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This research project investigated how motor activity, such as cycling, influences the acquisition of foreign language vocabulary under two distinct conditions of auditory-motor-synchronisation. In a mixed subject design, 48 participants had to learn 40 Polish-German vocabulary pairs by auditory presentation over headphones in two different conditions, in which they performed motor activity cycling on a bicycle ergometer: in experiment 1, vocabulary was presented in a fixed rhythm while in experiment 2, participants self-initiated the presentation of vocabulary through pedalling. After having listened to the word pairs, they had to perform online vocabulary tests, one directly after the learning session and a second one 24 hours later from home. Additionally, the individual pitch perception preference (i.e. fundamental vs. spectral pitch perception) of the participants was determined.
The results showed that fundamental listeners forgot significantly more vocabulary than spectral listeners during the fixed than during the self-initiated condition. There was no difference within the groups for the self-initiated condition. The analysis of the motor data revealed a significantly more accurate synchronisation for fundamental listeners during the fixed condition. Therefore, this study provides first evidence for the benefit of self-initiated auditory-motor synchronisation in the process of learning a foreign language in adults. It also reveals that pitch preference has an effect on auditory-motor synchronisation.
Einleitung: Das Arbeiten in einer Notfallsituation ist stark von einer strukturierten Herangehensweise im Patientenmanagement abhängig. Junge Assistenzärzte sind in ihrem Alltag häufig die ersten vor Ort und sollten daher bereits mit Abschluss des Studiums in der Lage sein, häufige Notfallsituationen zu meistern. In den letzten Jahren hat sich die Simulation als hauptsächlich genutzte Methode für die Ausbildung im Fach Notfallmedizin herauskristallisiert, sodass immer mehr Universitäten realitätsnahe Szenarien für die Ausbildung nutzen. Jedoch ist unklar welches Ausmaß an Realitätsnähe in Hinblick auf Kosten/Aufwand-Nutzen-Bilanz sinnvoll ist. Das Ziel der vorliegenden Arbeit ist es, den Effekt von zwei unterschiedlich realitätsnahen Lernumgebungen (Seminarraum vs. realistische Simulationsumgebung) auf die erlernten notfallmedizinischen Kompetenzen zu analysieren. Dazu wurden Krankheitsbilder gewählt, die jedem Arzt in Präklinik, auf Station und im ambulanten Bereich begegnen können und die zügig erkannt und behandelt werden müssen: Asthma, Sepsis und Apoplex.
Material und Methoden: Bei der vorliegenden Arbeit handelt es sich um eine vergleichende Effektivitätsanalyse im crossover-Design. Teilnehmende waren Studierende des 4. Studienjahres der Goethe-Universität Frankfurt am Main, die den 3-TagesNotfallmedizinkurs im Rahmen ihrer curricularen Ausbildung im Querschnittsbereich Notfallmedizin absolvierten. Am ersten Tag durchliefen alle Studierenden ein standardisiertes Skillstraining notfallmedizinischer Basiskompetenzen. An den Folgetagen wurden verschiedene leitsymptombasierte Module vermittelt, die neben der interaktiven Erarbeitung der theoretischen Lerninhalte eine direkte Anwendung in themenspezifischen Szenarien fokussierten. Für die vorliegende Studie wurden die Teilnehmenden in vier Gruppen randomisiert, wobei Gruppen eins und zwei das Training in der Seminarraumumgebung durchliefen, während drei und vier die Szenarien in der realitätsnahen Simulationsumgebung absolvierten. Am dritten Tag fand eine formative Überprüfung der erlernten Fähigkeiten in Form eines OSCEs statt. Bei dieser Überprüfung absolvierten die Gruppen eins und drei in der Seminarraumumgebung und Gruppen zwei und vier im realitätsnahen Umfeld der Simulation das Assessment. Die Datenauswertung erfolgte mit MS Excel und bias.
Ergebnisse und Fazit: Die vorliegende Studie fand zwischen Juli und Oktober 2018 an der Goethe-Universität in Frankfurt am Main statt. 134 Teilnehmer absolvierten die Studie vollständig. Die Ergebnisse zeigen deutliche Unterschiede in der Performance der vier Gruppen, sowohl insgesamt als auch nach Geschlechtern und mit dem van-Elteren-Test. Prozentual betrachtet zeigten die Teilnehmenden der Gruppe 4 (Training und Prüfung im realitätsnahen Umfeld) die höchsten Ergebnisse. Die Realitätsnähe hat einen positiven Einfluss auf die Performance der Studierenden.
