Viatchenko-Karpinski S, Fleischmann B K, Liu Q, Sauer H, Gryshchenko O, Ji G J, Hescheler J
Institute of Neurophysiology, University of Cologne, Robert-Koch-Strasse 39, 50931 Köln, Germany.
Proc Natl Acad Sci U S A. 1999 Jul 6;96(14):8259-64. doi: 10.1073/pnas.96.14.8259.
Activity of cardiac pacemaker cells is caused by a balanced interplay of ion channels. However, it is not known how the rhythmic beating is initiated during early stages of cardiomyogenesis, when the expression of ion channels is still incomplete. Based on the observation that early-stage embryonic stem cell-derived cardiomyocytes continuously contracted in high extracellular K+ solution, here we provide experimental evidence that the spontaneous activity of these cells is not generated by transmembrane ion currents, but by intracellular [Ca2+]i oscillations. This early activity was clearly independent of voltage dependent L-type Ca2+ channels and the interplay between these and ryanodine sensitive Ca2+ stores. We also show that intracellular Ca2+ oscillations evoke small membrane depolarizations and that these can trigger L-type Ca2+ channel driven action potentials.
心脏起搏器细胞的活动是由离子通道之间的平衡相互作用引起的。然而,在心肌发生的早期阶段,当离子通道的表达仍不完全时,节律性搏动是如何启动的尚不清楚。基于早期胚胎干细胞衍生的心肌细胞在高细胞外K+溶液中持续收缩的观察结果,我们在此提供实验证据,表明这些细胞的自发活动不是由跨膜离子电流产生的,而是由细胞内[Ca2+]i振荡产生的。这种早期活动明显独立于电压依赖性L型Ca2+通道以及这些通道与ryanodine敏感Ca2+储存之间的相互作用。我们还表明,细胞内Ca2+振荡会引起小的膜去极化,并且这些去极化可以触发L型Ca2+通道驱动的动作电位。