药物对心脏起搏的毒性:一项多尺度模型研究

Xiangyun Bai, Henggui Zhang, Kuanquan Wang, Yongfeng Yuan, Qince Li, Na Zhao
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引用次数: 0

摘要

药物,如西沙必利,由于其副作用,即心脏毒性,必须退出临床使用。作为一种激动剂,它可以激活定位于窦房结(SAN)和心房的5-羟色胺4 (5-HT4)受体。我们的目标是通过多尺度模型(Zhang等人的兔SAN细胞ap模型和完整SAN-心房组织模型的解剖详细的二维模型)研究西沙匹利单独的作用及其与5-HT4受体的联合作用对心脏起搏动作电位(APs)及其传导的影响。在单细胞水平上,西沙必利对IKr的作用在中枢SAN细胞中有正向的变时作用,但对外周细胞几乎没有影响。当考虑其对5-HT4受体的激活时,西沙必利增加了中央SAN细胞的起搏速率(PR);但在外周SAN细胞中显著降低。在完整san -心房的组织水平上,西沙必利增加了PR,放大了5-HT4受体激活的心动过速效应。它改变了心脏兴奋波的激活顺序,降低了心房的最大上冲程速度。此外,在心房中观察到早期后去极化。我们的研究揭示了西沙必利诱发心律失常的机制,提示在设计新的抗心律失常药物时应避免5-HT4受体的激活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Drug toxicity on cardiac pacemaking: A multi-scale modelling study
Drugs, such as cisapride, have to be withdrawn from clinical uses due to their side effects, i.e., cardiotoxicity. As an agonist, it can activate 5-Hydroxytryptamine 4 (5-HT4) receptors which are localized in sinoatrial node (SAN) and atrium. Our goal was to investigate the actions of cisapride alone and its combined effects with 5-HT4 receptors that impair cardiac pacemaking action potentials (APs) and their conduction using multi-scale models (the Zhang et al. models of APs of rabbit SAN cells and an anatomically detailed 2-D model of the intact SAN-atrium tissue models). At single cell level, the action of cisapride on IKr had positive chronotropic effect in the central SAN cell, but had virtually no effect on the peripheral cell. When its activation to 5-HT4 receptors was also considered, cisapride increased the pacing rate (PR) in centre SAN cell; but decreased it substantially in the periphery SAN cell. At the tissue level of the intact SAN-atrium, cisapride increased the PR and amplified the tachycardia effect of 5-HT4 receptor activation. It altered the activation sequence of cardiac excitation waves and reduced the maximum up-stroke velocity of the atrium. Moreover, early afterdepolarization was observed in the atrium. Our study shed light on the mechanisms of cisapride-induced arrhythmogenesis, suggesting that 5-HT4 receptors activation should be avoided in designing new anti-arrhythmic drugs.
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