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A Spatiotemporal Ventricular Myocyte Model Incorporating Mitochondrial Calcium Cycling

机译:一种掺入线粒体钙循环的时空性心室肌细胞模型

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摘要

Intracellular calcium (Ca2+) cycling dynamics in cardiac myocytes are spatiotemporally generated by stochastic events arising from a spatially distributed network of coupled Ca2+ release units that interact with an intertwined mitochondrial network. In this study, we developed a spatiotemporal ventricular myocyte model that integrates mitochondria-related Ca2+ cycling components into our previously developed ventricular myocyte model consisting of a three-dimensional Ca2+ release unit network. Mathematical formulations of mitochondrial membrane potential, mitochondrial Ca2+ cycling, mitochondrial permeability transition pore stochastic opening and closing, intracellular reactive oxygen species signaling, and oxidized Ca2+/calmodulin-dependent protein kinase II signaling were incorporated into the model. We then used the model to simulate the effects of mitochondrial depolarization on mitochondrial Ca2+ cycling, Ca2+ spark frequency, and Ca2+ amplitude, which agree well with experimental data. We also simulated the effects of the strength of mitochondrial Ca2+ uniporters and their spatial localization on intracellular Ca2+ cycling properties, which substantially affected diastolic and systolic Ca2+ levels in the mitochondria but exhibited only a small effect on sarcoplasmic reticulum and cytosolic Ca2+ levels under normal conditions. We show that mitochondrial depolarization can cause Ca2+ waves and Ca2+ alternans, which agrees with previous experimental observations. We propose that this new, to our knowledge, spatiotemporal ventricular myocyte model, incorporating properties of mitochondrial Ca2+ cycling and reactive-oxygen-species-dependent signaling, will be useful for investigating the effects of mitochondria on intracellular Ca2+ cycling and action potential dynamics in ventricular myocytes.
机译:心肌细胞中的细胞内钙(CA2 +)循环动力学是由由与交织的线粒体网络相互作用的空间分布的CA2 +释放单元而产生的随机事件产生的时瞬发血液产生。在这项研究中,我们开发了一种时尚心室肌细胞模型,其将线粒体相关的Ca2 +循环组分与先前发育的心室肌细胞模型集成在一起,该模型包括三维CA2 +释放单元网络。线粒体膜电位的数学制剂,线粒体Ca2 +循环,线粒体渗透率过渡孔随机开口和关闭,细胞内反应性氧物质信号传导,氧化Ca2 + /钙调蛋白依赖性蛋白激酶II信号掺入模型中。然后我们使用该模型来模拟线粒体去极化对线粒体CA2 +循环,CA2 +火花频率和CA2 +幅度的影响,这与实验数据很好。我们还模拟了线粒体Ca2 +单百的强度对细胞内Ca2 +循环性质的影响,其在线粒体中显着影响了线粒体中的舒张和收缩性Ca2 +水平,但在正常条件下仅对肌肉网和细胞溶质Ca2 +水平表现出小的影响。我们表明线粒体去极化可导致CA2 +波和CA2 +替代,这与以前的实验观察同意。我们提出这一新的,涉及我们的知识时尚性心室肌细胞模型,其掺入线粒体CA2 +循环和反应性 - 氧物质依赖性信号传导的性能,可用于研究线粒体对心室内CA2 +循环和动作潜在动力的影响。肌细胞。

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