators like p300 and the CREB-binding protein (CBP). In this study we analyzed the function of p300/CBP-associated members of the p160/SRC/NCoA-family in STAT5-mediated transactivation of β-casein expression. We found that only one of them, NCoA-1, acts as a coactivator for both STAT5a and STAT5b. The two coactivators p300/CBP and NCoA-1 cooperatively enhance STAT5a-mediated transactivation. For NCoA-1-dependent coactivation of STAT5, both the activation domain 1 and the amino-terminal bHLH/PAS domain are required. The amino-terminal region mediates the interaction with STAT5a in cells. A motif of three amino acids in an α-helical region of the STAT5a-transactivation domain is essential for the binding of NCoA-1 and for the transcriptional activity of STAT5a. Moreover we observed that NCoA-1 is involved in the synergistic action of the glucocorticoid receptor and STAT5a on the β-casein promoter. These findings support a model in which STAT5, in concert with the glucocorticoid receptor, recruits a multifunctional coactivator complex to initiate the PRL-dependent transcription.
In der vorliegenden Arbeit wird die Einbindung der Navigation in die operative Versorgung der Femurfrakur beschrieben und mit der konventionellen Methode verglichen. Die Marknagelung ist eine von Prof. Dr. G. B. G. Küntscher in den 40er Jahren des 20ten Jahrhunderts entwickelte Behandlung zur Bruchversorgung und Durchführung von Arthrodesen. Die Navigation ist eine Variante der computer-assistierten Chirurgie. Diese Technologien haben in den 90er Jahren des 20ten Jahrhunderts Einzug in die Operationssäle gehalten. Die Navigationssysteme erfahren eine fortwährende Entwicklung und Ausweitung des Einsatzgebietes. Sie konnten sich bis jetzt jedoch nicht, trotz der Möglichkeiten, gegenüber den bisherigen konventionellen Entwicklungen im Bereich der intramedullären Marknagelversorgung durchsetzen. Den Vorzügen der Navigation, der Reduktion der Strahlenbelastung und Erhöhung der Präzision, werden hohe Anschaffungskosten, eine lange Einarbeitungszeit, längere Vorbereitungs- und Operationszeiten und der personelle Mehraufwand gegenüber gestellt. Ein ausführlicher Vergleich der Navigation mit dem konventionellen Verfahren existiert in der Fachliteratur bis jetzt nur auf einzelne Arbeitsschritte bezogen, wie z.B. dem Vorgang der distalen Verriegelung. In unseren Untersuchungen wurden 22 Patienten mit der Navigation versorgt. Die konventionelle Methode wurde bei 12 Patienten verwendet. Alle entscheidenden Schritte der Femurmarknagelversorgung, die Nageleintrittsbestimmung, die Frakturreposition und die distale Verriegelung wurden in der Dauer und Strahlenbelastung erfasst, ebenso die Gesamtoperationszeit und Gesamtstrahlenbelastung einander gegenübergestellt und mit den vorhandenen Daten in der Fachliteratur verglichen. Die Verwendung der Navigation hat den Arbeitsschritt des Nageleintritts verlängert (23,3 min vs 14,8 min). Gegenüber der konventionellen Methode konnte eine Reduktion der Röntgenzeit um 22 % (0,39 min vs 0,5 min) bei diesem Vorgang beobachtet werden. Die navigierte Frakturreposition dauerte im Durchschnitt 25,1 min vs 16,8 min bei der konventionellen Methode. Die Strahlenbelastung konnte um 70 % auf 0,39 min vs 1,28 min gesenkt werden. Die Rate der geschlossenen Frakturrepositionen lag bei 86 % gegenüber 67 % bei dem konventionellen Vorgehen. Die distale Verriegelung mit zwei Bolzen konnte mit der Navigation in 28,9 min vs 13,9 min bei der konventionellen Methode durchgeführt werden. Die Röntgenzeit wurde mit Hilfe der Navigation um 50 % reduziert (0,39 min vs 0,78 min). Die Präzision bei der distalen Verriegelung konnte mit dem Verfahren der Navigation gegenüber der konventionellen Methode und dem strahlendurchlässigen Winkelgetriebe nur geringfügig gesteigert werden (93 % bei 44 Bolzen vs 91 % bei 23 Bolzen). Die Gesamtoperationszeit der navigierten Fälle war durchschnittlich 43,2 min länger als die konventionell behandelten Fälle (150,1 min vs 106,9 min). Die Gesamtstrahlenzeit konnte mit der Navigation gegenüber der konventionellen Methode um 37,5 % gesenkt werden (2,5 min vs 4 min). Die Vorteile der Navigation zeigten sich vorallem bei der Frakturreposition. Hier konnte die Strahlenbelastung deutlich gesenkt werden (70 %, 0,39 min vs 1,28 min). Die Rate der erfolgreichen geschlossenen Manöver wurde gegenüber der konventionellen Methode gesteigert (86 % vs 67 %).
Bei der distalen Verriegelung haben wir eine Reduktion der Dauer einer Bohrung mit Navigation um 14 % gegenüber der konventionellen Methode mit dem strahlendurchlässigen Winkelgetriebe festgestellt (3,6 min vs 4,2 min, gemessen Haut-inzision und Bohrung bis Gegencorticalis). Die Gesamtstrahlenzeit für den Vorgang der distalen Verriegelung mit zwei Bolzen und sich anschließender Lagekontrolle zeigte sich mit der Navigation um 50 % redziert (0,39 min vs 0,78 min). Ein zeitlicher Mehraufwand wurde durch die Vorbereitung der Navigation bei allen Arbeitsschritten festgestellt.
Invasive fungal infections are still an important cause of morbidity and mortality in immunocompromised patients such as patients suffering from hematological malignancies or patients undergoing hematopoietic stem cell transplantion. In addition, other populations such as human immunodeficiency virus-patients are at higher risk for invasive fungal infection. Despite the availability of new antifungal compounds and better supportive care measures, the fatality rate of invasive fungal infection remained unacceptably high. It is therefore of major interest to improve our understanding of the host–pathogen interaction to develop new therapeutic approaches such as adoptive immunotherapy. As experimental methodologies have improved and we now better understand the complex network of the immune system, the insight in the interaction of the host with the fungus has significantly increased. It has become clear that host resistance to fungal infections is not only associated with strong innate immunity but that adaptive immunity (e.g., T cells) also plays an important role. The antifungal activity of natural killer (NK) cells has been underestimated for a long time. In vitro studies demonstrated that NK cells from murine and human origin are able to attack fungi of different genera and species. NK cells exhibit not only a direct antifungal activity via cytotoxic molecules but also an indirect antifungal activity via cytokines. However, it has been show that fungi exert immunosuppressive effects on NK cells. Whereas clinical data are scarce, animal models have clearly demonstrated that NK cells play an important role in the host response against invasive fungal infections. In this review, we summarize clinical data as well as results from in vitro and animal studies on the impact of NK cells on fungal pathogens.
