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Hintergrund: Das genaue Wissen um die Umstände eines jeden tödlichen Arbeitsunfalls ist Voraussetzung für die Identifizierung von Unfallschwerpunkten und ermöglicht eine effektive Präventionsarbeit. Mit dieser rechtsmedizinischen Studie zum Arbeitsunfallgeschehen soll ein Beitrag dazu geleistet werden, die Zahl tödlicher Arbeitsunfälle in Deutschland zu senken.
Material und Methode: Zur Untersuchung kamen die tödlichen Arbeitsunfälle, die sich im Einzugsbereich des rechtsmedizinischen Instituts Frankfurt am Main in den Jahren von 2005 bis 2016 ereigneten. Ausgewertet wurden Obduktionsprotokolle sowie die dem Institut zur Verfügung gestellten Staatsanwaltschaftlichen Ermittlungsakten.
Ergebnisse. Es fanden sich 87 tödliche Arbeitsunfälle in dem genannten Zwölfjahreszeitraum. Die Altersstruktur reichte vom jugendlichen Alter bis in das Rentenalter. Betroffen waren zum größten Teil männliche Arbeiter (96,6%, p< 0,0001), verhältnismäßig häufig ausländischer Nationalit.t (34,5%). Die meisten Unfälle ereigneten sich in der 2. Jahreshälfte (58,6%), an Montagen (26,4%), kurz vor und nach der Mittagspause. In 3 Fällen lag die Blutalkoholkonzentration über 0,5‰. Die Baubranche (55,2%) war der unfallträchtigste Wirtschaftszweig. Der Absturz (28,7%) war der häufigste
Unfallmechanismus und das Polytrauma (39,1%) gemeinsam mit dem Schädel-Hirn-Trauma (24,1%) gemäß dem ISS die häufigste Todesursache.
Diskussion: Nach den Ergebnissen dieser Studie sollten Alter der Arbeiter sowie die Tages-, Wochen- und Jahreszeit bei der Ausführung risikoreicher Arbeiten im Baugewerbe berücksichtigt werden. Besonderes Augenmerk sollten Arbeitgeber auf die Kontrolle von Sicherheitsvorkehrungen bei Arbeiten in der Höhe sowie auf die Durchsetzung der Helmpflicht gerade auch bei ausländischen Arbeitnehmern legen.
Tumor–endothelial cell interactions represent an essential mechanism in spinal metastasis. Ephrin-B2–EphB4 communication induces tumor cell repulsion from the endothelium in metastatic melanoma, reducing spinal bone metastasis formation. To shed further light on the Ephrin-B2–EphB4 signaling mechanism, we researched the effects of pharmacological EphB4 receptor stimulation and inhibition in a ligand-dependent/independent context. We chose a preventative and a post-diagnostic therapeutic window. EphB4 stimulation during tumor cell seeding led to an increase in spinal metastatic loci and number of disseminated melanoma cells, as well as earlier locomotion deficits in the presence of endothelial Ephrin-B2. In the absence of endothelial Ephrin-B2, reduction of metastatic loci with a later manifestation of locomotion deficits occurred. Thus, EphB4 receptor stimulation affects metastatic dissemination depending on the presence/absence of endothelial Ephrin-B2. After the manifestation of solid metastasis, EphB4 kinase inhibition resulted in significantly earlier manifestation of locomotion deficits in the presence of the ligand. No post-diagnostic treatment effect was found in the absence of endothelial Ephrin-B2. For solid metastasis treatment, EphB4 kinase inhibition induced prometastatic effects in the presence of endothelial Ephrin-B2. In the absence of endothelial Ephrin-B2, both therapies showed no effect on the growth of solid metastasis.
Humans on earth inhabit a wide range of environmental conditions and some environments are more challenging for human survival than others. However, many living beings, including humans, have developed adaptive mechanisms to live in such inhospitable, harsh environments. Among different difficult environments, high-altitude living is especially demanding because of diminished partial pressure of oxygen and resulting chronic hypobaric hypoxia. This results in poor blood oxygenation and reduces aerobic oxidative respiration in the mitochondria, leading to increased reactive oxygen species generation and activation of hypoxia-inducible gene expression. Genetic mechanisms in the adaptation to high altitude is well-studied, but there are only limited studies regarding the role of epigenetic mechanisms. The purpose of this review is to understand the epigenetic mechanisms behind high-altitude adaptive and maladaptive phenotypes. Hypobaric hypoxia is a form of cellular hypoxia, which is similar to the one suffered by critically-ill hypoxemia patients. Thus, understanding the adaptive epigenetic signals operating in in high-altitude adjusted indigenous populations may help in therapeutically modulating signaling pathways in hypoxemia patients by copying the most successful epigenotype. In addition, we have summarized the current information about exosomes in hypoxia research and prospects to use them as diagnostic tools to study the epigenome of high-altitude adapted healthy or maladapted individuals.
