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首页> 外文期刊>American Journal of Physiology >Influence of channel subunit composition on L-type Ca2+ current kinetics and cardiac wave stability.
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Influence of channel subunit composition on L-type Ca2+ current kinetics and cardiac wave stability.

机译:通道亚基组成对L型Ca2 +电流动力学和心脏波稳定性的影响。

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Previous studies have demonstrated that the slope of the function relating the action potential duration (APD) and the diastolic interval, known as the APD restitution curve, plays an important role in the initiation and maintenance of ventricular fibrillation. Since the APD restitution slope critically depends on the kinetics of the L-type Ca(2+) current, we hypothesized that manipulation of the subunit composition of these channels may represent a powerful strategy to control cardiac arrhythmias. We studied the kinetic properties of the human L-type Ca(2+) channel (Ca(v)1.2) coexpressed with the alpha(2)delta-subunit alone (alpha(1C) + alpha(2)delta) or in combination with beta(2a), beta(2b), or beta(3) subunits (alpha(1C) + alpha(2)delta + beta), using Ca(2+) as the charge carrier. We then incorporated the kinetic properties observed experimentally into the L-type Ca(2+) current mathematical model of the cardiac action potential to demonstrate that the APD restitution slope can be selectively controlled by altering the subunit composition of the Ca(2+) channel. Assuming that beta(2b) most closely resembles the native cardiac L-type Ca(2+) current, the absence of beta, as well as the coexpression of beta(2a), was found to flatten restitution slope and stabilize spiral waves. These results imply that subunit modification of L-type Ca(2+) channels can potentially be used as an antifibrillatory strategy.
机译:先前的研究表明,与动作电位持续时间(APD)和舒张间隔有关的函数斜率(称为APD恢复曲线)在心室纤颤的发生和维持中起着重要作用。由于APD恢复斜率关键取决于L型Ca(2+)电流的动力学,我们假设对这些通道的亚基组成的操纵可能代表了控制心律不齐的强大策略。我们研究了人类L型Ca(2+)通道(Ca(v)1.2)与alpha(2)delta-subunit单独(alpha(1C)+ alpha(2)delta)或组合表达的动力学特性使用Ca(2+)作为电荷载体的beta(2a),beta(2b)或beta(3)亚基(alpha(1C)+ alpha(2)delta + beta)。然后,我们将实验观察到的动力学特性纳入心脏动作电位的L型Ca(2+)当前数学模型中,以证明可以通过更改Ca(2+)通道的亚基组成来选择性地控制APD还原斜率。假设beta(2b)最接近于本地心脏L型Ca(2+)电流,则不存在beta,以及beta(2a)的共表达,可以使恢复斜率变平并稳定螺旋波。这些结果暗示L型Ca(2+)通道的亚基修饰可以潜在地用作抗纤颤策略。

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