Natural Killer (NK) cells are involved in the host immune response against infections due to viral, bacterial and fungal pathogens, all of which are a significant cause of morbidity and mortality in immunocompromised patients. Since the recovery of the immune system has a major impact on the outcome of an infectious complication, there is major interest in strengthening the host response in immunocompromised patients, either by using cytokines or growth factors or by adoptive cellular therapies transfusing immune cells such as granulocytes or pathogen-specific T-cells. To date, relatively little is known about the potential of adoptively transferring NK cells in immunocompromised patients with infectious complications, although the anti-cancer property of NK cells is already being investigated in the clinical setting. This review will focus on the antimicrobial properties of NK cells and the current standing and future perspectives of generating and using NK cells as immunotherapy in patients with infectious complications, an approach which is promising and might have an important clinical impact in the future.
Invasive fungal disease (IFD) in hematopoietic stem cell transplantation is associatedwith high morbidity and mortality. As the antifungal host response determines risk and outcomeof IFD, there is growing interest in adoptive immunotherapy using T cells or natural killer (NK)cells. Although the NK-92 cell line has been tested as anticancer therapy in clinical trials, data onthe antifungal activity of NK-92 cells are lacking. Here, we show that the NK-92 cell line exhibitsconsiderable fungal damage on all medically important fungi tested, such as different species ofAspergillus,Candida, mucormycetes, andFusarium. The extent of fungal damage differs acrossvarious species of mucormycetes andFusarium, whereas it is comparable across different species ofAspergillusandCandida. Interferon (IFN)-γlevels in the supernatant were lower when NK-92 cells areco-incubated withAspergillus fumigatus,Candida albicans, orRhizopus arrhizuscompared to the levelswhen NK-92 cells are incubated alone. Different to primary human NK cells, no increase of perforinlevels in the supernatant was observed when the fungi were added to NK-92 cells. Ourin vitrodatademonstrated that the NK-92 cell line could be a feasible tool for antifungal immunotherapy, butdata of animal models are warranted prior to clinical trials.
Background and Objectives: Delirium is a common and major complication subsequent to cardiac surgery. Despite scientific efforts, there are no parameters which reliably predict postoperative delirium. In delirium pathology, natriuretic peptides (NPs) interfere with the blood–brain barrier and thus promote delirium. Therefore, we aimed to assess whether NPs may predict postoperative delirium and long-term outcomes. Materials and Methods: To evaluate the predictive value of NPs for delirium we retrospectively analyzed data from a prospective, randomized study for serum levels of atrial natriuretic peptide (ANP) and the precursor of C-type natriuretic peptide (NT-proCNP) in patients undergoing coronary artery bypass grafting (CABG) with or without cardiopulmonary bypass (off-pump coronary bypass grafting; OPCAB). Delirium was assessed by a validated chart-based method. Long-term outcomes were assessed 10 years after surgery by a telephone interview. Results: The overall incidence of delirium in the total cohort was 48% regardless of the surgical approach (CABG vs. OPCAB). Serum ANP levels >64.6 pg/mL predicted delirium with a sensitivity (95% confidence interval) of 100% (75.3–100) and specificity of 42.9% (17.7–71.1). Serum NT-proCNP levels >1.7 pg/mL predicted delirium with a sensitivity (95% confidence interval) of 92.3% (64.0–99.8) and specificity of 42.9% (17.7–71.1). Both NPs could not predict postoperative survival or long-term cognitive decline. Conclusions: We found a positive correlation between delirium and preoperative plasma levels of ANP and NT-proCNP. A well-powered and prospective study might identify NPs as biomarkers indicating the risk of delirium and postoperative cognitive decline in patients at risk for postoperative delirium.
Background: Little is known about evaluation practices as well as performance-oriented allocation of resources according to teaching quality at German medical schools. For this reason, the Association of the Scientific Medical Societies in Germany and the German Association of Medical Faculties aimed to analyse current practices at German medical schools.
Methods: Data were collected by a questionnaire which was sent to all medical schools in Germany.
Results: 30 medical schools with 33 undergraduate medical programs participated in the survey (response rate: 83%). The evaluation tools used at these schools mainly assessed structural and procedural aspects of teaching and were designed to obtain overall student ratings of teaching quality. Evaluation tools were quite heterogeneous across the sample, and some uncertainty remained with regard to the psychometric properties of these tools and whether they meet international quality standards. Various algorithms underlying resource allocation for teaching are being used, but most focus on quantity rather than quality of teaching.
Conclusion: A nationwide agreement on a generalizable definition of high-quality teaching is desirable. At the same time, reliable and valid tools measuring teaching quality need to be identified and/or created. This could be accomplished through a wider collaboration of medical schools and could represent an advancement for the allocation of resources for high-quality teaching.
The National Institutes of Health Stroke Scale (NIHSS) score is the most frequently used score worldwide for assessing the clinical severity of a stroke. Prior research suggested an association between acute symptomatic seizures after stroke and poorer outcome. We determined the frequency of acute seizures after ischemic stroke in a large population-based registry in a central European region between 2004 and 2016 and identified risk factors for acute seizures in univariate and multivariate analyses. Additionally, we determined the influence of seizures on morbidity and mortality in a matched case–control design. Our analysis of 135,117 cases demonstrated a seizure frequency of 1.3%. Seizure risk was 0.6% with an NIHSS score at admission <3 points and increased up to 7.0% with >31 score points. Seizure risk was significantly higher in the presence of acute non-neurological infections (odds ratio: 3.4; 95% confidence interval: 2.8–4.1). A lower premorbid functional level also significantly increased seizure risk (OR: 1.7; 95%CI: 1.4–2.0). Mortality in patients with acute symptomatic seizures was almost doubled when compared to controls matched for age, gender, and stroke severity. Acute symptomatic seizures increase morbidity and mortality in ischemic stroke. Their odds increase with a higher NIHSS score at admission.
Purpose: The prevalence of "ocal allergic rhinitis" within individuals suffering from perennial rhinitis remains uncertain, and patients usually are diagnosed with non-allergic rhinitis. The aim of this study was to evaluate the prevalence of a potential "local allergic rhinitis" in subjects suffering from non-allergic rhinitis in a non-selected group of young students.
Methods: 131 students (age 25.0 ± 5.1 years) with a possible allergic rhinitis and 25 non-allergic controls without rhinitis symptoms (age 22.0 ± 2.0 years) were recruited by public postings. 97 of 131 students with rhinitis were tested positive (≥3 mm) to prick testing with 17 frequent allergens at visit 1. Twenty-four 24 subjects with a house dust mite allergy, 21 subjects with a non-allergic rhinitis, and 18 non-allergic controls were further investigated at visit 2. Blood samples were taken, and nasal secretion was examined. In addition, all groups performed a nasal provocation test with house dust mite (HDM).
Results: In serum and nasal secretion, total IgE and house dust mite specific IgE significantly differed between HDM positive subjects and controls. However, no differences between non-allergic subjects and control subjects were quantifiable. Neither a nasal provocation test nor a nasal IgE to HDM allergens showed a measurable positive response in any of the non-allergic rhinitis subjects as well as the healthy controls, whilst being positive in 13 subjects with HDM allergy.
Conclusions: Nasal IgE is present in subjects with HDM allergy, but not in non-allergic rhinitis. In the investigated non-selected population, exclusive local production of IgE is absent. By implication, therefore, our findings challenge the emerging concept of local allergic rhinitis.
