AbstractThe directed differentiation of human cardiomyocytes (CMs) from pluripotent cells provides an invaluable model for understanding mechanisms of cell fate determination and offers considerable promise in cardiac regenerative medicine. Here, we utilize a human embryonic stem cell suspension bank, produced according to a good manufacturing practice, to generate CMs using a fully defined and small molecule-based differentiation strategy. Primitive and cardiac mesoderm purification was used to remove non-committing and multi-lineage populations and this significantly aided the identification of key transcription factors, lncRNAs, and essential signaling pathways that define cardiomyogenesis. Global methylation profiles reflect CM developm...
Epigenetic events are crucial in the regulation of the complex process of cardiac development, enabl...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
Epigenetic events are crucial in the regulation of the complex process of cardiac development, enabl...
The directed differentiation of human cardiomyocytes (CMs) from pluripotent cells provides an invalu...
AbstractThe directed differentiation of human cardiomyocytes (CMs) from pluripotent cells provides a...
Stem cell-based cardiogenesis has become a powerful tool to enhance our understanding of cardiac de...
Stem cell-based cardiogenesis has become a powerful tool to enhance our understanding of cardiac dev...
Stem cell-based cardiogenesis has become a powerful tool to enhance our understanding of cardiac dev...
With defined culture protocol, human embryonic stem cells (hESCs) are able to generate cardiomyocyte...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
AbstractBackgroundHuman-induced pluripotent stem cells (iPSCs) are a potentially unlimited source fo...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
Cardiomyocytes are the contractile cells of the heart, responsible for pumping blood and nutrients t...
Epigenetic events are crucial in the regulation of the complex process of cardiac development, enabl...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
Epigenetic events are crucial in the regulation of the complex process of cardiac development, enabl...
The directed differentiation of human cardiomyocytes (CMs) from pluripotent cells provides an invalu...
AbstractThe directed differentiation of human cardiomyocytes (CMs) from pluripotent cells provides a...
Stem cell-based cardiogenesis has become a powerful tool to enhance our understanding of cardiac de...
Stem cell-based cardiogenesis has become a powerful tool to enhance our understanding of cardiac dev...
Stem cell-based cardiogenesis has become a powerful tool to enhance our understanding of cardiac dev...
With defined culture protocol, human embryonic stem cells (hESCs) are able to generate cardiomyocyte...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
AbstractBackgroundHuman-induced pluripotent stem cells (iPSCs) are a potentially unlimited source fo...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
Cardiomyocytes are the contractile cells of the heart, responsible for pumping blood and nutrients t...
Epigenetic events are crucial in the regulation of the complex process of cardiac development, enabl...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
Epigenetic events are crucial in the regulation of the complex process of cardiac development, enabl...