Cell-Surface Marker Signature for Enrichment of Ventricular Cardiomyocytes Derived from Human Embryonic Stem Cells.

Journal: Stem Cell Reports
Published:
Abstract

To facilitate understanding of human cardiomyocyte (CM) subtype specification, and the study of ventricular CM biology in particular, we developed a broadly applicable strategy for enrichment of ventricular cardiomyocytes (VCMs) derived from human embryonic stem cells (hESCs). A bacterial artificial chromosome transgenic H9 hESC line in which GFP expression was driven by the human ventricular-specific myosin light chain 2 (MYL2) promoter was generated, and screened to identify cell-surface markers specific for MYL2-GFP-expressing VCMs. A CD77+/CD200- cell-surface signature facilitated isolation of >97% cardiac troponin I-positive cells from H9 hESC differentiation cultures, with 65% expressing MYL2-GFP. This study provides a tool for VCM enrichment when using some, but not all, human pluripotent stem cell lines. Tools generated in this study can be utilized toward understanding CM subtype specification, and enriching for VCMs for therapeutic applications.

Authors
Jennifer Veevers, Elie Farah, Mirko Corselli, Alec Witty, Karina Palomares, Jason Vidal, Nil Emre, Christian Carson, Kunfu Ouyang, Canzhao Liu, Patrick Van Vliet, Maggie Zhu, Jeffrey Hegarty, Dekker Deacon, Jonathan Grinstein, Ralf Dirschinger, Kelly Frazer, Eric Adler, Kirk Knowlton, Neil Chi, Jody Martin, Ju Chen, Sylvia Evans