Study identifier at ClinicalTrials.gov: NCT 02810535.
The digital and information age has fundamentally transformed the way in which students learn and the study material they have at their disposal, especially in higher education. Students need to possess a number of higher-order cognitive and metacognitive skills, including effective information processing and critical reasoning to be able to navigate the Internet and use online sources, even those found outside of academically curated domains and in the depths of the Internet, and to solve (domain-specific) problems. Linking qualitative and quantitative research and connecting the humanities to empirical educational science studies, this article investigates the role of narratives and their impact on university students’ information seeking and their critical online reasoning (COR). This study focuses on the link between students’ online navigation skills, information seeking behavior and critical reasoning with regard to the specific domains: economics and medicine. For the empirical analysis in this article, we draw on a study that assesses the COR skills of undergraduate students of economics and medicine at two German universities. To measure COR skills, we used five tasks from the computer-based assessment “Critical Online Reasoning Assessment” (CORA), which assesses students’ skills in critically evaluating online sources and reasoning using evidence on contentious issues. The conceptual framework of this study is based on an existing methodology – narrative economics and medicine – and discusses its instructional potential and how it can be used to develop a new tool of “wise interventions” to enhance students’ COR in higher education. Based on qualitative content analyses of the students’ written responses, i.e., short essays, three distinct patterns of information seeking behavior among students have been identified. These three patterns – “Unambiguous Fact-Checking,” “Perspective-Taking Without Fact-Checking,” and “Web Credibility-Evaluating” – differ substantially in their potential connection to underlying narratives of information used by students to solve the CORA tasks. This analysis suggests that training university students in narrative analysis can strongly contribute to enhancing their critical online reasoning.
Urban health is potentially affected by particle emissions. The potential toxicity of nanoparticles is heavily debated and there is an enormous global increase in research activity in this field. In this respect, it is commonly accepted that nanoparticles may also be generated in processes occurring while driving vehicles. So far, a variety of studies addressed traffic-related particulate matter emissions, but only few studies focused on potential nanoparticles. Therefore, the present study analyzed the literature with regard to nanoparticles and cars. It can be stated that, to date, only a limited amount of research has been conducted in this area and more studies are needed to 1) address kind and sources of nanoparticles within automobiles and to 2) analyse whether there are health effects caused by these nanoparticles.
The demand to develop convergent technology platforms, such as bio-functionalized medical devices, is rapidly increasing. However, the loss of biological function of the effector molecules during sterilization represents a significant and general problem. Therefore, we have developed and characterized a nano-coating (NC) formulation capable of maintaining the functionality of proteins on biological-device combination products. As a proof of concept, the NC preserved the structural and functional integrity of an otherwise highly fragile antibody immobilized on polyurethane during deleterious sterilizing irradiation (≥ 25 kGy). The NC procedure enables straight-forward terminal sterilization of bio-functionalized materials while preserving optimal conditioning of the bioactive surface.
Background: Pancreatic ductal adenocarcinoma remains one of the most lethal malignancies, with few treatment options. NAPOLI 3 aimed to compare the efficacy and safety of NALIRIFOX versus nab-paclitaxel and gemcitabine as first-line therapy for metastatic pancreatic ductal adenocarcinoma (mPDAC).
Methods: NAPOLI 3 was a randomised, open-label, phase 3 study conducted at 187 community and academic sites in 18 countries worldwide across Europe, North America, South America, Asia, and Australia. Patients with mPDAC and Eastern Cooperative Oncology Group performance status score 0 or 1 were randomly assigned (1:1) to receive NALIRIFOX (liposomal irinotecan 50 mg/m2, oxaliplatin 60 mg/m2, leucovorin 400 mg/m2, and fluorouracil 2400 mg/m2, administered sequentially as a continuous intravenous infusion over 46 h) on days 1 and 15 of a 28-day cycle or nab-paclitaxel 125 mg/m2 and gemcitabine 1000 mg/m2, administered intravenously, on days 1, 8, and 15 of a 28-day cycle. Balanced block randomisation was stratified by geographical region, performance status, and liver metastases, managed through an interactive web response system. The primary endpoint was overall survival in the intention-to-treat population, evaluated when at least 543 events were observed across the two treatment groups. Safety was evaluated in all patients who received at least one dose of study treatment. This completed trial is registered with ClinicalTrials.gov, NCT04083235.
Findings: Between Feb 19, 2020 and Aug 17, 2021, 770 patients were randomly assigned (NALIRIFOX, 383; nab-paclitaxel–gemcitabine, 387; median follow-up 16·1 months [IQR 13·4–19·1]). Median overall survival was 11·1 months (95% CI 10·0–12·1) with NALIRIFOX versus 9·2 months (8·3–10·6) with nab-paclitaxel–gemcitabine (hazard ratio 0·83; 95% CI 0·70–0·99; p=0·036). Grade 3 or higher treatment-emergent adverse events occurred in 322 (87%) of 370 patients receiving NALIRIFOX and 326 (86%) of 379 patients receiving nab-paclitaxel–gemcitabine; treatment-related deaths occurred in six (2%) patients in the NALIRIFOX group and eight (2%) patients in the nab-paclitaxel–gemcitabine group.
Interpretation: Our findings support use of the NALIRIFOX regimen as a possible reference regimen for first-line treatment of mPDAC.
Reactive oxygen species (ROS) have been shown or at least suggested to play an essential role for cellular signaling as second messengers. NADPH oxidases represent a source of controlled ROS formation. Accordingly, understanding the role of individual NADPH oxidases bears potential to interfere with intracellular signaling cascades without disturbing the signaling itself. Many tools have been developed to study or inhibit the functions and roles of the NADPH oxidases. This short review summarizes diseases, potentially associated with NADPH oxidases, genetically modified animals, and inhibitors.
Inflammation or injury to the somatosensory nervous system may result in chronic pain conditions, which affect millions of people and often cause major health problems. Emerging lines of evidence indicate that reactive oxygen species (ROS), such as superoxide anion or hydrogen peroxide, are produced in the nociceptive system during chronic inflammatory and neuropathic pain and act as specific signaling molecules in pain processing. Among potential ROS sources in the somatosensory system are NADPH oxidases, a group of electron-transporting transmembrane enzymes whose sole function seems to be the generation of ROS. Interestingly, the expression and relevant function of the Nox family members Nox1, Nox2, and Nox4 in various cells of the nociceptive system have been demonstrated. Studies using knockout mice or specific knockdown of these isoforms indicate that Nox1, Nox2, and Nox4 specifically contribute to distinct signaling pathways in chronic inflammatory and/or neuropathic pain states. As selective Nox inhibitors are currently being developed and investigated in various physiological and pathophysiological settings, targeting Nox1, Nox2, and/or Nox4 could be a novel strategy for the treatment of chronic pain. Here, we summarize the distinct roles of Nox1, Nox2, and Nox4 in inflammatory and neuropathic processing and discuss the effectiveness of currently available Nox inhibitors in the treatment of chronic pain conditions.
