** = Publikationen gelistet in SCI/SSCI/Pubmed
** Wallner, M; Khafaga, M; Kolesnik, E; Vafiadis, A; Schwantzer, G; Eaton, DM; Curcic, P; Köstenberger, M; Knez, I; Rainer, PP; Pichler, M; Pieske, B; Lewinski, DV
Istaroxime, a potential anticancer drug in prostate cancer, exerts beneficial functional effects in healthy and diseased human myocardium.
Oncotarget. 2017; 8(30):49264-49274
Doi: 10.18632/oncotarget.17540
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** Khafaga, M; Kresoja, KP; Urlesberger, B; Knez, I; Klaritsch, P; Lumenta, DB; Krause, R; von Lewinski, D
Staphylococcus lugdunensis Endocarditis in a 35-Year-Old Woman in Her 24th Week of Pregnancy.
Case Rep Obstet Gynecol. 2016; 2016(4):7030382-7030382
Doi: 10.1155/2016/7030382
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** Kolesnik, E; Koyani, C; Wallner, M; Khafaga, M; Scherubel, S; Djalinac, N; Sourij, H; Machler, H; Malle, E; Pelzmann, B; von Lewinski, D
DPP-4 inhibitors impair contraction and relaxation in human atrial trabeculae and electrophysiological function in guinea pig ventricular cardiomyocytes
WIEN KLIN WOCHENSCHR. Wiener Klinische Wochenschrift, supplement 6/16. 2016; 128: S410-S412.-44. Jahrestagung der Österreichischen Diabetes Gesellschaft; NOV 17-19, 2016; Salzburg.
[Oral Communication]
Web of Science
** Wallner, M; Kolesnik, E; Ablasser, K; Khafaga, M; Wakula, P; Ljubojevic, S; Thon-Gutschi, EM; Sourij, H; Kapl, M; Edmunds, NJ; Kuzmiski, JB; Griffith, DA; Knez, I; Pieske, B; von Lewinski, D
Exenatide exerts a PKA-dependent positive inotropic effect in human atrial myocardium: GLP-1R mediated effects in human myocardium.
J Mol Cell Cardiol. 2015; 89(Pt B):365-375
Doi: 10.1016/j.yjmcc.2015.09.018
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** Kolesnik, E; Wallner, M; Khafaga, M; Schwantzer, G; Kostenberger, M; Curcic, P; Knez, I; von Lewinski, D
Functional Effect of Istaroxime in human Myocardium
WIEN KLIN WOCHENSCHR. 2015; 127: S10-S10.
[Poster]
Web of Science
** Wallner, M; Kolesnik, E; Ablasser, K; Khafaga, M; Ljubojevic, S; Sourij, H; Kapl, M; Kuzmiski, B; Griffith, A; Von Lewinski, D
Exenatide exerts a PKA-dependent positive inotropic effect in human atrial myocardium
EUR HEART J. 2015; 36: 371-371.
[Oral Communication]
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** Wallner, M; Kolesnik, E; Ablasser, K; Khafaga, M; Ljubojevic, S; Wakula, P; Sourij, H; Kapl, M; Kuzmiski, B; Griffith, D; Knez, I; Pieske, B; von Lewinski, D
Exenatide exerts a PKA-dependent positive inotropic effect in human atrial myocardium
WIEN KLIN WOCHENSCHR. 2015; 127: S12-S12.
[Poster]
Web of Science
** Kockskamper, A; von Lewinski, D; Zhu, D; Kockskamper, J; Khafaga, M; Schmidt, AG; Post, H; Pieske, B
Relevance of stretch-induced phosphorylation of MAPK and p90rsk in human myocardium.
Front Biosci (Elite Ed). 2013; 5(6):883-892
Doi: 10.2741/E667
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** Khafaga, M; Bossuyt, J; Mamikonian, L; Li, JC; Lee, LL; Yarov-Yarovoy, V; Despa, S; Bers, DM
Na⁺/K⁺-ATPase E960 and phospholemman F28 are critical for their functional interaction.
Proc Natl Acad Sci U S A. 2012; 109(50):20756-20761
Doi: 10.1073/pnas.1207866109
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** Yang, LZ; Kockskämper, J; Khan, S; Suarez, J; Walther, S; Doleschal, B; Unterer, G; Khafaga, M; Mächler, H; Heinzel, FR; Dillmann, WH; Pieske, B; Spiess, J
cAMP- and Ca²(+) /calmodulin-dependent protein kinases mediate inotropic, lusitropic and arrhythmogenic effects of urocortin 2 in mouse ventricular myocytes.
Br J Pharmacol. 2011; 162(2):544-556
Doi: 10.1111/j.1476-5381.2010.01067.x
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** von Lewinski, D; Rainer, PP; Gasser, R; Huber, MS; Khafaga, M; Wilhelm, B; Haas, T; Mächler, H; Rössl, U; Pieske, B
Glucose-transporter-mediated positive inotropic effects in human myocardium of diabetic and nondiabetic patients.
Metabolism. 2010; 59(7):1020-1028
Doi: 10.1016/j.metabol.2009.10.025
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** Rainer, PP; Huber, MS; Khafaga, M; Rossl, R; Gasser, R; Bisping, E; Machler, H; Pieske, B; von Lewinski, D
Insulin-induced inotropy in human myocardium in diabetics and non-diabetics
WIEN KLIN WOCHENSCHR. 2009; 121(15-16):A35-A35.
[Poster]
Web of Science
** Kockskämper, J; Khafaga, M; Grimm, M; Elgner, A; Walther, S; Kockskämper, A; von Lewinski, D; Post, H; Grossmann, M; Dörge, H; Gottlieb, PA; Sachs, F; Eschenhagen, T; Schöndube, FA; Pieske, B
Angiotensin II and myosin light-chain phosphorylation contribute to the stretch-induced slow force response in human atrial myocardium.
Cardiovasc Res. 2008; 79(4):642-651
Doi: 10.1093/cvr/cvn126
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** von Lewinski, D; Zhu, D; Khafaga, M; Kockskamper, J; Maier, LS; Hasenfuss, G; Pieske, B
Frequency-dependence of the slow force response.
Front Biosci. 2008; 13(4): 7202-7209.
Doi: 10.2741/3222
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** Kockskämper, J; von Lewinski, D; Khafaga, M; Elgner, A; Grimm, M; Eschenhagen, T; Gottlieb, PA; Sachs, F; Pieske, B
The slow force response to stretch in atrial and ventricular myocardium from human heart: functional relevance and subcellular mechanisms.
Prog Biophys Mol Biol. 2008; 97(2-3): 250-267.
Doi: 10.1016/j.pbiomolbio.2008.02.026
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