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首页> 外文期刊>Biophysical Journal >A dynamic model of excitation-contraction coupling during acidosis in cardiac ventricular myocytes
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A dynamic model of excitation-contraction coupling during acidosis in cardiac ventricular myocytes

机译:心脏心室肌细胞酸中毒过程中兴奋-收缩偶联的动力学模型

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Acidosis in cardiac myocytes is a major factor in the reduced inotropy that occurs in the ischemic heart. During acidosis, diastolic calcium concentration and the amplitude of the calcium transient increase, while the strength of contraction decreases. This has been attributed to the inhibition by protons of calcium uptake and release by the sarcoplasmic reticulum, to a rise of intracellular sodium caused by activation of sodium-hydrogen exchange, decreased calcium binding affinity to Troponin-C, and direct effects on the contractile machinery. The relative contributions and concerted action of these effects are, however, difficult to establish experimentally. We have developed a mathematical model to examine altered calcium-handling mechanisms during acidosis. Each of the alterations was incorporated into a dynamical model of pH regulation and excitation-contraction coupling to predict the time courses of key ionic species during acidosis, in particular intracellular pH, sodium and the calcium transient, and contraction. This modeling study suggests that the most significant effects are elevated sodium, inhibition of sodium-calcium exchange, and the direct interaction of protons with the contractile machinery; and shows how the experimental data on these contributions can be reconciled to understand the overall effects of acidosis in the beating heart.
机译:心肌细胞中的酸中毒是缺血性心脏中发生的肌力下降的主要因素。在酸中毒期间,舒张期钙浓度和钙瞬变幅度增加,而收缩强度降低。这归因于质子对钙质摄取和肌浆网的释放的抑制,归因于钠氢交换激活引起的细胞内钠升高,钙与肌钙蛋白-C的结合亲和力下降,以及对收缩机制的直接影响。但是,这些作用的相对作用和协同作用很难通过实验确定。我们已经开发出一种数学模型来检查酸中毒期间改变的钙处理机制。每个改变都被合并到pH调节和激发-收缩耦合的动力学模型中,以预测酸中毒过程中关键离子物质的时程,尤​​其是细胞内pH,钠和钙的瞬态变化和收缩。这项建模研究表明,最显着的影响是钠的升高,钠钙交换的抑制以及质子与收缩机制的直接相互作用。并说明如何协调有关这些贡献的实验数据,以了解酸中毒对跳动的心脏的总体影响。

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