Famotidine inhibits toll-like receptor 3-mediated inflammatory signaling in SARS-CoV-2 infection
(2021)
Apart from prevention using vaccinations, the management options for COVID-19 remain limited. In retrospective cohort studies, use of famotidine, a specific oral H2 receptor antagonist (antihistamine), has been associated with reduced risk of intubation and death in patients hospitalized with COVID-19. In a case series, nonhospitalized patients with COVID-19 experienced rapid symptom resolution after taking famotidine, but the molecular basis of these observations remains elusive. Here we show using biochemical, cellular, and functional assays that famotidine has no effect on viral replication or viral protease activity. However, famotidine can affect histamine-induced signaling processes in infected Caco2 cells. Specifically, famotidine treatment inhibits histamine-induced expression of Toll-like receptor 3 (TLR3) in SARS-CoV-2 infected cells and can reduce TLR3-dependent signaling processes that culminate in activation of IRF3 and the NF-κB pathway, subsequently controlling antiviral and inflammatory responses. SARS-CoV-2-infected cells treated with famotidine demonstrate reduced expression levels of the inflammatory mediators CCL-2 and IL6, drivers of the cytokine release syndrome that precipitates poor outcome for patients with COVID-19. Given that pharmacokinetic studies indicate that famotidine can reach concentrations in blood that suffice to antagonize histamine H2 receptors expressed in mast cells, neutrophils, and eosinophils, these observations explain how famotidine may contribute to the reduced histamine-induced inflammation and cytokine release, thereby improving the outcome for patients with COVID-19.
Background: Transition metals play a crucial role in brain metabolism: since they exist in different oxidation states they are involved in ROS generation, but they are also co-factors of enzymes in cellular energy metabolism or oxidative defense. Methods: Paired serum and cerebrospinal fluid (CSF) samples were analyzed for iron, zinc, copper and manganese as well as for speciation using SEC-ICP-DRC-MS. Brain extracts from Mn-exposed rats were additionally analyzed with SEC-ICP-DRC-MS. Results: The concentration patterns of transition metal size fractions were correlated between serum and CSF: Total element concentrations were significantly lower in CSF. Fe-ferritin was decreased in CSF whereas a LMW Fe fraction was relatively increased. The 400–600 kDa Zn fraction and the Cu-ceruloplasmin fraction were decreased in CSF, by contrast the 40–80 kDa fraction, containing Cu- and Zn-albumin, relatively increased. For manganese, the α-2-macroglobulin fraction showed significantly lower concentration in CSF, whereas the citrate Mn fraction was enriched. Results from the rat brain extracts supported the findings from human paired serum and CSF samples. Conclusions: Transition metals are strictly controlled at neural barriers (NB) of neurologic healthy patients. High molecular weight species are down-concentrated along NB, however, the Mn-citrate fraction seems to be less controlled, which may be problematic under environmental load.
[Nachruf] Helmut Siefert
(2012)
Wolfgang Schlote : 80 Jahre
(2012)
Das Institut für Medizinische Virologie, untergebracht in dem 100 Jahre alten Gebäude des ehemaligen Frankfurter Gesundheitsamtes direkt neben dem Georg-Speyer-Haus, ist eine wunderbare Kombination von Funktionalität und Schönheit. Von der geschwungenen Holztreppe des historischen Treppenhauses geht der Blick immer wieder in hochmoderne biomedizinische Laboratorien, gesichert hinter dicken Glastüren – ein Blick in eine futuristisch anmutende Welt.
Hausherr ist hier seit April 2012 der mehrfach ausgezeichnete HIV/AIDS-Experte Professor Oliver T. Keppler. Unter seiner Leitung ist das Institut umgehend mit Wirkung zum 1. Oktober 2012 vom Präsidenten des Robert-Koch-Instituts zum „Nationalen Referenzzentrum für Retroviren“ berufen worden. Mit Retroviren sind zu 95 Prozent HI-Viren (Humanes Immundefizienz-Virus) gemeint – die restlichen fünf Prozent umfassen die HTL-Viren (Humanes T-lymphotropes-Virus), mit denen weltweit etwa 20 Millionen Menschen infiziert sind, das jedoch kaum in Deutschland vorkommt. Das Institut ist damit das deutsche Referenzlabor für die Routine- und Spezialdiagnostik von Retroviren, Schwerpunkt HIV-Infektionen, sowie für Stellungnahmen zu Fragen der Krankheitsentstehung und Behandlung.