In silico analysis of ventricular action potential with a current-voltage-time representation: Thresholds, membrane resistance, repolarization reserve.
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引用次数: 0
Abstract
The waveform of ventricular action potential (AP) is a key determinant of the cardiac cycle, a marker of beating pathophysiology, and a target for anti-arrhythmic drug design. The information contained in the waveform, though, is limited to the actual dynamics of the AP under consideration. By measuring quasi-instantaneous current-voltage relationships during repolarization, I propose a three-dimensional representation of the ventricular AP which includes potential dynamic responses that the beat can show when electrically perturbed. This representation is described in the case of a numerically reconstructed ventricular AP, but it can be, at least partially, derived in real cardiomyocytes. Simulation allows to disclose the potentialities and the limitations of the approach, that can be extended to any non-cardiac AP. By reporting, at any AP time, the ion current available within the physiological membrane potential range at that time, the representation makes all together available: (1) refractory period, (2) thresholds for eliciting full or calcium-driven APs, (3) threshold for all-or-none repolarization, (4) membrane resistance during repolarization, (5) the safety of membrane repolarization. It provides further evidence of a negative membrane resistance during the late phase of ventricular AP and a quantitative estimate of repolarization reserve (RR), key determinants of repolarization dynamics.
心室动作电位(AP)的波形是心动周期的关键决定因素,是心跳病理生理的标志,也是抗心律失常药物设计的目标。不过,波形中包含的信息仅限于所考虑的 AP 的实际动态。通过测量复极化过程中的准瞬时电流-电压关系,我提出了心室 AP 的三维表征,其中包括搏动在受到电扰动时可能表现出的动态响应。该表征以数值重建的心室 AP 为例进行描述,但至少可以在真实心肌细胞中部分得出。模拟可以揭示该方法的潜力和局限性,并可扩展到任何非心脏 AP。通过报告任何 AP 时间内生理膜电位范围内可用的离子电流,该表示法可提供:(1)折返期;(2)引发完全或钙驱动 AP 的阈值;(3)全或无复极化的阈值;(4)复极化过程中的膜电阻;(5)膜复极化的安全性。它提供了心室 AP 后期负膜电阻的进一步证据,以及对复极化动态的关键决定因素--复极化储备(RR)的定量估计。
期刊介绍:
Physiological Reports is an online only, open access journal that will publish peer reviewed research across all areas of basic, translational, and clinical physiology and allied disciplines. Physiological Reports is a collaboration between The Physiological Society and the American Physiological Society, and is therefore in a unique position to serve the international physiology community through quick time to publication while upholding a quality standard of sound research that constitutes a useful contribution to the field.