Aims: Chronic pressure or volume overload induce concentric vs. eccentric left ventricular (LV) remodelling, respectively. Previous studies suggest that distinct signalling pathways are involved in these responses. NADPH oxidase-4 (Nox4) is a reactive oxygen species-generating enzyme that can limit detrimental cardiac remodelling in response to pressure overload. This study aimed to assess its role in volume overload-induced remodelling.
Methods and results: We compared the responses to creation of an aortocaval fistula (Shunt) to induce volume overload in Nox4-null mice (Nox4−/−) vs. wild-type (WT) littermates. Induction of Shunt resulted in a significant increase in cardiac Nox4 mRNA and protein levels in WT mice as compared to Sham controls. Nox4−/− mice developed less eccentric LV remodelling than WT mice (echocardiographic relative wall thickness: 0.30 vs. 0.27, P < 0.05), with less LV hypertrophy at organ level (increase in LV weight/tibia length ratio of 25% vs. 43%, P < 0.01) and cellular level (cardiomyocyte cross-sectional area: 323 µm2 vs. 379 μm2, P < 0.01). LV ejection fraction, foetal gene expression, interstitial fibrosis, myocardial capillary density, and levels of myocyte apoptosis after Shunt were similar in the two genotypes. Myocardial phospho-Akt levels were increased after induction of Shunt in WT mice, whereas levels decreased in Nox4−/− mice (+29% vs. −21%, P < 0.05), associated with a higher level of phosphorylation of the S6 ribosomal protein (S6) and the eIF4E-binding protein 1 (4E-BP1) in WT compared to Nox4−/− mice. We identified that Akt activation in cardiac cells is augmented by Nox4 via a Src kinase-dependent inactivation of protein phosphatase 2A.
Conclusion: Endogenous Nox4 is required for the full development of eccentric cardiac hypertrophy and remodelling during chronic volume overload. Nox4-dependent activation of Akt and its downstream targets S6 and 4E-BP1 may be involved in this effect.
Es wurden 34 polyvalente Immunoglobulinpräparate zur i.m. und i.v. Anwendung verschiedener Hersteller und verschiedener Chargen sowie 9 spezifische Tetanus-Immunglobulinpräparate auf das Vorhandensein von HBsAg-Immunkomplexen untersucht. Möglicherweise vorhandene Immunkomplexe wurden vorher mit der sauren Dissoziationsmethode gespalten. Der anschließende Nachweis von HBsAg erfolgte mit dem von uns modifizierten AUSRIA* II-725-Test der Firma Abbot. Von den polyvalenten Immunglobulinen wurden 22 positiv für HBsAg gefunden. Von den spezifischen Immunglobulinen waren 3 positiv.
Hintergrund: Die Behandlung kindlicher Linsentrübungen stellt nach wie vor eine Herausforderung für die behandelnden Augenärzte dar. Im Bezug auf die Nachstarprävention ist man sich einig, dass das Belassen der intakten Linsenhinterkapsel bei Patienten unterhalb des sechsten Lebensjahres mit einem sehr hohen Nachstarrisiko behaftet ist. Aus diesem Grund haben sich einige Therapieformen mit primärer hinterer Linsenkapseleröffnung etabliert. Die beiden Nachstarpräventionstechniken bei Kindern, vordere Vitrektomie und Knopflochimplantation der Kunstlinse ohne Vitrektomie, wurden in einigen internationalen Studien bereits untersucht. Aus Deutschland stammende Untersuchungsergebnisse aus der kindlichen Kataraktchirurgie, mit einem Beobachtungszeitraum über mehrere Jahre, liegen in der Literatur noch nicht vor.
Anknüpfend an Untersuchungen von Nachwirkungserscheinungen vor allem an der Taenia coli des Meerschweinchens, bei denen Nachdehnung und Relaxation mit einer Hyperbelfunktion beschrieben wurden, gehörte es zu den Zielen dieser Arbeit, Gesetzmäßigkeiten im zeitlichen Verlauf der Nachdehnung bei dem anders strukturierten Uterushorn in verschiedenen Badlösungen zu untersuchen und insbesondere zu prüfen, ob die Hyperbelfunktion auch darauf angewendet werden kann und welche Rückschlüsse auf die funktionelle Struktur möglich sind.
Nach Voruntersuchungen an 30 Uterushörnern, bei denen auch Fragen der Tierwahl und der Standardisierung des Hormoneinflusses untersucht wurden, folgten nach ausführlicher biomathematischer Planung Hauptuntersuchungen an 58 Uterushörnern. Ein weiteres Ziel der Arbeit, eine wesentliche Verbesserung der Datenerfassung, konnte durch Einsatz eines Kurvenfolgers in Verbindung mit einer EDV-Anlage und eigenen Datenerfassungsprogrammen erreicht werden, wobei besonderer Wert darauf gelegt wurde, die Reproduzierbarkeit der Datenerfassung näher zu untersuchen, um die erzielte Genauigkeit, die höher als bei allen vergleichsweise zitierten Arbeiten liegt, nachprüfbarangeben zu können. Die erweiterten Möglichkeiten der Datenerfassung lieferten den Anstoß zum Erkennen von Problemen in der bisher üblichen Form der Datenauswertung, der Wertestandardisierung und der Nachdehnungsdefinition; hierfür konnten Lösungswege erarbeitet werden: u.a. ein EDV-Programm zur iterativen Hyperbelanpassung, Definition neuer Nachdehnungsgrößen und eine Aufgliederung in eine modellunabhängige und eine modellabhängige Auswertung.
Nach einem ausführlichen Überblick Uber die Physiologie glatter Muskulatur unter den Aspekten von Funktion und Struktur sowie einer Auseinandersetzung mit dem Begriff des Modells erfolgte eine zusammenfassende Datenauswertung: eine univariate Mehrwegkovarianzanalyse bestätigte nicht nur die Bedeutung des Faktors „Badlösung”, sondern ermöglichte auch unerwartete Aussagen über Kovariablen und Wechselwirkungen, die in früheren Arbeiten nicht in die Fragestellungen mit einbezogen worden waren; iterative Kurvenanpassungen zeigten die Überlegenheit mehrerer einfacher logarithmischer und exponentieller Funktionen im Vergleich zur Hyperbelfunktion. Außerdem waren Vergleiche zwischen verschieden strukturierten Muskeln und zwei Tierarten möglich.
Aus den gewonnenen Ergebnissen werden einige Schlußfolgerungen gezogen und Deutungen für die funktionelle Struktur des glatten Muskels gegeben.