Iron deficiency (ID) is a common manifestation of inflammatory bowel disease (IBD), arising primarily due to chronic inflammation and/or blood loss. There is no gold standard for ID diagnosis, which is often complicated by concomitant inflammation. Zinc protoporphyrin (ZnPP) correlates with parameters of iron homeostasis and has been identified as a promising marker for ID, irrespective of inflammation. We investigated the diagnostic performance of ZnPP in ID, iron deficiency anemia, anemia of chronic disease and mixed anemia in a cross-sectional study in 130 patients with IBD. Different parameters were compared by receiver operator characteristic (ROC) analysis as detectors of iron-restricted erythropoiesis (IRE). IRE was detected in 91 patients (70.0%); fifty-nine (64.8%) had absolute ID and 23 (25.4%) functional ID. When inflammation was present, ZnPP was a more reliable sole biomarker of IRE than MCV, transferrin saturation (TSAT) or ferritin (AUC; 0.855 vs. 0.763, 0.834% and 0.772, respectively). The specificity of TSAT was significantly lower than ZnPP when inflammation was present (38% vs. 71%, respectively). We conclude that ZnPP is a reliable biomarker of functional ID in patients with IBD and more dependable than ferritin or TSAT, which are influenced by chronic inflammation. We propose that ZnPP may also have utility in patients with other chronic diseases.
Zellen außer Balance : neue Therapieansätze für komplexe Krankheiten – das Clusterprojekt ENABLE
(2021)
Marmor, Stein, Eisen, Müll, Haare, Staub… es gibt kaum ein Material, das Peter Buggenhout in seinen hybriden Arbeiten nicht verarbeitet. Das Kunstmuseum Reutlingen / konkret gibt in seiner umfassenden Überblicksausstellung „Peter Buggenhout: nicht geheuer“ einen Einblick in bisherige Arbeiten des belgischen Bildhauers.
Z-boson production in p–Pb collisions at √sNN = 8.16 TeV and Pb–Pb collisions at √sNN = 5.02 TeV
(2021)
Measurement of Z-boson production in p-Pb collisions at sNN−−−√=8.16 TeV and Pb-Pb collisions at sNN−−−√=5.02 TeV is reported. It is performed in the dimuon decay channel, through the detection of muons with pseudorapidity −4<ημ<−2.5 and transverse momentum pμT>20 GeV/c in the laboratory frame. The invariant yield and nuclear modification factor are measured for opposite-sign dimuons with invariant mass 60<mμμ<120 GeVc2 and rapidity 2.5<yμμcms<4. They are presented as a function of rapidity and, for the Pb-Pb collisions, of centrality as well. The results are compared with theoretical calculations, both with and without nuclear modifications to the Parton Distribution Functions (PDFs). In p-Pb collisions the center-of-mass frame is boosted with respect to the laboratory frame, and the measurements cover the backward (−4.46<yμμcms<−2.96) and forward (2.03<yμμcms<3.53) rapidity regions. For the p-Pb collisions, the results are consistent within experimental and theoretical uncertainties with calculations that include both free-nucleon and nuclear-modified PDFs. For the Pb-Pb collisions, a 3.4σ deviation is seen in the integrated yield between the data and calculations based on the free-nucleon PDFs, while good agreement is found once nuclear modifications are considered.
Human GLUTs represent a family of specialized transporters that facilitate the diffusion of hexoses through membranes along a concentration gradient. The 14 isoforms share high sequence identity but differ in substrate specificity and affinity, and tissue distribution. According to their structure similarity, GLUTs are divided into three classes, with class 1 comprising the most intensively studied isoforms GLUTs1 4. An abnormal function of different GLUT members has been related to the pathogenesis of various diseases, including cancer and diabetes. Hence, GLUTs are the subject of intensive research, and efforts concentrate on identifying GLUT-selective ligands for putative medical purposes and their application in studies aiming to further unravel the metabolic roles of these transporters.
The hexose transporter deficient (hxt0) yeast strain EBY.VW4000 is devoid of all its endogenous hexose transporters and unable to grow on glucose or related hexoses. This strain has proven to be a valuable platform to investigate heterologous transporters due to its easy handling, increased robustness, and versatile applications. However, the functional expression of GLUTs in yeast requires certain modifications. Single point mutations of GLUT1 and GLUT5 led to their functional expression in EBY.VW4000, whereas the native GLUT1 was actively expressed in EBY.S7, a hxt0 strain carrying the fgy1 mutation that putatively reduces the phosphatidylinositol-4-phosphate (PI4P) content in the plasma membrane. GLUT4 was only actively expressed in the hxt0 strain SDY.022, which also contains the fgy1 mutation and in which ERG4 is additionally deleted. Erg4 is one of the late enzymes in the ergosterol pathway, and therefore SDY.022 probably has an altered sterol composition in its membrane.
