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Investigation of the mechanisms underlying cardiac alternans - insights from a computational study

机译:心脏交替基因潜在机制的研究-来自计算研究的见解

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Cardiac alternans is potentially associated with cardiac arrhythmia. Two forms of Cardiac alternans, action potential (AP) and Ca2+ transient (CaT) alternans are believed to be strongly correlated; however, the primary mechanisms underlying the occurrence of cardiac alternans are still unclear. In this study, a computational model of human ventricular cells was implemented to simulate cardiac alternans. By utilizing AP-clamp protocol, results showed that CaT alternans were generated at fast pacing rates, but absence at slow rates irrespective of AP alternans, suggesting that CaT alternans proceeded before AP alternans. By inhibiting the intracellular Ca2+ release from the sarcoplasmic reticulum (SR), CaT alternans were abolished, demonstrating a crucial role of the intracellular Ca2+ handling dynamics in genesis of cardiac alternans. Furthermore, ICaL and the SR content were analysed during the time courses of AP alternans. CaT alternans were observed without apparent association with alternating ICaL, but closely related to the alteration of the SR content. Our simulation data suggests that the leading cause of cardiac alternans in the human ventricle is CaT alternans, while AP alternans is the secondary result.
机译:心脏交替神经可能与心律不齐有关。两种形式的心脏交替蛋白,即动作电位(AP)和Ca2 +瞬变(CaT)交替蛋白,被认为具有很强的相关性。然而,心脏交替素发生的主要机制仍不清楚。在这项研究中,人类心室细胞的计算模型被实现来模拟心脏交替。通过使用AP-clamp协议,结果表明CaT交替产生的速度快,而与AP交替无关的速度慢,这提示CaT交替发生在AP交替发生之前。通过抑制细胞内钙离子从肌质网(SR)释放,CaT交替蛋白被废除,证明了胞内Ca2 +处理动力学在心脏交替蛋白发生中的关键作用。此外,在AP交替蛋白的时间过程中分析了ICaL和SR含量。观察到CaT交替蛋白与交替的ICaL没有明显的联系,但与SR含量的变化密切相关。我们的模拟数据表明,人脑室中心脏交替素的主要原因是CaT交替素,而AP交替素是次要结果。

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