Aims: We investigated N471D WASH complex subunit strumpellin (Washc5) knock-in and Washc5 knock-out mice as models for hereditary spastic paraplegia type 8 (SPG8). Methods: We generated heterozygous and homozygous N471D Washc5 knock-in mice and subjected them to a comprehensive clinical, morphological and laboratory parameter screen, and gait analyses. Brain tissue was used for proteomic analysis. Furthermore, we generated heterozygous Washc5 knock-out mice. WASH complex subunit strumpellin expression was determined by qPCR and immunoblotting. Results: Homozygous N471D Washc5 knock-in mice showed mild dilated cardiomyopathy, decreased acoustic startle reactivity, thinner eye lenses, increased alkaline phosphatase and potassium levels and increased white blood cell counts. Gait analyses revealed multiple aberrations indicative of locomotor instability. Similarly, the clinical chemistry, haematology and gait parameters of heterozygous mice also deviated from the values expected for healthy animals, albeit to a lesser extent. Proteomic analysis of brain tissue depicted consistent upregulation of BPTF and downregulation of KLHL11 in heterozygous and homozygous knock-in mice. WASHC5-related protein interaction partners and complexes showed no change in abundancies. Heterozygous Washc5 knock-out mice showing normal WASHC5 levels could not be bred to homozygosity. Conclusions: While biallelic ablation of Washc5 was prenatally lethal, expression of N471D mutated WASHC5 led to several mild clinical and laboratory parameter abnormalities, but not to a typical SPG8 phenotype. The consistent upregulation of BPTF and downregulation of KLHL11 suggest mechanistic links between the expression of N471D mutated WASHC5 and the roles of both proteins in neurodegeneration and protein quality control, respectively.
Foamy viruses (FVs) are distinct retroviruses classified as Spumaretrovirinae in contrast to the other retroviruses, the Orthoretrovirinae. As a unique feature of FVs, Gag is not sufficient for sub-viral particle (SVP) release. In primate and feline FVs (PFV and FFV), particle budding completely depends on the cognate FV Env glycoproteins. It was recently shown that an artificially added N-terminal Gag myristoylation signal (myr-signal) overcomes this restriction in PFV inducing an Orthoretrovirus-like budding phenotype. Here we show that engineered, heterologous N-terminal myr-signals also induce budding of the distantly related FFV Gag. The budding efficiency depends on the myr-signal and its location relative to the N-terminus of Gag. When the first nine amino acid residues of FFV Gag were replaced by known myr-signals, the budding efficiency as determined by the detection of extracellular SVPs was low. In contrast, adding myr-signals to the intact N-terminus of FFV Gag resulted in a more efficient SVP release. Importantly, budding of myr-Gag proteins was sensitive towards inhibition of cellular N-myristoyltransferases. As expected, the addition or insertion of myr-signals that allowed Env-independent budding of FFV SVPs also retargeted Gag to plasma membrane-proximal sites and other intracellular membrane compartments. The data confirm that membrane-targeted FV Gag has the capacity of SVP formation.
Background and Objective: The slow delayed rectifier current (IKs) is important for cardiac action potential termination. The underlying channel is composed of Kv7.1 α-subunits and KCNE1 β-subunits. While most evidence suggests a role of KCNE1 transmembrane domain and C-terminus for the interaction, the N-terminal KCNE1 polymorphism 38G is associated with reduced IKs and atrial fibrillation (a human arrhythmia). Structure-function relationship of the KCNE1 N-terminus for IKs modulation is poorly understood and was subject of this study.
Methods: We studied N-terminal KCNE1 constructs disrupting structurally important positively charged amino-acids (arginines) at positions 32, 33, 36 as well as KCNE1 constructs that modify position 38 including an N-terminal truncation mutation. Experimental procedures included molecular cloning, patch-clamp recording, protein biochemistry, real-time-PCR and confocal microscopy.
Results: All KCNE1 constructs physically interacted with Kv7.1. IKs resulting from co-expression of Kv7.1 with non-atrial fibrillation ‘38S’ was greater than with any other construct. Ionic currents resulting from co-transfection of a KCNE1 mutant with arginine substitutions (‘38G-3xA’) were comparable to currents evoked from cells transfected with an N-terminally truncated KCNE1-construct (‘Δ1-38’). Western-blots from plasma-membrane preparations and confocal images consistently showed a greater amount of Kv7.1 protein at the plasma-membrane in cells co-transfected with the non-atrial fibrillation KCNE1-38S than with any other construct.
Conclusions: The results of our study indicate that N-terminal arginines in positions 32, 33, 36 of KCNE1 are important for reconstitution of IKs. Furthermore, our results hint towards a role of these N-terminal amino-acids in membrane representation of the delayed rectifier channel complex.
Aim of the study: Hepatocyte transplantation has been discussed as an alternative to liver transplantation in selected cases of acute and chronic liver failure and metabolic diseases. Immediately after infusion of hepatocytes, hypoxia-related cell injury is inevitable. N-acetylcysteine (NAC) has been suggested to attenuate hypoxic damage. This study’s objective was to evaluate NAC’s protective effect in a model of hypoxia-related hepatocyte injury.
Material and methods: HepG2 cells were used as a model for hepatocytes and were cultured under standardized hypoxia or normoxia for 24 hours with or without NAC. Growth kinetics were monitored using trypan blue staining. The activation of apoptotic pathways was measured using quantitative real-time PCR for Bcl-2/Bax and p53. The proportions of vital, apoptotic and necrotic cells were verified by fluorescence activated cell sorting using annexin V-labelling. The expression of hypoxia inducible factor 1 (HIF-1) was measured indirectly using its downstream target vascular endothelial growth factor A (VEGF-A).
Results: After NAC, cell proliferation increased under both hypoxia and normoxia by 528% and 320% (p < 0.05), while VEGF-A expression decreased under normoxia by 67% and 37% (p < 0.05). Compared to cells treated without NAC under hypoxia, the Bcl-2/Bax ratio increased significantly in cells treated with NAC. This finding was confirmed by an increased number of vital cells in FACS analysis.
Conclusions: NAC protects hepatocytes from hypoxic injury and ultimately activates anti-apoptotic pathways.
Cytochrome P450 (CYP) epoxygenases generate bioactive lipid epoxides which can be further metabolized to supposedly less active diols by the soluble epoxide hydrolase (sEH). As the role of epoxides and diols in angiogenesis is unclear, we compared retinal vasculature development in wild-type and sEH−/− mice. Deletion of the sEH significantly delayed angiogenesis, tip cell, and filopodia formation, a phenomenon associated with activation of the Notch signaling pathway. In the retina, sEH was localized in Müller glia cells, and Müller cell–specific sEH deletion reproduced the sEH−/− retinal phenotype. Lipid profiling revealed that sEH deletion decreased retinal and Müller cell levels of 19,20–dihydroxydocosapentaenoic acid (DHDP), a diol of docosahexenoic acid (DHA). 19,20-DHDP suppressed endothelial Notch signaling in vitro via inhibition of the γ-secretase and the redistribution of presenilin 1 from lipid rafts. Moreover, 19,20-DHDP, but not the parent epoxide, was able to rescue the defective angiogenesis in sEH−/− mice as well as in animals lacking the Fbxw7 ubiquitin ligase, which demonstrate strong basal activity of the Notch signaling cascade. These studies demonstrate that retinal angiogenesis is regulated by a novel form of neuroretina–vascular interaction involving the sEH-dependent generation of a diol of DHA in Müller cells.
