Journal of Cellular Biochemistry · 2011 · 23 citations · 19 references
Cardiac MuscleCardiac Progenitor CellsCardiac RegenerationStem Cell BiologyRegenerative MedicineSmall Chemical CompoundsStem CellsCardiologySynthetic Sulfonyl-hydrazone-1CardiomyopathyCardiomyogenic Microrna ExpressionStem Cell TherapiesMicrorna DetectionCardiac ReprogrammingCell BiologyInduced Pluripotent Stem CellDevelopmental BiologyCardiac DifferentiationStem Cell ResearchMurine IpscsStem-cell TherapyCardiomyocyte DifferentiationSmall RnaMedicineEmbryonic Stem Cell
Induced pluripotent stem cells (iPSCs) are obtained from adult cells through overexpression of pluripotency factors. iPSCs share many features with embryonic stem cells (ESCs), circumventing ethical issues, and, noteworthy, match donor's genotype. iPSCs represent therefore a valuable tool for regenerative medicine. Cardiac differentiation of ESCs can be enhanced via microRNAs (miRNAs) and small chemical compounds, which probably act as chromatin remodelers. Cardiomyogenic potential of iPSCs is currently intensely investigated for cell therapy or in vitro drug screening and disease modeling. However, influences of small compounds on iPSC-related cardiomyogenesis have not yet been investigated in details. Here, we compared the effects of two small molecules, bis-peroxo-vanadium (bpV) and sulfonyl-hydrazone-1 (SHZ) at varying concentrations, during cardiac differentiation of murine iPSCs. SHZ (5 µM) enhanced specific marker expression and cardiomyocyte yield, without loss of cell viability. In contrast, bpV showed negligible effects on cardiac differentiation rate and appeared to induce Casp3-dependent apoptosis in differentiating iPSCs. Furthermore, SHZ-treated iPSCs were able to increase beating foci rate and upregulate early and late cardiomyogenic miRNA expression (miR-1, miR-133a, and miR-208a). Thus, our results demonstrate that small chemical compounds, such as SHZ, can constitute a novel and clinically feasible strategy to improve iPSC-derived cardiac differentiation.
19
Reprogramming of human somatic cells to pluripotency with defined factors
In-Hyun Park, Rui Zhao, Jason A. West et al. · Nature · 2007 · 2.8K citations
Defined Factors, Human Cell, Induced Pluripotent Stem Cell +9
Epigenetic memory in induced pluripotent stem cells
K. Kim, Akiko Doi, Bo Wen et al. · Nature · 2010 · 2.3K citations · Full text
Epigenetic Memory, Chromatin, Induced Pluripotent Stem Cell +7