Additional file 2 of Retinoic acid modulation guides human-induced pluripotent stem cell differentiation towards left or right ventricle-like cardiomyocytes
Human pluripotent stem cell (hPSC)-derived cells offer an unprecedented opportunity to model diverse human tissue functions. However, the field lacks a generalized approach to rapidly and efficiently
Directed differentiation of endothelial cells (ECs) from human pluripotent stem cells (hPSCs) typically takes around fourteen days, requires optimization of parameters such as hPSC seeding density and
Transcription factor overexpression screen in cardiomyocytes for differentiation into atrial, ventricular, or mature cardiomyocytes Overall design: hESCs were differentiated into cardiomyocytes by ove
The pancreas and liver arise from a common pool of progenitors in the foregut endoderm; however, the underlying molecular mechanisms driving this lineage diversification are not fully understood. We c
Combinatorial transcription codes generate the myriad of cell types during development, and thus likely provide crucial insights into directed differentiation of stem cells to a specific cell type. Th