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Mechanisms and Determinants of Ultralong Action Potential Duration and Slow Rate-Dependence in Cardiac Myocytes

机译:机制和超长动作电位时程决定因素和心肌细胞慢速率依赖

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摘要

In normal cardiac myocytes, the action potential duration (APD) is several hundred milliseconds. However, experimental studies showed that under certain conditions, APD could be excessively long (or ultralong), up to several seconds. Unlike the normal APD, the ultralong APD increases sensitively with pacing cycle length even when the pacing rate is very slow, exhibiting a sensitive slow rate-dependence. In addition, these long action potentials may or may not exhibit early afterdepolarizations (EADs). Although these phenomena are well known, the underlying mechanisms and ionic determinants remain incompletely understood. In this study, computer simulations were performed with a simplified action potential model. Modifications to the L-type calcium current (ICa,L) kinetics and the activation time constant of the delayed rectifier K current were used to investigate their effects on APD. We show that: 1) the ultralong APD and its sensitive slow rate-dependence are determined by the steady-state window and pedestal ICa,L currents and the activation speed and the recovery of the delayed rectifier K current; 2) whether an ultralong action potential exhibits EADs or not depends on the kinetics of ICa,L; 3) increasing inward currents elevates the plateau voltage, which in general prolongs APD, however, this can also shorten APD when the APD is already ultralong under certain conditions; and 4) APD alternans occurs at slow pacing rates due to the sensitive slow rate-dependence and the ionic determinants are different from the ones causing APD alternans at fast heart rates.
机译:在正常的心肌细胞中,动作电位持续时间(APD)为几百毫秒。但是,实验研究表明,在某些条件下,APD可能会过长(或超长),长达几秒钟。与正常APD不同,即使起搏速度非常慢,超长APD也会随着起搏周期的长度而敏感地增加,表现出敏感的慢速依赖性。此外,这些长时动作电位可能会或可能不会显示出早期的去极化后(EAD)。尽管这些现象是众所周知的,但其潜在机理和离子决定簇仍未得到完全理解。在这项研究中,使用简化的动作电位模型进行了计算机模拟。修改了L型钙电流(ICa,L)动力学和延迟整流器K电流的激活时间常数,以研究它们对APD的影响。我们发现:1)超长APD及其敏感的慢速依赖性取决于稳态窗口和基座ICa,L电流以及激活速度和延迟整流K电流的恢复; 2)超长动作电位是否显示EAD取决于ICa,L的动力学; 3)增加内向电流会增加平台电压,通常会延长APD,但是,在某些条件下APD已经超长时,这也会缩短APD; 4)由于敏感的慢速依赖性,APD交替发生在缓慢的起搏频率上,并且离子决定簇与导致心跳加快的APD交替发生的决定因素不同。

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    Zhilin Qu; Douglas Chung;

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  • 年(卷),期 -1(7),8
  • 年度 -1
  • 页码 e43587
  • 总页数 10
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