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The role and timing of radiotherapy (RT) in prostate cancer (PCa) patients treated with radical prostatectomy (RP) remains controversial. While recent trials support the oncological safety of early salvage RT (SRT) compared to adjuvant RT (ART) in selected patients, previous randomized studies demonstrated that ART might improve recurrence-free survival in patients at high risk for local recurrence based on adverse pathology. Although ART might improve survival, this approach is characterized by a risk of overtreatment in up to 40% of cases. SRT is defined as the administration of RT to the prostatic bed and to the surrounding tissues in the patient with PSA recurrence after surgery but no evidence of distant metastatic disease. The delivery of salvage therapies exclusively in men who experience biochemical recurrence (BCR) has the potential advantage of reducing the risk of side effects without theoretically compromising outcomes. However, how to select patients at risk of progression who are more likely to benefit from a more aggressive treatment after RP, the exact timing of RT after RP, and the use of hormone therapy and its duration at the time of RT are still open issues. Moreover, what the role of novel imaging techniques and genomic classifiers are in identifying the most optimal post-operative management of PCa patients treated with RP is yet to be clarified. This narrative review summarizes most relevant published data to guide a multidisciplinary team in selecting appropriate candidates for post-prostatectomy radiation therapy.
Focal therapy is a modern alternative to selectively treat a specific part of the prostate harboring clinically significant disease while preserving the rest of the gland. The aim of this therapeutic approach is to retain the oncological benefit of active treatment and to minimize the side-effects of common radical treatments. The oncological effectiveness of focal therapy is yet to be proven in long-term robust trials. In contrast, the toxicity profile is well-established in randomized controlled trials and multiple robust prospective cohort studies. This narrative review summarizes the relevant evidence on complications and their management after focal therapy. When compared to whole gland treatments, focal therapy provides a substantial benefit in terms of adverse events reduction and preservation of genito-urinary function. The most common complications occur in the peri-operative period. Urinary tract infection and acute urinary retention can occur in up to 17% of patients, while dysuria and haematuria are more common. Urinary incontinence following focal therapy is very rare (0–5%), and the vast majority of patients recover in few weeks. Erectile dysfunction can occur after focal therapy in 0–46%: the baseline function and the ablation template are the most important factors predicting post-operative erectile dysfunction. Focal therapy in the salvage setting after external beam radiotherapy has a significantly higher rate of complications. Up to one man in 10 will present a severe complication.
The identification of unknown bodies is the fulfilment of a moral obligation towards the deceased, serves to maintain legal security within a society, and gives families the certainty they need to mourn. Taking into account respective local conditions, the aim should always be to achieve a secure and quick identification. To achieve this goal, a functioning cooperation between investigating authorities and forensic sciences is essential. The main objective of this study was to clarify the potential role of tattoos in the identification process of unknown deceased persons in the state of Jalisco, Mexico. Post-mortem data of 2045 bodies from the Instituto Jaliscience de Ciencias Forenses in Guadalajara were evaluated. Of the deceased 46% were tattooed (male: 47%, female: 39%), with 29% of all bodies (male: 29%, female: 26%) showing tattoos at body locations usually visible in everyday life (i.e. head and neck, forearms and hands). The male bodies were most frequently tattooed on the shoulders and upper arms, followed by the forearms and hands and the torso. Female bodies mostly showed tattoos on the forearms and hands, followed by the torso and legs. Taking local tattooing habits into account, the authors developed a classification for tattoo motives. With decreasing frequency, the following keywords could be assigned to the motives: letters and/or numbers, human, symbol (other), plant, symbol (religious), animal, object, tribal/ornament/geometry, fantasy/demon/comic, other. Results of the study indicate the great importance of tattoos as a possible mean of identification in Jalisco, Mexico – either as a stand-alone identification method, as a complementary tool or for planning and prioritizing subsequent investigations.
Akzidentielle Injektion eines unbekannten Notfallantidots zur Acetylcholinesteraseaktivierung
(2021)
In the current dismal situation of the COVID-19 pandemic, effective management of patients with pneumonia and acute respiratory distress syndrome is of vital importance. Due to the current lack of effective pharmacological concepts, this situation has caused interest in (re)considering historical reports on the treatment of patients with low-dose radiation therapy for pneumonia. Although these historical reports are of low-level evidence per se, hampering recommendations for decision-making in the clinical setting, they indicate effectiveness in the dose range between 0.3 and 1 Gy, similar to more recent dose concepts in the treatment of acute and chronic inflammatory/degenerative benign diseases with, e.g., a single dose per fraction of 0.5 Gy. This concise review aims to critically review the evidence for low-dose radiation treatment of COVID-19 pneumopathy and discuss whether it is worth investigating in the present clinical situation.
