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Der Kampf geht weiter : DFG verlängert Förderung für Forschung zu gefährlichem Krankenhauskeim
(2018)
Upregulations of neuronal nitric oxide synthase (nNOS/NOS1) in the mouse brain upon aging suggest a role in age-associated changes of protein homeostasis. We generated a cell model, in which constitutive expression of nNOS in SH-SY5Y cells at a level comparable to mouse brain replicates the aging phenotype i.e. slowing of cell proliferation, cell enlargement and expression of senescence markers. nNOS+ and MOCK cells were exposed to proteostasis stress by treatment with rapamycin or serum-free starvation. The proteomes were analyzed per SILAC or label-free using hybrid liquid chromatography/mass spectrometry (LC/MS). Full scan MS-data were acquired using Xcalibur, and raw mass spectra were analyzed using the proteomics software MaxQuant. The human reference proteome from uniprot was used as template to identify peptides and proteins and quantify protein expression. The DiB data file contains essential MaxQuant output tables and includes peptide and protein identification, accession numbers, protein and gene names, sequence coverage and quantification values of each sample. Differences in protein expression in MOCK versus nNOS+ SH-SY5Y cells and interpretation of results are presented in Valek et al. (2018). Raw mass spectra and MaxQuant output files have been deposited to the ProteomeXchange Consortium (Vizcaino et al., 2014) via the PRIDE partner repository with the dataset identifier PRIDE: PXD010538.
The increased susceptibility to infections of neonates is caused by an immaturity of the immune system as a result of both qualitative and quantitative differences between neonatal and adult immune cells. With respect to B cells, neonatal antibody responses are known to be decreased. Accountable for this is an altered composition of the neonatal B cell compartment towards more immature B cells. However, it remains unclear whether the functionality of individual neonatal B cell subsets is altered as well. In the current study we therefore compared phenotypical and functional characteristics of corresponding neonatal and adult B cell subpopulations. No phenotypic differences could be identified with the exception of higher IgM expression in neonatal B cells. Functional analysis revealed differences in proliferation, survival, and B cell receptor signaling. Most importantly, neonatal B cells showed severely impaired class-switch recombination (CSR) to IgG and IgA. This was associated with increased expression of miR-181b in neonatal B cells. Deficiency of miR-181b resulted in increased CSR. With this, our results highlight intrinsic differences that contribute to weaker B cell antibody responses in newborns.
Determining the age of juvenile blow flies is one of the key tasks of forensic entomology when providing evidence for the minimum post mortem interval. While the age determination of blow fly larvae is well established using morphological parameters, the current study focuses on molecular methods for estimating the age of blow flies during the metamorphosis in the pupal stage, which lasts about half the total juvenile development. It has already been demonstrated in several studies that the intraspecific variance in expression of so far used genes in blow flies is often too high to assign a certain expression level to a distinct age, leading to an inaccurate prediction. To overcome this problem, we previously identified new markers, which show a very sharp age dependent expression course during pupal development of the forensically-important blow fly Calliphora vicina Robineau–Desvoidy 1830 (Diptera: Calliphoridae) by analyzing massive parallel sequencing (MPS) generated transcriptome data. We initially designed and validated two quantitative polymerase chain reaction (qPCR) assays for each of 15 defined pupal ages representing a daily progress during the total pupal development if grown at 17 °C. We also investigated whether the performance of these assays is affected by the ambient temperature, when rearing pupae of C. vicina at three different constant temperatures—namely 17 °C, 20 °C and 25 °C. A temperature dependency of the performance could not be observed, except for one marker. Hence, for each of the defined development landmarks, we can present gene expression profiles of one to two markers defining the mentioned progress in development.
Hintergrund: Die digitale Transformation des Gesundheitssystems verändert den Beruf des Arztes. Data Literacy wird hierbei als eine der führenden Zukunftskompetenzen erachtet, findet jedoch derzeit weder in den implementierten Curricula des Medizinstudiums noch in den aktuell laufenden Reformprozessen (Masterplan Medizinstudium 2020 und Nationaler Kompetenzbasierter Lernzielkatalog) Beachtung.
Ziel: Der Beitrag möchte zum einen die Aspekte beleuchten, die im Begriff der Data Literacy im medizinischen Kontext gebündelt werden. Zum andern wird ein Lehrkonzept vorgestellt, das Data Literacy im Zeichen der digitalen Transformation erstmals im Medizinstudium abbildet.
