Stem cell-based cardiogenesis has become a powerful tool to enhance our understanding of cardiac development and test novel therapeutics for cardiovascular diseases. However, transcriptional and epigenetic regulation of multiple transitional stages from pluripotent cells to committed cardiomyocytes has not yet been fully characterized. To characterize how transcription factors, lincRNAs and DNA methylation change at temporal developmental stages, and identify potential novel regulators during cardiogenesis. We utilized a previously reported protocol that yields human cardiomyocytes (hCM) with more than 90% purity from human Embryonic Stem Cells (hESC). Leveraging the purity of cells resulting from this protocol, we systematically...
SummaryDecades of progress in developmental cardiology has advanced our understanding of the early a...
The heart is a highly specialized organ with essential function for the organism throughout life. Th...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
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...
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...
AbstractThe directed differentiation of human cardiomyocytes (CMs) from pluripotent cells provides a...
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...
Decades of progress in developmental cardiology has advanced our understanding of the early aspects ...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
Relatively little is known about the epigenetic control mechanisms that guide postnatal organ matura...
SummaryDecades of progress in developmental cardiology has advanced our understanding of the early a...
The heart is a highly specialized organ with essential function for the organism throughout life. Th...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
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...
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...
AbstractThe directed differentiation of human cardiomyocytes (CMs) from pluripotent cells provides a...
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...
Decades of progress in developmental cardiology has advanced our understanding of the early aspects ...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...
Relatively little is known about the epigenetic control mechanisms that guide postnatal organ matura...
SummaryDecades of progress in developmental cardiology has advanced our understanding of the early a...
The heart is a highly specialized organ with essential function for the organism throughout life. Th...
Epigenetic mechanisms and transcription factor networks essential for differentiation of cardiac myo...