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Human Gene Therapy Methods|February 4, 2014
Fast and efficient multitransgenic modification of human pluripotent stem cellsKristin Schwanke, Sylvia Merkert, Henning Kempf, et al.The Journal of Gene Medicine|November 21, 2007
Human CMV immediate-early enhancer: a useful tool to enhance cell-type-specific expression from lentiviral vectorsIna Gruh, Stephanie Wunderlich, Monica Winkler, et al.Stem Cell Reports|March 29, 2014
Efficient designer nuclease-based homologous recombination enables direct PCR screening for footprintless targeted human pluripotent stem cellsSylvia Merkert, Stephanie Wunderlich, Christien Bednarski, et al.Frontiers in Physiology|February 7, 2018
Differences in Contractile Function of Myofibrils within Human Embryonic Stem Cell-Derived Cardiomyocytes vs. Adult Ventricular Myofibrils Are Related to Distinct Sarcomeric Protein IsoformsBogdan Iorga, Kristin Schwanke, Natalie Weber, et al.Tissue Engineering. Part A|April 14, 2015
Transplantation Effectiveness of Induced Pluripotent Stem Cells Is Improved by a Fibrinogen Biomatrix in an Experimental Model of Ischemic Heart FailureSebastian V Rojas, Andreas Martens, Robert Zweigerdt, et al.Circulation|July 16, 2008
Generation of functional murine cardiac myocytes from induced pluripotent stem cellsChristina Mauritz, Kristin Schwanke, Michael Reppel, et al.Stem Cells (Dayton, Ohio)|March 18, 2006
Generation and characterization of functional cardiomyocytes from rhesus monkey embryonic stem cellsKristin Schwanke, Stephanie Wunderlich, Michael Reppel, et al.Plos One|August 5, 2014
Macroscopic fluorescence imaging: a novel technique to monitor retention and distribution of injected microspheres in an experimental model of ischemic heart failureAndreas Martens, Sebastian V Rojas, Hassina Baraki, et al.Artificial Organs|February 28, 2014
Substantial early loss of induced pluripotent stem cells following transplantation in myocardial infarctionAndreas Martens, Sebastian V Rojas, Hassina Baraki, et al.Scientific Reports|August 3, 2019
Comparing human iPSC-cardiomyocytes versus HEK293T cells unveils disease-causing effects of Brugada mutation A735V of NaV1.5 sodium channelsJeanne de la Roche, Paweorn Angsutararux, Henning Kempf, et al.Pageof 3