Material und Methoden: Das Blended-Learning-Curriculum „Medizin im digitalen Zeitalter“ adressiert in 5 Modulen den diversen Transformationsprozess der Medizin von digitaler Kommunikation über Smart Devices und medizinische Apps, Telemedizin, virtuelle/augmentierte und robotische Chirurgie bis hin zu individualisierter Medizin und Big Data. Diese Arbeit stellt Konzept und Erfahrungen der erstmaligen Implementierung des 5. Moduls dar, welches transdisziplinär und integrativ den Aspekt Data Literacy erläutert.
Ergebnisse: Die Evaluation des Kurskonzepts erfolgte sowohl qualitativ als auch quantitativ und demonstriert einen Kompetenzgewinn in den Bereichen Wissen und Fertigkeiten sowie eine differenziertere Haltung nach Kursabschluss.
Schlussfolgerungen: Die curriculare Integration von Data Literacy ist eine transdisziplinäre und longitudinale Aufgabe. Bei der Entwicklung dieser Curricula sollten die hohe Geschwindigkeit des Veränderungsprozesses der digitalen Transformation beachtet und die curriculare Anpassung im Sinne eines Agility by Design bereits bei der Konzeption adressiert werden.
Einleitung: Um junge Medizinstudierende auf die stetig wachsenden Anforderungen eines Arztes klinisch, wissenschaftlich sowie psycho-sozial allumfassend und kompetent besser vorzubereiten, sollten Universitäten eine enge, persönliche Erfahrungs- und Wissensvermittlung ermöglichen. Strukturierte Mentorenprogramme als Lösungsmodell klinische Aufgabenfelder früher in die vorklinische Lehre einfließen zu lassen, um somit eine begleitete Priorisierung des breiten, theoretisch geprägten universitären Lehrstoffes zu erleichtern, stellen einen vielversprechenden Ansatzpunkt dar.
Hier berichten wir über die Erfahrungen und Ergebnisse des vorklinischen Mentorenprogrammes der Universität Bonn, welches zum Wintersemester 12/13 eingeführt wurde.
Projektbeschreibung: Das Programm zeichnet sich durch das Konzept des peer-to-peer-Teachings in den Semestern der Vorklinik im Rahmen eines humanmedizinischen Regelstudienganges aus. In regelmäßigen, freiwilligen Kurstreffen mit verschiedenen klinischen Fallbeispielen soll Studierenden die Möglichkeit geboten werden, erworbene Kenntnisse aus den curricularen Grundlagenfächern eigenständig anzuwenden, sowie einen Kontakt mit einem persönlichen Ansprechpartner für Ratschläge und Hilfestellung zu gewährleisten. Auf diese Weise wird ein ungezwungener Erfahrungsaustausch ermöglicht, der den Studierenden eine Motivations- und Lernhilfe bietet, insbesondere für die mündliche Physikumsprüfung sowie für weitere Prüfungen des Studiums.
Ergebnisse: Über die letzten drei Jahre konnte die Teilnehmerzahl und das Interesse am Programm stetig gesteigert werden. Die Auswertung der gesammelten Evaluationen bestätigt eine sehr gute Kommunikation zwischen Tutor und Studierenden (über 80%), sowie durchweg gute bis sehr gute Qualität und Nützlichkeit der fachlichen, als auch sonstigen Tipps der Mentoren. Eine abschließende Bewertung der Erwartungen an das Mentorenprogramm wurde insgesamt auf einer Schulnotenskala stets als gut bis sehr gut bewertet (Wintersemester: sehr gut 64.8±5.0%, gut 35.2±5.0%, Sommersemester: sehr gut 83.9±7.5%, gut 16.1±7.5%)
Zusammenfassung: Zusammenfassend hat sich gezeigt, dass sich das Mentorenprogramm positiv auf die Entwicklung, Ausbildung und Zufriedenheit der Studienanfänger in der Bonner Vorklinik auswirkt.
