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Merck
CN
  • Baicalin maintains late-stage functional cardiomyocytes in embryoid bodies derived from murine embryonic stem cells.

Baicalin maintains late-stage functional cardiomyocytes in embryoid bodies derived from murine embryonic stem cells.

Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology (2013-07-11)
Meilin Tang, Mengmeng Yin, Ming Tang, Huamin Liang, Chong Yu, Xinwu Hu, Hongyan Luo, Birte Baudis, Moritz Haustein, Markus Khalil, Tomo Sarić, Jürgen Hescheler, Jiaoya Xi
摘要

Low efficiency of cardiomyocyte (CM) differentiation from embryonic stem (ES) cells limits their therapeutic use. The objective of this study was to investigate the effect of baicalin, a natural flavonoid compound, on the in vitro cardiac differentiation of murine ES cells. The induction of ES cells into cardiac-like cells was performed by embryoid body (EB)-based differentiation method. The electrophysiological properties of the ES cell-derived CMs (ES-CMs) were measured by patch-clamp. The biomarkers of ES-CMs were determined by quantitative RT-PCR and immunofluorescence. Continuous baicalin treatment decreased the size of EBs, and increased the proportion of α-actinin-positive CMs and transcript level of cardiac specific markers in beating EBs by inducing cell death of non-CMs. Baicalin increased the percentage of working ES-CMs which had typical responses to β-adrenergic and muscarinic stimulations. Baicalin maintains the late-stage functional CMs in EBs derived from murine ES cells. This study describes a new insight into the various biological effects of baicalin on cardiac differentiation of pluripotent stem cells.

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单克隆 抗-α-肌动蛋白(肌小节) 小鼠抗, clone EA-53, ascites fluid