Hintergrund: Die Delegation ärztlicher Leistungen an nichtärztliches medizinisches Fachpersonal wird in Deutschland vor dem Hintergrund eines absehbaren Hausärztemangels bei gleichzeitig wachsendem Bedarf an hausärztlichen Betreuungsleistungen seit einiger Zeit diskutiert. Inzwischen wurden unterschiedliche Qualifikationsmodelle für Medizinische Fachangestellte (MFA) (z.B. die Versorgungs-assistentin in der Hausarztpraxis, VERAH) konzipiert und implementiert, die für eine Delegation von Leistungen qualifizieren. VERAH sind v.a. in Baden-Württemberg in Hausarztpraxen tätig, da deren Einsatz dort im Rahmen der Hausarztzentrierten Versorgung (HzV) seit 2008 finanziell honoriert wird. Dabei ist es den Praxen freigestellt, wie sie das VERAH-Konzept und damit auch die Delegation umsetzen. Auch gesetzliche Vorgaben zur Delegation lassen erheblichen Spielraum bei der Umsetzung. Erschwerend kommt hinzu, dass weiterhin Unklarheit darüber besteht, welche Leistungsübertragung als „Delegation“ und welche eher als „Substitution“ zu verstehen ist.
Zielrichtung der Arbeit: Ziel dieser publikationsbasierten Dissertation ist eine Darstellung der Formen und Graduierungen von Delegation, d.h. der tatsächlichen Umsetzung von Leistungsübertragung in der Hausarztpraxis am Beispiel der VERAH in Baden-Württemberg. Es können Empfehlungen für das Gelingen der Delegation aus der Analyse von Ergebnissen auf Patienten-, Praxis- und Teamebene abgeleitet werden.
Resultate: Diese Dissertation basiert auf sechs Publikationen, die im Rahmen von zwei Projekten zur Evaluation des VERAH-Einsatzes in der HzV in Baden-Württemberg entstanden. Die Evaluationen basieren auf einem Mixed Methods-Design, d.h. auf der Analyse von querschnittlich erhobenen quantitativen Daten sowie qualitativen Daten zu verschiedenen Fragen des VERAH-Einsatzes.
Es existiert ein breites Spektrum an Formen und Graduierungen der Delegation in Hausarztpraxen, die am HzV-Modell teilnehmen. VERAH übernehmen einerseits supplementäre (zusätzliche) ärztliche Tätigkeiten, wie z.B. Geriatrisches Assessment oder Impfberatungen, aber auch komplementäre (ergänzende) Tätigkeiten wie z.B. die Beratung der Angehörigen zu Hilfeleistungen im Gesundheitssystem. Vor allem im Rahmen von Hausbesuchen üben VERAH auch substituierende (ersetzende) Funktionen
aus. Auf Patientenseite sind gerade ältere, multimorbide und pflegebedürftige Patienten Empfänger delegierter Leistungen. Sie erhalten eine umfassende Betreuung und werden beim Erhalt ihrer häuslichen Selbständigkeit unterstützt. Die Patienten sehen in der VERAH eine zusätzliche Vertrauensperson in der Praxis und akzeptieren sie als kompetente Ansprechpartnerin. Die Hausärzte profitieren durch die Delegation von Tätigkeiten an VERAH, indem sie entlastet werden und Zeit für wichtige medizinische Aufgaben gewinnen. Für VERAH stellt die Delegation eine Erweiterung ihrer Tätigkeits- und Kompetenzbereiche dar und kann insofern als ein Schritt zur Professionalisierung des nichtärztlichen Personals einer Hausarztpraxis gelten.
Viele Faktoren, die zum Gelingen einer Umsetzung der Delegation beitragen, können vom hausärztlichen Team selbst beeinflusst werden. Darunter fallen das Engagement der MFA, die Qualifikation, zeitliche Flexibilität, ausreichend Gestaltungsspielraum, Grad der Autonomie, Abgrenzung des Verantwortungsbereiches und auch adäquates Equipment. Entsprechend richten sich die hier formulierten Empfehlungen meist an die Praxis, aber auch an den Gesetzgeber.
Bedeutung für die übergeordnete Fragestellung: Die Ergebnisse dieser Arbeit zeigen, dass mit dem VERAH-Konzept erste Ansätze einer teambasierten Versorgung vorhanden sind, und dass sich die Analyse dieses Konzeptes eignet, um Desiderata für die Zukunft von Delegation (haus-)ärztlicher Leistungen an nichtärztliches Personal formulieren zu können. Teambasierte Ansätze bedürfen, wie auch internationale Beispiele verdeutlichen, einer Weiterentwicklung der bestehenden Delegationskonzepte in deutschen Hausarztpraxen. Idealerweise mündet eine mit Delegation einhergehende Aufgaben- und Rollenneuverteilung in einer Betreuungsform, in der alle Teammitglieder entsprechend ihrer Qualifikation an der Versorgung der Patienten in der Hausarztpraxis beteiligt sind. Daher kommt die Einbindung von Pflegekräften in die hausärztliche Versorgung genauso in Frage, wie auch speziell ausgebildete VERAH/MFA. In jedem Fall sollte über Schritte der Professionalisierung nichtärztlicher Berufsgruppen nachgedacht werden. Ob sich in Deutschland, wie in den USA und in Kanada, aus diesen Delegationskonzepten im Laufe der Zeit Substitution (im Sinne der Verantwortungsübertragung an nichtärztliche Berufsgruppen) entwickelt, bleibt abzuwarten. Die Ergebnisse der Dissertation zeigen, dass es mit der gegenwärtigen Umsetzung der Delegation an VERAH zu einer Erweiterung des Leistungsspektrums in den Hausarztpraxen kommen kann; eine Ausweitung der Delegation sollte jedoch zeitnah vorangetrieben werden.
Background: Antiangiogenic treatment of glioblastomas with Bevacizumab lacks predictive markers. Myoinositol (MI) is an organic osmolyte, with intracellular concentration changes depending on the extracellular osmolality. Since Bevacizumab markedly reduces tumor edema and influences the tumor microenvironment, we investigated whether the MI concentration in the tumor changes during therapy.
Methods: We used 1H-magnetic resonance spectroscopy to measure the MI concentrations in the tumor and contralateral control tissue of 39 prospectively recruited patients with recurrent glioblastomas before and 8–12 weeks after starting therapy. 30 patients received Bevacizumab and 9 patients were treated with CCNU/VM26 as control. We performed a survival analysis to evaluate MI as a predictive biomarker for Bevacizumab therapy.
Results: MI concentrations increased significantly during Bevacizumab therapy in tumor (p < .001) and control tissue (p = .001), but not during CCNU/VM26 treatment. For the Bevacizumab cohort, higher MI concentrations in the control tissue at baseline (p = .021) and higher differences between control and tumor tissue (delta MI, p = .011) were associated with longer survival. A Kaplan-Meier analysis showed a median OS of 164 days for patients with a deltaMI < 1,817 mmol/l and 275 days for patients with a deltaMI > 1,817 mmol/l. No differences were observed for the relative changes or the post treatment concentrations. Additionally calculated creatine concentrations showed no differences in between subgroups or between pre and post treatment measurements.
Conclusion: Our data suggest that recurrent glioblastoma shows a strong metabolic reaction to Bevacizumab. Further, our results support the hypothesis that MI might be a marker for early tumor cell invasion. Pre-therapeutic MI concentrations are predictive of overall survival in patients with recurrent glioblastoma treated with Bevacizumab.