Danger signals in trauma
(2018)
This review summarizes a short list of currently discussed trauma-induced danger-associated molecular patterns (DAMP). Due to the bivalent character and often pleiotropic effects of a DAMP, it is difficult to describe its “friend or foe” role in post-traumatic inflammation and regeneration, both systemically as well locally in tissues. DAMP can be used as biomarkers to indicate or monitor disease or injury severity, but also may serve as clinically applicable parameters for better indication and timing of surgery. Due to the inflammatory processes at the local tissue level or the systemic level, the precise role of DAMP is not always clear to define. While in vitro and experimental studies allow for the detection of these biomarkers at the different levels of an organism—cellular, tissue, circulation—this is not always easily transferable to the human setting. Increased knowledge exploring the dual role of DAMP after trauma, and concentrating on their nuclear functions, transcriptional targets, release mechanisms, cellular sources, multiple functions, their interactions and potential therapeutic targeting is warranted.
Aim: Patients with advanced systolic chronic heart failure frequently suffer from progressive functional mitral regurgitation. We report our initial experience in patients with an implanted pulmonary artery pressure (PAP) sensor, who developed severe mitral regurgitation, which was treated with the MitraClip system. We non‐invasively compared changes in PAP values in patients after MitraClip with PAP changes in patients without MitraClip.
Methods and results: Among 28 patients with New York Heart Association III heart failure with implanted PAP sensor for haemodynamic telemonitoring from a single centre, four patients (age 66 ± 6 years, left ventricular ejection fraction 21 ± 3%, and cardiac index 1.8 ± 0.3) received a MitraClip procedure and were compared with 24 patients (age 72 ± 8 years, left ventricular ejection fraction 26 ± 9.9%, and cardiac index 2.0 ± 1.0) without MitraClip procedure in a descriptive manner. Ambulatory PAP values were followed for 90 days in both groups. In comparison with the PAP values 4 weeks before MitraClip procedure, PAP was profoundly reduced in all four patients after 30 days (ΔPAPmean −11 ± 5, ΔPAPdiast −7 ± 3 mmHg, P < 0.02) as well as after 90 days (ΔPAPmean −6.3 ± 6, ΔPAPdiast −1 ± 3 mmHg). Reductions in PAP were accompanied by a profound reduction in N terminal pro brain natriuretic peptide as well as clinical and echocardiographic improvement. When analysing the dynamics with a regression model, reductions in all PAP values were significantly greater after MitraClip compared with conservative haemodynamic monitoring (P < 0.001).
Conclusions: The efficacy of the interventional MitraClip procedure on clinical symptoms can be confirmed by haemodynamic telemonitoring. Thus, daily non‐invasive haemodynamic telemonitoring allows, for the first time, for a continuous assessment of the haemodynamic efficacy of novel therapies in patients with chronic heart failure.
Stress-induced cell surface expression of MHC class I-related glycoproteins of the MIC and ULBP families allows for immune recognition of dangerous “self cells” by human cytotoxic lymphocytes via the NKG2D receptor. With two MIC molecules (MICA and MICB) and six ULBP molecules (ULBP1–6), there are a total of eight human NKG2D ligands (NKG2DL). Since the discovery of the NKG2D–NKG2DL system, the cause for both redundancy and diversity of NKG2DL has been a major and ongoing matter of debate. NKG2DL diversity has been attributed, among others, to the selective pressure by viral immunoevasins, to diverse regulation of expression, to differential tissue expression as well as to variations in receptor interactions. Here, we critically review the current state of knowledge on the poorly studied human NKG2DL ULBP4. Summarizing available facts and previous studies, we picture ULBP4 as a peculiar ULBP family member distinct from other ULBP family members by various aspects. In addition, we provide novel experimental evidence suggesting that cellular processing gives rise to mature ULBP4 glycoproteins different to previous reports. Finally, we report on the proteolytic release of soluble ULBP4 and discuss these results in the light of known mechanisms for generation of soluble NKG2DL.
Mitochondrial complex I has a key role in cellular energy metabolism, generating a major portion of the proton motive force that drives aerobic ATP synthesis. The hydrophilic arm of the L-shaped ~1 MDa membrane protein complex transfers electrons from NADH to ubiquinone, providing the energy to drive proton pumping at distant sites in the membrane arm. The critical steps of energy conversion are associated with the redox chemistry of ubiquinone. We report the cryo-EM structure of complete mitochondrial complex I from the aerobic yeast Yarrowia lipolytica both in the deactive form and after capturing the enzyme during steady-state activity. The site of ubiquinone binding observed during turnover supports a two-state stabilization change mechanism for complex I.