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首页> 外文期刊>Journal of cardiovascular electrophysiology >Cell-to-cell electrical interactions during early and late repolarization.
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Cell-to-cell electrical interactions during early and late repolarization.

机译:早期和晚期复极化过程中的细胞间电相互作用。

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摘要

Cardiac electrical activity is significantly affected by variations in the conductance of gap junctions that connect myocytes to one another. To better understand how intrinsic (single cell) electrical activity is modulated by junctional conductance, we used a two-myocyte coupling system in which physically separate cells were electrically coupled via a variable resistance set by the investigator. This brief review summarizes our findings regarding: (1) the effect of the early phase of action potential repolarization (phase 1) and transient outward current (I(to)) on action potential conduction, and (2) the effect of coupling on the action potential plateau (late repolarization). We found that inhibition of I(to) markedly increased the ability of action potentials to propagate from cell-to-cell when junctional conductance was low. Electrically coupling two myocytes together also suppressed their beat-to-beat variability in action potential duration and contraction. Similarly, early afterdepolarizations (EADS) were readily suppressed by connecting a normal myocyte to one generating EADs. This high sensitivity of the plateau to variations in junctional interactions arises from the large increase in membrane resistance that occurs during this phase of the action potential.
机译:心脏电活动受到将肌细胞彼此连接的缝隙连接的电导率变化的显着影响。为了更好地了解内在的(单细胞)电活动是如何通过连接电导调节的,我们使用了两肌细胞偶联系统,其中物理独立的细胞通过研究者设定的可变电阻进行电偶联。这篇简短的综述总结了我们关于以下方面的发现:(1)动作电位重新极化的早期阶段(阶段1)和瞬态向外电流(I(to))对动作电位传导的影响,以及(2)耦合对动作电位传导的影响。动作电位平台(晚期复极)。我们发现I(to)的抑制显着增加了连接电导低时动作电位从一个细胞传播到另一个细胞的能力。将两个心肌细胞电耦合在一起也抑制了其在动作电位持续时间和收缩中的逐搏变异性。同样,通过将正常的心肌细胞与一个产生的EAD连接起来,很容易抑制早期的去极化作用(EADS)。平台对连接相互作用变化的高度敏感性是由于在动作电位的这一阶段发生的膜阻力的大幅增加而引起的。

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