Myogenic vasoconstriction is an autoregulatory function of small arteries. Recently, G-protein-coupled receptors have been involved in myogenic vasoconstriction, but the downstream signalling mechanisms and the in-vivo-function of this myogenic autoregulation are poorly understood. Here, we show that small arteries from mice with smooth muscle-specific loss of G12/G13 or the Rho guanine nucleotide exchange factor ARHGEF12 have lost myogenic vasoconstriction. This defect was accompanied by loss of RhoA activation, while vessels showed normal increases in intracellular [Ca2+]. In the absence of myogenic vasoconstriction, perfusion of peripheral organs was increased, systemic vascular resistance was reduced and cardiac output and left ventricular mass were increased. In addition, animals with defective myogenic vasoconstriction showed aggravated hypotension in response to endotoxin. We conclude that G12/G13- and Rho-mediated signaling plays a key role in myogenic vasoconstriction and that myogenic tone is required to maintain local and systemic vascular resistance under physiological and pathological condition.
Myofacial Pain is the most common form of temporomandibular disorders (TMD), affecting principally women in reproductive age. The etiology of TMD is still controversial. Currently a multifactorial theory has received a great support among the scientific community. This theory draws attention to the interaction of psychological, neuromuscular and oral pathogenic factors. Objectives: to describe the possible etiological factors of the Myofacial Pain; and to evaluate the effectiveness of the current treatments for Myofacial Pain. Materials and methods: a narrative review of the etiological factors and epidemiological data of Myofacial Pain introduces this work. Thereafter the author presents five systematic reviews of RCTs which have been published during the last thirteen years (1999-2012) for the use of acupuncture, low level laser therapy, drugs, physiotherapeutical interventions, splint therapy, and psychosocial interventions in the treatment of Myofacial Pain. Moreover, the author reports a systematic review and meta-analysis of all the available literature of two modern approaches for the treatment of Myofacial Pain. A comparison between the “usual treatment” based on splint therapy and psychosocial interventions was conducted. Results: the author did not find sufficient evidence to support therapies based on one single intervention. However, the condition of the patients with myofacial pain could be treated more effectively with combined treatments. After comparing “usual treatment” with psychosocial interventions, the author observed a tendency of the latter to improve psychological outcomes, whereas the first one was slightly more effective to enhance clinical functional outcomes. In general, a high level of heterogeneity was observed among the included studies of the different systematic reviews. The quality of the studies is susceptible to be improved. Clinical implications: the author proposes core outcomes to be implemented within the research on myofacial pain in particular and temporomandibular disorders in general, in order to enable scientifical comparisons between different therapies.
A recent in-vivo experiment has shown that force can be transmitted between the gastrocnemius and the hamstring muscles due to a direct tissue continuity. However, it remains unclear if this mechanical interaction is affected by the stiffness of the structural connection. This study therefore aimed to investigate the impact of the knee angle on myofascial force transmission across the dorsal knee. A randomized, cross-over study was performed, including n = 56 healthy participants (25.36 ± 3.9 years, 25 females). On two separate days, they adopted a prone position on an isokinetic dynamometer (knee extended or 60° flexed). In each condition, the device moved the ankle three times from maximal plantarflexion to maximal dorsal extension. Muscle inactivity was ensured using EMG. High-resolution ultrasound videos of the semimembranosus (SM) and the gastrocnemius medialis (GM) soft tissue were recorded. Maximal horizontal tissue displacement, obtained using cross-correlation, was examined as a surrogate of force transmission. SM tissue displacement was higher at extended (4.83 ± 2.04 mm) than at flexed knees (3.81 ± 2.36 mm). Linear regression demonstrated significant associations between (1) SM and GM soft tissue displacement (extended: R2 = 0.18, p = 0.001; flexed: R2 = 0.17, p = 0.002) as well as (2) SM soft tissue displacement and ankle range of motion (extended: R2 = 0.103, p = 0.017; flexed: R2 = 0.095, p = 0.022). Our results further strengthen the evidence that local stretching induces a force transmission to neighboring muscles. Resulting remote exercise effects such as increased range of motion, seem to depend on the stiffness of the continuity.
Trial registration: DRKS (Deutsches Register Klinischer Studien), registration number DRKS00024420, first registered 08/02/2021, https://drks.de/search/de/trial/DRKS00024420.
Regular exercise has widespread health benefits. Fundamental to these beneficial effects is the ability of the heart to intermittently and substantially increase its performance without incurring damage, but the underlying homeostatic mechanisms are unclear. We identify the ROS-generating NADPH oxidase-4 (Nox4) as an essential regulator of exercise performance in mice. Myocardial Nox4 levels increase during acute exercise and trigger activation of the transcription factor Nrf2, with the induction of multiple endogenous antioxidants. Cardiomyocyte-specific Nox4-deficient (csNox4KO) mice display a loss of exercise-induced Nrf2 activation, cardiac oxidative stress and reduced exercise performance. Cardiomyocyte-specific Nrf2-deficient (csNrf2KO) mice exhibit similar compromised exercise capacity, with mitochondrial and cardiac dysfunction. Supplementation with an Nrf2 activator or a mitochondria-targeted antioxidant effectively restores cardiac performance and exercise capacity in csNox4KO and csNrf2KO mice respectively. The Nox4/Nrf2 axis therefore drives a hormetic response that is required for optimal cardiac mitochondrial and contractile function during physiological exercise.
Myocardial fibrosis and inflammation by CMR predict cardiovascular outcome in people living with HIV
(2021)
Objectives_: The goal of this study was to examine prognostic relationships between cardiac imaging measures and cardiovascular outcome in people living with human immunodeficiency virus (HIV) (PLWH) on highly active antiretroviral therapy (HAART).
Background: PLWH have a higher prevalence of cardiovascular disease and heart failure (HF) compared with the noninfected population. The pathophysiological drivers of myocardial dysfunction and worse cardiovascular outcome in HIV remain poorly understood.
Methods: This prospective observational longitudinal study included consecutive PLWH on long-term HAART undergoing cardiac magnetic resonance (CMR) examination for assessment of myocardial volumes and function, T1 and T2 mapping, perfusion, and scar. Time-to-event analysis was performed from the index CMR examination to the first single event per patient. The primary endpoint was an adjudicated adverse cardiovascular event (cardiovascular mortality, nonfatal acute coronary syndrome, an appropriate device discharge, or a documented HF hospitalization).
Results: A total of 156 participants (62% male; age [median, interquartile range]: 50 years [42 to 57 years]) were included. During a median follow-up of 13 months (9 to 19 months), 24 events were observed (4 HF deaths, 1 sudden cardiac death, 2 nonfatal acute myocardial infarction, 1 appropriate device discharge, and 16 HF hospitalizations). Patients with events had higher native T1 (median [interquartile range]: 1,149 ms [1,115 to 1,163 ms] vs. 1,110 ms [1,075 to 1,138 ms]); native T2 (40 ms [38 to 41 ms] vs. 37 ms [36 to 39 ms]); left ventricular (LV) mass index (65 g/m2 [49 to 77 g/m2] vs. 57 g/m2 [49 to 64 g/m2]), and N-terminal pro–B-type natriuretic peptide (109 pg/l [25 to 337 pg/l] vs. 48 pg/l [23 to 82 pg/l]) (all p < 0.05). In multivariable analyses, native T1 was independently predictive of adverse events (chi-square test, 15.9; p < 0.001; native T1 [10 ms] hazard ratio [95% confidence interval]: 1.20 [1.08 to 1.33]; p = 0.001), followed by a model that also included LV mass (chi-square test, 17.1; p < 0.001). Traditional cardiovascular risk scores were not predictive of the adverse events.
