Gray R A, Huelsing D J, Aguel F, Trayanova N A
Department of Biomedical Engineering, University of Alabama at Birmingham, 35294-0019, USA.
J Cardiovasc Electrophysiol. 2001 Oct;12(10):1129-37. doi: 10.1046/j.1540-8167.2001.01129.x.
Little is known about how the amplitude and timing of transmembrane current pulses affect transmembrane potential (Vm) and action potential duration (APD) in isolated myocytes.
Ten ventricular myocytes were isolated from five rabbit hearts. Each cell was paced at an S1 cycle length of 250 msec, and S2 pulses of 10-msec duration were delivered at various strengths and time intervals. For all S2 strengths (0.2 to 1.5 nA), the magnitude of changes in Vm did not depend on polarity during the plateau, but were larger for depolarizing pulses during phase 3 repolarization. However, the magnitude of changes in APD varied with polarity during the entire action potential for strengths ranging from 0.5 to 1.5 nA. Greater changes in APD occurred for hyperpolarizing pulses during the plateau and depolarizing pulses during phase 3. In addition, we used a cardiac phase variable to quantify the current threshold for regenerative depolarization and repolarization as a function of prestimulus Vm. Regenerative depolarization occurred during phase 3 repolarization, and its current threshold was less than that required for regenerative repolarization that occurred during the plateau. These data were compared to computer simulations in a patch of membrane represented by Luo-Rudy dynamic kinetics, and the results were qualitatively similar, including the higher threshold for regenerative repolarization compared to regenerative depolarization.
This characterization of the nonlinear response of isolated cells to transmembrane current, including phase resetting, should aid in understanding the mechanisms of defibrillation because shock-induced changes in Vm and APD have been implicated as important factors in determining defibrillation success.
关于跨膜电流脉冲的幅度和时间如何影响分离的心肌细胞中的跨膜电位(Vm)和动作电位持续时间(APD),目前所知甚少。
从五只兔心脏中分离出十个心室肌细胞。每个细胞以250毫秒的S1周期长度进行起搏,并在不同强度和时间间隔下施加持续时间为10毫秒的S2脉冲。对于所有S2强度(0.2至1.5纳安),在平台期Vm变化的幅度不取决于极性,但在复极化3期去极化脉冲时变化幅度更大。然而,对于强度范围为0.5至1.5纳安的情况,在整个动作电位期间APD变化的幅度随极性而变化。在平台期超极化脉冲和复极化3期去极化脉冲时,APD发生更大的变化。此外,我们使用心脏相位变量来量化作为刺激前Vm函数的再生性去极化和复极化的电流阈值。再生性去极化发生在复极化3期,其电流阈值低于平台期发生的再生性复极化所需的阈值。将这些数据与由Luo-Rudy动态动力学表示的膜片的计算机模拟进行比较,结果在定性上相似,包括再生性复极化的阈值高于再生性去极化。
这种对分离细胞对跨膜电流的非线性反应(包括相位重置)的表征,应有助于理解除颤机制,因为电击引起的Vm和APD变化已被认为是决定除颤成功的重要因素。