During heart development, epicardial progenitors contribute various cardiac lineages including smooth muscle cells, cardiac fibroblasts, and endothelial cells. However, their specific contribution to the human endothelium has not yet been resolved, at least in part due to the inability to expand and maintain human primary or pluripotent stem cell (hPSC)-derived epicardial cells. Here we first generated CDH5-2A-eGFP knock-in hPSC lines and differentiated them into self-renewing WT1+ epicardial cells, which gave rise to endothelial cells upon VEGF treatment in vitro. In addition, we found that the percentage of endothelial cells correlated with WT1 expression in a WT1-2A-eGFP reporter line. The resulting endothelial cells displayed many endoc...
During cardiac development, the epicardium is the source of multipotent mesenchymal cells, which giv...
The umbilical cord blood derived endothelial progenitor cells (EPCs) contribute to vascular regenera...
The discovery of stem and progenitor cells in the adult mammalian heart has added a vital dimension ...
The embryonic epicardium generates a population of epicardial‐derived mesenchymal cells (EPDC) whose...
Epicardial cells are crucial for heart development, function, and regeneration, but methods to study...
The epicardium has emerged as a multipotent cardiovascular progenitor source with therapeutic potent...
The embryonic epicardium, originating from the proepicardial organ (PEO), provides a source of multi...
Ischemic damage from a myocardial infarction can have dramatic negative effects on the heart's abili...
Primitive cells capable of generating small resistance arterioles and capillary structures in the in...
The epicardium has emerged as a multipotent cardiovascular progenitor source with therapeutic potent...
The epicardium is the mono-layered epithelium that covers the outer surface of the myocardium from e...
Human pluripotent stem cells (hPSCs) are widely used to study cardiovascular cell differentiation an...
SummaryCardiac tissue undergoes renewal with low rates. Although resident stem cell populations have...
Cardiac tissue undergoes renewal with low rates. Although resident stem cell populations have been i...
Human pluripotent stem cells (hPSCs) are widely used to study cardiovascular cell differentiation an...
During cardiac development, the epicardium is the source of multipotent mesenchymal cells, which giv...
The umbilical cord blood derived endothelial progenitor cells (EPCs) contribute to vascular regenera...
The discovery of stem and progenitor cells in the adult mammalian heart has added a vital dimension ...
The embryonic epicardium generates a population of epicardial‐derived mesenchymal cells (EPDC) whose...
Epicardial cells are crucial for heart development, function, and regeneration, but methods to study...
The epicardium has emerged as a multipotent cardiovascular progenitor source with therapeutic potent...
The embryonic epicardium, originating from the proepicardial organ (PEO), provides a source of multi...
Ischemic damage from a myocardial infarction can have dramatic negative effects on the heart's abili...
Primitive cells capable of generating small resistance arterioles and capillary structures in the in...
The epicardium has emerged as a multipotent cardiovascular progenitor source with therapeutic potent...
The epicardium is the mono-layered epithelium that covers the outer surface of the myocardium from e...
Human pluripotent stem cells (hPSCs) are widely used to study cardiovascular cell differentiation an...
SummaryCardiac tissue undergoes renewal with low rates. Although resident stem cell populations have...
Cardiac tissue undergoes renewal with low rates. Although resident stem cell populations have been i...
Human pluripotent stem cells (hPSCs) are widely used to study cardiovascular cell differentiation an...
During cardiac development, the epicardium is the source of multipotent mesenchymal cells, which giv...
The umbilical cord blood derived endothelial progenitor cells (EPCs) contribute to vascular regenera...
The discovery of stem and progenitor cells in the adult mammalian heart has added a vital dimension ...