81. Jahrestagung der Deutschen Gesellschaft für Kardiologie

Donnerstag, 9. April 2015 (Posterbereich E) 09:30-11:00

Postervorträge

Basic Science: Stoffwechsel und Zielmoleküle

Diskussionsleiter: K. Brixius (Köln), G. Euler (Gießen)

(P394) AdipoR1 and AMPK are involved in CTRP7 and CTRP9 induced glucose uptake in cardiomyocytes
    D. Stumpp, L. Li, B. Siegler, B. Niemann, S. Rohrbach (Gießen)
(P395) Dissection of Myosin-mediated Glucose Uptake in Cardiac Muscle
    M. Müller, J. T. Thackeray, B. Stapel, S. Pietzsch, D. J. Manstein, D. Hilfiker-Kleiner (Hannover)
(P396) Palmitic acid induces lipid accumulation in cardiomyoytes
    M. Lenski, L. Adrian, M. Böhm, U. Laufs (Homburg/Saar)
(P397) The PDE-4 inhibitor roflumilast increases hepatic mitochondrial biogenesis and respiratory capacity leading to reduced body weight
    J. Möllmann, F. Kahles, C. Bäck, R. Stöhr, K. Schütt, H. Findeisen, S. Krüger, C. Lebherz, F. Tacke, N. Marx, M. Lehrke (Aachen, Münster, Düsseldorf)
(P398) Oxidative stress affects human myocardial stiffness by regulating titin elasticity
    W. Linke, J. Alegre-Cebollada, N. Hamdani, M. Breitkreuz, L. I. Leichert, J. M. Fernandez (Bochum; New York, US)
(P399) Nuclear calcineurin is a sensor for detecting Ca2+ release from the nuclear envelope via InsP³R
    M. Czolbe, P. Nordbeck, L. Seidlmayer, P. Arias-Loza, S. Olivares, O. Ritter (Würzburg)
(P400) Role of Non-coding Regulator of NFAT (NRON) in heart diseases
    R. Kumarswamy, J. Beermann, J. Viereck, S. Batkai, S. K. Gupta, S. Engelhardt, T. Thum (Hannover, München)
(P401) Combined inhibition of the renin-angiotensin system (RAS) and neprilysin causes profound alterations of mitochondrial pathways in experimental heart failure
    L. Grois, I. Winkel, J. Reinders, A. Dietl, J. Hupf, A. Luchner, D. Endemann, L. S. Maier, C. Birner (Regensburg, Amberg)
(P402) A general aptamer chimera for the delivery of functional precursor microRNA-126
    J.-H. Rohde, J. Weigand, B. Süß, S. Dimmeler (Frankfurt am Main, Darmstadt)
(P403) Magnetic particle spectroscopy enables quantification of iron oxide nanoparticles in living cells prior to in-vivo tracking by magnetic resonance imaging
    W. Poller, N. Löwa, F. Wiekhorst, M. Taupitz, S. Wagner, K. Möller, G. Baumann, V. Stangl, L. Trahms, A. Ludwig (Berlin)