Wilders R, Jongsma H J
Department of Physiology, University of Amsterdam, The Netherlands.
Biophys J. 1993 Dec;65(6):2601-13. doi: 10.1016/S0006-3495(93)81289-X.
Single pacemaker heart cells discharge irregularly. Data on fluctuations in interbeat interval of single pacemaker cells isolated from the rabbit sinoatrial node are presented. The coefficient of variation of the interbeat interval is quite small, approximately 2%, even though the coefficient of variation of diastolic depolarization rate is approximately 15%. It has been hypothesized that random fluctuations in interbeat interval arise from the stochastic behavior of the membrane ionic channels. To test this hypothesis, we constructed a single channel model of a single pacemaker cell isolated from the rabbit sinoatrial node, i.e., a model into which the stochastic open-close kinetics of the individual membrane ionic channels are incorporated. Single channel conductances as well as single channel open and closed lifetimes are based on experimental data from whole cell and single channel experiments that have been published in the past decade. Fluctuations in action potential parameters of the model cell are compared with those observed experimentally. It is concluded that fluctuations in interbeat interval of single sinoatrial node pacemaker cells indeed are due to the stochastic open-close kinetics of the membrane ionic channels.
单个起搏心肌细胞的放电是不规则的。本文给出了从兔窦房结分离出的单个起搏细胞心跳间期波动的数据。尽管舒张期去极化速率的变异系数约为15%,但心跳间期的变异系数相当小,约为2%。据推测,心跳间期的随机波动源于膜离子通道的随机行为。为了验证这一假设,我们构建了一个从兔窦房结分离出的单个起搏细胞的单通道模型,即一个纳入了单个膜离子通道随机开闭动力学的模型。单通道电导以及单通道开放和关闭寿命均基于过去十年发表的全细胞和单通道实验的实验数据。将模型细胞动作电位参数的波动与实验观察到的波动进行比较。得出的结论是,单个窦房结起搏细胞心跳间期的波动确实是由于膜离子通道的随机开闭动力学所致。