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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Skeletal muscle stem cells propagated as myospheres display electrophysiological properties modulated by culture conditions.
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Skeletal muscle stem cells propagated as myospheres display electrophysiological properties modulated by culture conditions.

机译:随着肌球繁殖的骨骼肌干细胞显示出受培养条件调节的电生理特性。

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In cardiac regenerative therapy, transplantation of stem cells to form new myocardium is limited by their inability to integrate into host myocardium and conduct cardiac electrical activity. It is now hypothesized that refining cell sorting could upgrade the therapeutic result. Here we characterized a subpopulation of skeletal muscle stem cells with respect to their electrophysiological properties. The aim of our study was to determine whether electrophysiological parameters are compatible with cardiac function and can be influenced by culture conditions. Low-adherent skeletal muscle stem cells were isolated from the hind legs of 12-20 week old mice. After 6 days of culture the cells were analysed using patch-clamp techniques and RT-PCR, and replated in different media for skeletal muscle or cardiac differentiation. The cells generated action potentials (APs) longer than skeletal muscle APs, expressed functional cardiac Na(+) channels (~46% of the total channel fraction), displayed fast activating and inactivating L-type Ca(2+) currents, possibly conducted through cardiac channels and did not show significant Cl(-) conductance. Moreover, a fraction of cells expressed muscarinic acetylcholine receptors. Conditioning the cells for skeletal muscle differentiation resulted in upregulation of skeletal muscle-specific Na(+) and Ca(2+) channel expression, shortening of AP duration and loss of functional cardiac Na(+) channels. Cardiomyogenic conditions however, promoted the participation of cardiac Na(+) channels (57% of the total channel fraction). Nevertheless the cells retained properties of myoblasts such as the expression of nicotinic acetylcholine receptors. We conclude that skeletal muscle stem cells display several electrophysiological properties similar to those of cardiomyocytes. Culture conditions modulated these properties but only partially succeeded in further driving the cells towards a cardiac phenotype. This article is part of a special issue entitled, "Cardiovascular Stem Cells Revisited".
机译:在心脏再生疗法中,干细胞移植形成新的心肌受到其无法整合进宿主心肌和进行心脏电活动的限制。现在假设精制细胞分选可以提高治疗效果。在这里,我们就其骨骼肌干细胞的电生理特性为特征。我们研究的目的是确定电生理参数是否与心脏功能兼容,并受培养条件的影响。从12-20周龄小鼠的后腿中分离出低粘附性骨骼肌干细胞。培养6天后,使用膜片钳技术和RT-PCR分析细胞,并在不同培养基中重新铺片,以用于骨骼肌或心脏分化。细胞产生的动作电位(AP)比骨骼肌AP长,表达功能性心脏Na(+)通道(占总通道分数的46%),显示出快速激活和失活的L型Ca(2+)电流,可能进行了通过心脏通道,没有显示出明显的Cl(-)电导。此外,一部分细胞表达毒蕈碱型乙酰胆碱受体。调节骨骼肌细胞的分化导致骨骼肌特异性Na(+)和Ca(2+)通道表达的上调,AP持续时间的缩短和功能性心脏Na(+)通道的丧失。然而,心肌病促进了心脏Na(+)通道的参与(占总通道分数的57%)。然而,细胞保留了成肌细胞的特性,例如烟碱样乙酰胆碱受体的表达。我们得出结论,骨骼肌干细胞显示出几种与心肌细胞相似的电生理特性。培养条件调节了这些特性,但仅部分成功地进一步推动了细胞向心脏表型发展。本文是名为“重新审视心血管干细胞”的一期特刊的一部分。

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