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首页> 外文期刊>Research in Pharmaceutical Sciences >Functional expression of potassium channels in cardiomyocytes derived from embryonic stem cells
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Functional expression of potassium channels in cardiomyocytes derived from embryonic stem cells

机译:胚胎干细胞来源的心肌细胞中钾通道的功能表达

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Royan B 1 stem cell can be differentiated to specialized cell types including cardiomyocytes. This developmental change is accompanied with expression of various K + channel types. The aim of this study was to detect functional expression of K + currents from stem cell stage and one week and two weeks after differentiation into cardiomyocyte. Mouse stem cell derived cardiomyocytes (ES-cardiomyocytes) were isolated to single cell suspension for K + current recording using whole cell patch-clamp technique. The predominant depolarizing current in ES-cardiomyocytes was a tetraethylammonium (TEA) (10 mM) sensitive current which was partially blocked by nifedipine (1 μM) and attenuated by increasing concentration of EGTA (10 mM) in the pipette solution. Pharmacology and electrophysiological properties of this oscillatory sustained current very well matched with characteristics of Ca 2+ activated K + current. In addition there was another kind of sustained outward K + current which was resistance to TEA but was inhibited by 3,4-diaminopyridine. The characteristic features of this current indicate that this current was due to activation of delayed rectifier K + channels. RT-PCR study also confirmed expression of these two types of K + channels in ES-cardiomyocytes. Therefore, present study shows functional expression of two types of K + ionic current in ES-cardiomyocytes.
机译:Royan B 1干细胞可以分化为包括心肌细胞在内的特殊细胞类型。这种发展变化伴随着各种K +通道类型的表达。这项研究的目的是检测干细胞阶段以及分化为心肌细胞后一星期和两周的钾离子电流的功能性表达。使用全细胞膜片钳技术将小鼠干细胞衍生的心肌细胞(ES-心肌细胞)分离到单个细胞悬液中以记录K +电流。 ES心肌细胞中主要的去极化电流是四乙铵(TEA)(10 mM)敏感电流,该电流部分被硝苯地平(1μM)阻断,并因移液器中EGTA(10 mM)浓度的增加而减弱。该振荡持续电流的药理和电生理特性与Ca 2+活化的K +电流的特性非常匹配。另外,存在另一种持续的向外K +电流,其对TEA具有抗性但被3,4-二氨基吡啶抑制。该电流的特征表明,该电流是由于延迟整流器K +通道的激活引起的。 RT-PCR研究也证实了这两种类型的K +通道在ES心肌细胞中的表达。因此,本研究显示了两种类型的K +离子电流在ES心肌细胞中的功能性表达。

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