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Analysis of QT Interval Prolongation With Heart Failure by Simulation of Repolarization Process

机译:QT间期延长与心力衰竭的复极化过程模拟分析

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It has been postulated that action potential duration (APD) is prolonged and IKs, a slow component of delayed rectifier potassium current, decreases in heart failure. We have reported that QT interval is prolonged and expression weight of KCNE1, coding IKs channel, increases in patients with heart failure. Since it is known that increase in KCNE1 increases the maximum conductance of IKs channel, the mechanism of APD prolongation is not explained by over expression of KCNE1. In this study, we construct a cardiac membrane action potential simulation model based on the experimental data from Xenopus oocytes expressed KCNQ1 and KCNE1 to investigate the relationship between increase in KCNE1 and APD. In addition, we investigated effect of reduction in Ca2+-independent transient outward potassium current (Ito) on APD in heart failure. In simulation, APD at 5ng KCNE1 was 180.96 ms, which was 4.63% longer than that at 1ng KCNE1 (APD-172.96ms) and 55.9% longer than that at 0.2ng KCNE1 (APD-110.96ms). In the cases of KCNQ1 alone and 0.2ng KCNE1 coinjected, APD shortened as density of Ito decreased, and APD prolonged as density of I to decreased in other cases. This study shows that increase in KCNE1 expression level makes maximum conductance of IKs channel increase and IKs channel open slowly and conductance of IKs channel decrease according to the APD time scale. Therefore increasing the KCNE1 expression level may prolong APD with this mechanism. This method of constructing a simulation model based on experiments helps to explain the relationship between potassium currents and QT interval prolongation
机译:据推测,动作电位持续时间(APD)延长,I Ks (延迟整流钾电流的缓慢成分)可降低心力衰竭。我们已经报道,心力衰竭患者的QT间隔延长,KCNE1编码I Ks 通道的表达权重增加。由于已知KCNE1的增加会增加I Ks 通道的最大电导,因此APD延长的机制不能通过KCNE1的过表达来解释。在这项研究中,我们基于非洲爪蟾卵母细胞表达的KCNQ1和KCNE1的实验数据构建心脏膜动作电位模拟模型,以研究KCNE1和APD升高之间的关系。此外,我们研究了心力衰竭中Ca 2 + 依赖性的瞬态向外钾电流(I to )降低对APD的影响。在仿真中,5ng KCNE1处的APD为180.96 ms,比1ng KCNE1(APD-172.96ms)处的APD长4.63%,比0.2ng KCNE1(APD-110.96ms)处的APD长55.9%。在单独注射KCNQ1和共注射0.2ng KCNE1的情况下,在其他情况下,APD随着I to 密度的降低而缩短,而APD随着I to 密度的降低而延长。这项研究表明,KCNE1表达水平的提高使I Ks 通道的最大电导增加,而I Ks 通道的电导缓慢地打开,而I Ks 通道的电导率却逐渐降低。根据APD时间标度减少。因此,通过这种机制,增加KCNE1表达水平可以延长APD。这种基于实验的模拟模型构建方法有助于解释钾电流与QT间隔延长之间的关系

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