Aims: SARS-CoV-2 infection is associated with adverse outcomes in patients with cardiovascular disease. Here, we analyzed whether specific biomarkers predict the clinical course of COVID-19 in patients with cardiovascular comorbidities. Methods and results: We enrolled 2147 patients with SARS-CoV-2 infection which were included in the Lean European Open Survey on SARS-CoV‑2 (LEOSS)-registry from March to June 2020. Clinical data and laboratory values were collected and compared between patients with and without cardiovascular comorbidities in different clinical stages of the disease. Predictors for mortality were calculated using multivariate regression analysis. We show that patients with cardiovascular comorbidities display significantly higher markers of myocardial injury and thrombo-inflammatory activation already in the uncomplicated phase of COVID-19. In multivariate analysis, elevated levels of troponin [OR 1.54; (95% CI 1.22–1.96), p < 0.001)], IL-6 [OR 1.69 (95% CI 1.26–2.27), p < 0.013)], and CRP [OR 1.32; (95% CI 1.1–1.58), p < 0.003)] were predictors of mortality in patients with COVID-19. Conclusion: Patients with cardiovascular comorbidities show elevated markers of thrombo-inflammatory activation and myocardial injury, which predict mortality, already in the uncomplicated phase of COVID-19. Starting targeted anti-inflammatory therapy and aggressive anticoagulation already in the uncomplicated phase of the disease might improve outcomes after SARS-CoV-2 infection in patients with cardiovascular comorbidities.
Background: The high-oblique sagittal osteotomy (HOSO) is an alternative to a bilateral sagittal split osteotomy (BSSO). Due to its novelty, there are no long-term studies which have focused on describing the incidence and type of complications encountered in the post-operative follow-up. The aim of this retrospective study is to analyze patients operated on with this surgical technique and the post-operative complications encountered. Patient and methods: The electronic medical records of all patients treated with orthognathic surgery at the Department of Oral, Maxillofacial and Facial Plastic Surgery, University Hospital Frankfurt, Goethe University, Frankfurt, Germany, between the years 2009 and 2016 were retrospectively reviewed. Results: A total of 116 patients fulfilled the inclusion criteria. The cases operated on with the standard osteosynthesis (X, Y, and straight) showed a complication rate of 36.37% (n = 4/11). The cases operated on with the HOSO-dedicated plates (HOSO-DP) showed, in total, a complication rate of 6.67% (n = 7/105). The most common post-operative complication resulting from both fixation methods was a reduction in mouth opening and TMJ pain for 4.3%. During the first years of performing the surgery (2009–211), a variety of standard plates had material failure causing non-union or pseudarthrosis. No cases of material failure were observed in the cases operated on with the HOSO-DP. The statistical results showed a highly significant dependence of a reduction in OP-time over the years, when the HOSO was performed without additional procedures (R2 > 0.83, P < 0.0015). Conclusion: The rate of complications in the HOSO were shown to be comparable to the rate of complications from the BSSO reported in the literature. Moreover, the use of the ramus dedicated plate appears to provide enough stability to the bone segments, making the surgery safer. Clinical relevance: The HOSO needs to be considered by surgeons as an alternative to BSSO. Once the use of the HOSO-DP was established, the rate of complications and the operation time reduced considerably.
Ventrikulitis bezeichnet eine Infektion der inneren Liquorräume des Gehirns. Sie tritt gehäuft nach neurochirurgischen Eingriffen, wie z.B. der Anlage einer EVD oder eines VP-Shunts auf, da die Fremdkörper als Eintrittspforten für Bakterien dienen können. Zur Therapie der Ventrikulitis werden am Universitätsklinikum Frankfurt nach hausinternem Standard Meropenem und Vancomycin verwendet. Bei beiden Antibiotika ist für die Therapie von entscheidender Bedeutung, dass ihre Wirkstoffkonzentration über einen möglichst langen Zeitraum oberhalb der MHK liegt. Bei der Ventrikulitis ist insbesondere die Wirkstoffkonzentration im Liquor ausschlaggebend. Problematisch ist bei der Therapie, dass die verabreichten Antibiotika die Blut-Hirn-Schranke überwinden müssen. Diese ist im Normalfall für Medikamente schwer durchlässig, allerdings kann ihre Barrierefunktion durch Infektionen abgeschwächt sein. Zur Therapie der Ventrikulitis wurden als Standard im Universitätsklinikum Frankfurt am Main bislang 3x2g Meropenem und 2x1g Vancomycin täglich als diskontinuierlicher, verlängerter Bolus verabreicht.