Conclusions: Our findings reveal important prognostic associations of diffuse myocardial fibrosis and LV remodeling in PLWH. These results may support development of personalized approaches to screening and early intervention to reduce the burden of HF in PLWH (International T1 Multicenter Outcome Study; NCT03749343).
Berufsmusiker haben durch spezifische körperliche und psychische Belastung ein erhöhtes Risiko im Laufe ihres Lebens an einer CMD zu erkranken.
Mehrere Stunden täglich nehmen vor allem Orchestermusiker eine sitzende Zwangshaltung ein und führen immer wieder die gleichen, einseitigen Bewegungsmuster durch. Leistungsdruck und Lampenfieber können zusätzlich zu Muskelverspannungen und Bruxismus führen. Beides hat direkte oder indirekte Auswirkungen auf das CMS. Einseitige sitzende Körperhaltung und Bewegung belasten den ganzen Bewegungsapparat. Bläser und Streicher üben zusätzlich Druck auf Zähne und Kiefer aus, indem sie beim Halten und Spielen ihres Instrumentes direkten Kontakt zum CMS herstellen. Unbewusstes Pressen und Knirschen mit den Zähnen belastet Kiefer und Kiefergelenk in hohem Maße.
Leider gibt es bisher nur wenig aussagekräftige Literatur, in der der eindeutige Zusammenhang zwischen dem Spielen eines Musikinstrumentes und der Entstehung einer CMD belegt wird. Um Prävention betreiben zu können und um bestehende Beschwerden behandeln zu können, ist es dringend notwendig, das Thema „Musiker und CMD“ eingehender zu untersuchen.
Im Rahmen der vorliegenden Arbeit wurden 32 Musiker des hr-Sinfonieorchesters befragt und untersucht. Die Musiker wurden zum Vergleich in zwei Gruppen eingeteilt. Gruppe 1 bestand aus hohen Streichern wie Geigern und Bratschern. Gruppe 2 bestand aus Bläsern und allen anderen möglichen Musikern des Orchesters. Es wurden mittels Abdrucknahme Modelle von Ober- und Unterkiefer hergestellt. Durch dreidi-mensionale Zuordnung der Kiefer in angenommener Zentrik und im Vergleich dazu in maximaler Interkuspidation wurde eine Kondylenpositionsanalyse durchgeführt. Die gesamte Gruppe der Musiker wurde mit einer Gruppe bestehend aus 48 gesunden jungen Nicht-Musikern im Alter zwischen 16 und 19 Jahren verglichen. Die Messdaten dieser Kontrollgruppe stammten aus der Habilitationsschrift „CMD bei Kindern und Jugendlichen“ (2004; Kopp, S.).
Es konnte festgestellt werden, dass die Position der Kondylen in den Kiefergelenken aller Musiker im Vergleich zur zentrischen Position verändert war, während dies bei der Kontrollgruppe nicht oder nur in geringem Umfang der Fall war. Die veränderte Position des Unterkiefers und seiner Gelenkenden stand im Zusammenhang mit einer veränderten Okklusion.
Daraus kann geschlossen werden, dass das langjährige, intensive Spielen eines Musikinstrumentes Auswirkungen auf Form und Stellung der Zähne sowie die Position der Kondylen im Kiefergelenk hat.
Die Veränderung fand auf der rechten und linken Seite in gleichem Maße statt. Eine Asymmetrie war also nicht festzustellen. Zudem stellte sich heraus, dass sich die Positionsänderung der Kondylen bei beiden Musikergruppen ähnlich darstellte. Angesichts der sehr unterschiedlichen, teils asymmetrischen Körperhaltungen ist dies erstaunlich. Im Schnitt fand bei allen Musikern eine Verlagerung der Kondylen nach kranial und dorsal statt.
Anhand der Ergebnisse kann die Schlussfolgerung gezogen werden, dass das intensive Spielen eines Musikinstrumentes das kraniomandibuläre System in hohem Maße belastet und zu langfristigen Veränderungen der beteiligten Strukturen führt. Die genaue Untersuchung der Ursachen sowie eine mögliche Beeinflussung des Wachstums von Musikern schon in jungem Alter als Grundlage für eine spätere CMD-Erkrankung sollten Gegenstand weiterer Studien sein.
Impaired alveolar formation and maintenance are features of many pulmonary diseases that are associated with significant morbidity and mortality. In a forward genetic screen for modulators of mouse lung development, we identified the non-muscle myosin II heavy chain gene, Myh10. Myh10 mutant pups exhibit cyanosis and respiratory distress, and die shortly after birth from differentiation defects in alveolar epithelium and mesenchyme. From omics analyses and follow up studies, we find decreased Thrombospondin expression accompanied with increased matrix metalloproteinase activity in both mutant lungs and cultured mutant fibroblasts, as well as disrupted extracellular matrix (ECM) remodeling. Loss of Myh10 specifically in mesenchymal cells results in ECM deposition defects and alveolar simplification. Notably, MYH10 expression is downregulated in the lung of emphysema patients. Altogether, our findings reveal critical roles for Myh10 in alveologenesis at least in part via the regulation of ECM remodeling, which may contribute to the pathogenesis of emphysema.
Myeloid-specific deletion of the AMPK2 subunit alters monocyte protein expression and atherogenesis
(2019)
The AMP-activated protein kinase (AMPK) is an energy sensing kinase that is activated by a drop in cellular ATP levels. Although several studies have addressed the role of the AMPKα1 subunit in monocytes and macrophages, little is known about the α2 subunit. The aim of this study was to assess the consequences of AMPKα2 deletion on protein expression in monocytes/macrophages, as well as on atherogenesis. A proteomics approach was applied to bone marrow derived monocytes from wild-type mice versus mice specifically lacking AMPKα2 in myeloid cells (AMPKα2∆MC mice). This revealed differentially expressed proteins, including methyltransferases. Indeed, AMPKα2 deletion in macrophages increased the ratio of S-adenosyl methionine to S-adenosyl homocysteine and increased global DNA cytosine methylation. Also, methylation of the vascular endothelial growth factor and matrix metalloproteinase-9 (MMP9) genes was increased in macrophages from AMPKα2∆MC mice, and correlated with their decreased expression. To link these findings with an in vivo phenotype, AMPKα2∆MC mice were crossed onto the ApoE-/- background and fed a western diet. ApoExAMPKα2∆MC mice developed smaller atherosclerotic plaques than their ApoExα2fl/fl littermates, that contained fewer macrophages and less MMP9 than plaques from ApoExα2fl/fl littermates. These results indicate that the AMPKα2 subunit in myeloid cells influences DNA methylation and thus protein expression and contributes to the development of atherosclerotic plaques.