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Effects of small conductance calcium activated potassium channels in cardiac myocytes

机译:小电导钙激活钾通道对心肌细胞的影响

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Among the different potassium channels present in cardiac myocytes, the small conductance Ca2+ activated potassium channels (SK channels) are particular because they are affected by changes in intracellular calcium. The functional role of these channels in cardiac electrophysiology is still under intense debate. While they do not seem to play an important role in healthy hearts - their associated current, IKCa, is smaller than other potassium currents -, there is increasing evidence that they may become relevant under pathological conditions. In fact, both pro- and anti-arrhythmic effects have been assigned to these channels, depending on the clinical situation. In this work, we have incorporated the current through SK channels, IKCa, into an electrophysiological ionic model of human atria myocyte. This allows us to evaluate changes in the action potential under different parameters affecting the kinetics of these channels. We observe a large dependence of the action potential duration with the conductance and gate dynamics of the channel. The dependence of SK channels with changes in intracellular calcium dynamics helps decreasing the pro-arrhythmic effect of spontaneous calcium release events.
机译:在心肌细胞中存在的不同钾通道中,小的电导Ca2 +激活的钾通道(SK通道)特别重要,因为它们受细胞内钙变化的影响。这些通道在心脏电生理中的功能作用仍在激烈的争论中。尽管它们似乎并未在健康的心脏中起重要作用,但它们的相关电流 KCa 小于其他钾电流-,越来越多的证据表明它们在病理条件下可能具有相关性。实际上,视临床情况而定,前和后心律失常作用均已分配给这些通道。在这项工作中,我们将通过SK通道IKCa的电流整合到人心房肌细胞的电生理离子模型中。这使我们能够评估在影响这些通道动力学的不同参数下动作电位的变化。我们观察到动作电位持续时间与通道的电导率和门控动力学之间存在很大的相关性。 SK通道对细胞内钙动力学变化的依赖性有助于降低自发性钙释放事件的促心律失常作用。

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