In einer Studie von Blassmann et al.191 zeigte sich, dass sich durch dieses Dosisregime nur in etwa der Hälfte der Fälle eine ausreichende Wirkstoffkonzentration im Liquor einstellte. Daraus ergab sich die Fragestellung, ob durch kontinuierliche TDM-gesteuerte Gabe von Meropenem und Vancomycin (wie sie seit 2016 in der Neurochirurgie des Universitätsklinikums Frankfurt angewandt wird) höhere Liquorspiegel zu erreichen sind, und ob sich Nomogramme für die Eindosierung und Dosisanpassung für Parameter, wie die Kreatinin-Clearance, erstellen lassen.
Um der Fragestellung auf den Grund zu gehen, wurden neun Patienten, die an Ventrikulitis erkrankt waren und mit diesem Dosisregime behandelt wurden, in diese Studie eingeschlossen. Hauptzielgrößen waren die Serum- und Liquorkonzentration von Meropenem und Vancomycin. Darüber hinaus wurden vor allem Entzündungsparameter und Nierenfunktionsparameter erfasst. Für die Eindosierung wurden modifizierte Nomogramme einer Studie verwendet, in der Sepsis-Patienten mittels kontinuierlicher Infusion von Meropenem und Vancomycin behandelt wurden.
Die entnommenen Serum- und Liquorproben wurden an die Apotheke des Klinikums Heidenheim versendet und dort analysiert. Jeweils 24 Stunden nach den Messungen erfolgten notwendige Dosisanpassungen, während weitere 24 Stunden später erneut gemessen wurde.
Die Auswertung der Ergebnisse ergab, dass die verwendeten Dosierungen deutlich über den bisherigen Standarddosierungen beider Medikamente lagen. Die resultierenden Wirkstoffkonzentrationen im Serum und im Liquor befanden sich fast ausschließlich innerhalb des angestrebten Intervalls. Die Entzündungsparameter nahmen im Verlauf ab, während die Nierenfunktionsparameter konstant blieben, oder sich trotz hoher Dosierung von Vancomycin sogar verbessert haben.
Die Simulation des Modells ergab zunächst eine Diskrepanz zwischen gemessenen und simulierten Werten. Nach einer Parameteranpassung gelang es, das Verhalten der Meropenemkonzentrationen in dem untersuchten Dosisregime besser zu simulieren, während bei Vancomycin weiterhin Abweichungen bestehen blieben. Mit den neu geschätzten Parametern wurde für Meropenem eine neue Simulation durchgeführt, um die Dosis zu optimieren. Außerdem wurde der Zusammenhang zwischen der Meropenem- und der Kreatinin-Clearance überprüft. Im letzten Schritt wurden aus der optimierten Dosis und der initialen bzw. mittleren Kreatinin-Clearance Nomogramme erstellt, wobei die optimierte Dosis in zwei Nomogrammen auch auf das Körpergewicht des jeweiligen Patienten bezogen wurde. Daraus ergaben sich schließlich die Nomogramme für die Eindosierung und Dosisanpassung für Meropenem.
Als Fazit lässt sich in Bezug auf die Eingangsfrage festhalten, dass durch kontinuierliche TDM-gesteuerte Gabe von Meropenem und Vancomycin viel zuverlässiger wirksame Liquorspiegel dieser Medikamente zu erreichen sind als mit der bisherigen Standarddosierung. Außerdem konnten für Meropenem Nomogramme für die Eindosierung und Dosisanpassung erstellt werden, während die fehlende Korrelation der Vancomycinwerte mit der Kreatinin-Clearance dies nicht zuließ. Für Vancomycin muss daher eine mindestens tägliche Konzentrationsmessung empfohlen werden.
