在一种新的大鼠心室电生理模型中,内向整流电流下调促进自发钙释放

Harley J. Stevenson-Cocks, M. Colman, E. White, A. Benson
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引用次数: 0

摘要

细胞内钙处理异常,如在心力衰竭等疾病中观察到的,可促进致死性室性心律失常和心源性猝死。我们实验室最近的数据表明,在衰竭的大鼠肌细胞中,内向整流电流的表达减少会增加自发的钙释放,然而现有的计算模型无法再现潜在的随机钙循环动力学,因此我们无法使用模拟方法来探索这种促心律失常行为的原因。在这里,我们开发了一种新的大鼠心室电生理模型,再现了正常的时空钙动力学。模拟实验表明,在去极化静息膜电位存在的情况下,动作电位延长和肌浆网负荷促进了自发钙释放。综合起来,这些影响会导致触发活动。因此,该模型提供了对衰竭心室肌细胞致心律失常机制的深入了解,并可用于进一步探索由异常钙处理引起的促心律失常行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inward Rectifier Current Downregulation Promotes Spontaneous Calcium Release in a Novel Model of Rat Ventricular Electrophysiology
Aberrant intracellular calcium handling, as observed in diseases such as heart failure, promotes lethal ventricular arrhythmias and sudden cardiac death. Recent data from our laboratory suggests that reduced expression of the inward rectifier current in failing rat myocytes increases spontaneous calcium release, however existing computational models are unable to reproduce the underlying stochastic calcium cycling dynamics and so we have been unable to use simulation approaches to explore the cause of this pro-arrhythmic behaviour. Here, we develop a novel model of rat ventricular electrophysiology that reproduces normal spatio-temporal calcium dynamics. Simulations implementing a similar reduction in inward rectifier current to that observed experimentally show that spontaneous calcium release is promoted by action potential prolongation and sarcoplasmic reticulum loading in the presence of a depolarised resting membrane potential. Combined, these effects can result in triggered activity. The model therefore provides insight into arrhythmogenic mechanisms in failing ventricular myocytes and can be utilised to further explore pro-arrhythmic behaviour caused by abnormal calcium handling.
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