The goal of this thesis was to actively express GLUT2 and GLUT3 in a hxt0 yeast strain, providing a convenient system for their ligand screening. A PCR-derived amino acid exchange in the sequence of GLUT3 enabled its functional expression in EBY.VW4000 and the unmodified GLUT3 protein was active in EBY.S7. Functional expression of GLUT2 was achieved by rational design. The extracellular loop between the transmembrane regions 1 and 2 is significantly larger in GLUT2 than in other class 1 GLUTs. By truncating this loop by 34 amino acids and exchanging an alanine for a serine, a GLUT3-like loop was implemented. The resulting construct GLUT2∆loopS was functional in EBY.S7. With an additional point mutation in the transmembrane region 11, GLUT2∆loopS_Q455R was also actively expressed in EBY.VW4000. Inhibition studies with the known GLUT inhibitors phloretin and quercetin showed a reduced transporter activity for GLUT2 and GLUT3 in uptake assays and growth tests when inhibitors were present, demonstrating that both systems are amenable for ligand screening experiments.
The newly established GLUT2 yeast system was then used to screen a library of compounds pre-selected by in silico screening. Thereby, eleven identified GLUT2 inhibitors exhibited strong potencies with IC50 values ranging from 0.61 to 19.3 µM. By employing the other yeast systems, these compounds were tested for their effects on GLUT1, and GLUTs3-5, revealing that nine of the identified ligands were GLUT2-selective. In contrast, one was a pan-class 1 inhibitor (inhibiting GLUTs1-4), and one affected GLUT2 and GLUT5, the two fructose transporting isoforms. These compounds will serve as useful tools for investigations on the role of GLUT2 in metabolic diseases and might even evolve into pharmaceutical agents targeting GLUT2-associated diseases.
Due to the beneficial effect of the putatively changed sterol composition in SDY.022 (by ERG4 deletion) on the functional expression of GLUT4, it was hypothesized that the presence of the human sterol cholesterol, or cholesterol-like sterols, might have a beneficial effect on GLUT expression, too. Thus, it was attempted to generate hxt0 strains that synthesize these sterols by genetic modifications targeting the ergosterol pathway. In the scope of these experiments, several strains with different sterol compositions were generated. Drop tests on glucose medium with the different strains expressing GLUT1 or GLUT4 revealed that the deletion of ERG6 is clearly advantageous for a functional expression of GLUT1 (but not GLUT4). This indicates that the methyl group at the ergosterol side chain (introduced by Erg6 and reduced by Erg4) negatively influences GLUT1 activity. However, this effect on GLUT1 activity was less pronounced than the putative altered PI4P content in EBY.S7.
Additionally, in this thesis, a new tool to measure glucose transport rates of transporters expressed in the hxt0 yeast system was developed to facilitate their kinetic characterization. For this, the pH-sensitive GFP variant pHluorin was employed as a biosensor for the cytosolic pH (pHcyt) by measuring the ratio (R390/470) of emission intensities at 512 nm from two different excitation wavelengths (390 and 470 nm). Sugar-starved cells exhibit a slightly acidic pHcyt because ATP production is depleted, reducing the activity of ATP-dependent proton pumps.
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Xenocoumacin (Xcn) 1 and 2 are the major antibiotics produced by the insect-pathogenic bacterium Xenorhabdus nematophila. Although the antimicrobial activity of Xcns has been explored, research regarding their action on mammalian cells is lacking. We aimed to investigate the action of Xcns in the context of inflammation and angiogenesis. We found that Xcns do not impair the viability of primary endothelial cells (ECs). Particularly Xcn2, but not Xcn1, inhibited the pro-inflammatory activation of ECs: Xcn2 diminished the interaction between ECs and leukocytes by downregulating cell adhesion molecule expression and blocked critical steps of the NF-κB activation pathway including the nuclear translocation of NF-κB p65 as well as the activation of inhibitor of κBα (IκBα) and IκB kinase β (IKKβ). Furthermore, the synthesis of pro-inflammatory mediators and enzymes, nitric oxide (NO) production and prostaglandin E2 (PGE2), inducible NO synthase (iNOS), and cyclooxygenase-2 (COX-2), was evaluated in leukocytes. The results showed that Xcns reduced viability, NO release, and iNOS expression in activated macrophages. Beyond these anti-inflammatory properties, Xcn2 effectively hindered pro-angiogenic processes in HUVECs, such as proliferation, undirected and chemotactic migration, sprouting, and network formation. Most importantly, we revealed that Xcn2 inhibits de novo protein synthesis in ECs. Consequently, protein levels of receptors that mediate the inflammatory and angiogenic signaling processes and that have a short half-live are reduced by Xcn2 treatment, thus explaining the observed pharmacological activities. Overall, our research highlights that Xcn2 exhibits significant pharmacological in vitro activity regarding inflammation and angiogenesis, which is worth to be further investigated preclinically.