Grundsätzlich bleibt aber festzuhalten, dass durch die kontinuierliche TDM-gesteuerte Gabe viel zuverlässiger wirksame Liquorkonzentrationen der beiden Antibiotika erreicht werden konnten, verglichen mit der diskontinuierlichen Gabe.
Systemic lupus erythematosus (SLE) is a severe autoimmune disease of unknown etiology. The major histocompatibility complex (MHC) class I-related chain A (MICA) and B (MICB) are stress-inducible cell surface molecules. MICA and MICB label malfunctioning cells for their recognition by cytotoxic lymphocytes such as natural killer (NK) cells. Alterations in this recognition have been found in SLE. MICA/MICB can be shed from the cell surface, subsequently acting either as a soluble decoy receptor (sMICA/sMICB) or in CD4+ T-cell expansion. Conversely, NK cells are frequently defective in SLE and lower NK cell numbers have been reported in patients with active SLE. However, these cells are also thought to exert regulatory functions and to prevent autoimmunity. We therefore investigated whether, and how, plasma membrane and soluble MICA/B are modulated in SLE and whether they influence NK cell activity, in order to better understand how MICA/B may participate in disease development. We report significantly elevated concentrations of circulating sMICA/B in SLE patients compared with healthy individuals or a control patient group. In SLE patients, sMICA concentrations were significantly higher in patients positive for anti-SSB and anti-RNP autoantibodies. In order to study the mechanism and the potential source of sMICA, we analyzed circulating sMICA concentration in Behcet patients before and after interferon (IFN)-α therapy: no modulation was observed, suggesting that IFN-α is not intrinsically crucial for sMICA release in vivo. We also show that monocytes and neutrophils stimulated in vitro with cytokines or extracellular chromatin up-regulate plasma membrane MICA expression, without releasing sMICA. Importantly, in peripheral blood mononuclear cells from healthy individuals stimulated in vitro by cell-free chromatin, NK cells up-regulate CD69 and CD107 in a monocyte-dependent manner and at least partly via MICA-NKG2D interaction, whereas NK cells were exhausted in SLE patients. In conclusion, sMICA concentrations are elevated in SLE patients, whereas plasma membrane MICA is up-regulated in response to some lupus stimuli and triggers NK cell activation. Those results suggest the requirement for a tight control in vivo and highlight the complex role of the MICA/sMICA system in SLE.
Molecular surveillance of carbapenem-resistant gram-negative bacteria in liver transplant candidates
(2021)
Background: Carbapenem-resistant Gram-negative bacteria (CRGN) cause life-threatening infections due to limited antimicrobial treatment options. The occurrence of CRGN is often linked to hospitalization and antimicrobial treatment but remains incompletely understood. CRGN are common in patients with severe illness (e.g., liver transplantation patients). Using whole-genome sequencing (WGS), we aimed to elucidate the evolution of CRGN in this vulnerable cohort and to reconstruct potential transmission routes.
Methods: From 351 patients evaluated for liver transplantation, 18 CRGN isolates (from 17 patients) were analyzed. Using WGS and bioinformatic analysis, genotypes and phylogenetic relationships were explored. Potential epidemiological links were assessed by analysis of patient charts.
Results: Carbapenem-resistant (CR) Klebsiella pneumoniae (n=9) and CR Pseudomonas aeruginosa (n=7) were the predominating pathogens. In silico analysis revealed that 14/18 CRGN did not harbor carbapenemase-coding genes, whereas in 4/18 CRGN, carbapenemases (VIM-1, VIM-2, OXA-232, and OXA-72) were detected. Among all isolates, there was no evidence of plasmid transfer-mediated carbapenem resistance. A close phylogenetic relatedness was found for three K. pneumoniae isolates. Although no epidemiological context was comprehensible for the CRGN isolates, evidence was found that the isolates resulted of a transmission of a carbapenem-susceptible ancestor before individual radiation into CRGN.
Conclusion: The integrative epidemiological study reveals a high diversity of CRGN in liver cirrhosis patients. Mutation of carbapenem-susceptible ancestors appears to be the dominant way of CR acquisition rather than in-hospital transmission of CRGN or carbapenemase-encoding genetic elements. This study underlines the need to avoid transmission of carbapenem-susceptible ancestors in vulnerable patient cohorts.
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.