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Dynamical analysis of the calcium signaling pathway in cardiac myocytes based on logarithmic sensitivity analysis

机译:基于对数敏感性分析的心肌细胞钙信号通路的动力学分析

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摘要

Many cellular functions are regulated by the Ca2+ signal which contains specific information in the form of frequency, amplitude, and duration of the oscillatory dynamics,. Any alterations or dysfunctions of components in the calcium signaling pathway of cardiac myocytes may lead to a diverse range of cardiac diseases including hypertrophy and heart failure,. In this study, we have investigated the hidden dynamics of the intracellular Ca2+ signaling and the functional roles of its regulatory mechanism through in silico simulations and parameter sensitivity analysis based on an experimentally verified mathematical model It was revealed that the Ca2+ dynamics of cardiac myocytes are determined by the balance among various system parameters. Moreover, it was found through the parameter sensitivity analysis that the self-oscillatory Ca2+ dynamics are most sensitive to the Ca2+ leakage rate of the sarcolemmal membrane and the maximum rate of NCX, suggesting that these two components have dominant effects on circulating the cytosolic Ca2+,
机译:Ca2 +信号调节许多细胞功能,Ca2 +信号包含特定信息,包括频率,振幅和振荡动力学的持续时间。心肌细胞的钙信号传导途径中成分的任何改变或功能障碍均可导致多种心脏疾病,包括肥大和心力衰竭。在这项研究中,我们通过计算机模拟和基于实验验证的数学模型的参数敏感性分析,研究了细胞内Ca2 +信号传导的隐藏动力学及其调节机制的功能。结果表明,确定了心肌细胞的Ca2 +动力学是确定的通过各种系统参数之间的平衡。此外,通过参数敏感性分析发现,自振荡Ca2 +动力学对肌膜的Ca2 +泄漏率和NCX的最大速率最敏感,表明这两个成分对循环的胞质Ca2 +具有主导作用,

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