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Calcium Calmodulin Dependent Protein Kinase II (CaMKII) Contribute to Arrhythmias after Acidosis: Simulation Study

机译:钙钙调蛋白依赖性蛋白激酶II(Camkii)有助于酸中毒后的心律失常:仿真研究

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In this paper, to analyze the functional influence of acidosis on cardiac electrical activity and subsequently on ventricular arrhythmia, a human ventricular acidotic model with PH and CaM kinase II (CaMKII) regulation was developed. Dynamic changes of ionic currents and action potentials during the acidosis process were simulated, and the changes of action potential of different conditions (with CaMKII and without CaMKII) were compared during acidosis. In addition the acidosis-induced changes of electrocardiogram waveform were computed using the one-dimensional tissue model. The experimental results showed that in the process of acidosis, CaMKII was highly activated, the concentration of both sodium and calcium within the cell elevated. Especially, at the early stage of the post acidosis, delayed afterdepolarizations (DADs) were generated in the cellular membrane potential, but DADs would disappear when eliminating the effect of CaMKII on all ion currents. At last, the triggered activities induced in cells during post acidosis period caused ectopic depolarization and ectopic repolarization in the cardiac tissue. Meanwhile, the simulated electrocardiogram showed premature ventricular contractions.
机译:本文在分析酸中毒对心性心律失常的功能影响,随后对心律失常进行心律失常,开发了一种具有pH和凸轮激酶II(Camkii)调节的人性酸性模型。模拟了酸中毒过程中离子电流和动作电位的动态变化,并在酸中测量中进行了不同条件的动作潜力(用Camkii和没有Camkii)的变化。此外,使用一维组织模型计算酸中毒诱导的心电图波形变化。实验结果表明,在酸中毒的过程中,Camkii高度活化,细胞内钠和钙的浓度升高。特别是,在后酸中的早期阶段,在细胞膜电位中产生延迟的后掺量(爸爸),但是在消除Camkii对所有离子电流的影响时,爸爸将消失。最后,在后酸中毒时段后细胞中诱导的触发活性引起了心脏组织中的异位去极化和异位复原。同时,模拟心电图显示出过早的心室收缩。

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