Mitcheson J S, Hancox J C
Department of Physiology, School of Medical Sciences, University of Bristol, UK.
Pflugers Arch. 1999 Nov;438(6):843-50. doi: 10.1007/s004249900118.
The aim of this study was to measure and compare the profile of rapid delayed rectifier potassium current (IKr) elicited by action potential (AP) waveforms applied to isolated rabbit atrioventricular nodal (AVN) and ventricular myocytes. All measurements were made using whole-cell patch-clamp recordings at 37 degrees C. In AVN myocytes, IKr during voltage steps and slow ramp depolarisations showed "inward rectification" (characteristic for this channel) at positive potentials. The E-4031-sensitive current showed half-maximal activation at -10.8 +/- 0.86 mV, with a slope factor for the activation relation of 6.5 +/- 0.77 mV (n = 7). During AVN APs, IKr rapidly reached a peak after the AP upstroke and remained at similar amplitude until late in AP repolarisation. At the maximum diastolic potential following the AVN AP, a component of IKr remained which decayed during the pacemaker depolarisation, consistent with a role for the current in generating AVN pacemaker activity. In ventricular myocytes IKr was small at the beginning of the AP, and increased slowly during the AP plateau. Measurement of Ba-sensitive-inward rectifier K current (IK1) in ventricular myocytes revealed that IK1 rapidly increased during the final AP repolarisation phase, whilst IKr declined. It is concluded that IKr may participate in both AP repolarisation and the pacemaker depolarisation in AVN cells, whilst in ventricular myocytes, IKr and IK1 participate in controlling early and final AP repolarisation respectively.
本研究的目的是测量并比较施加于离体兔房室结(AVN)和心室肌细胞的动作电位(AP)波形所引发的快速延迟整流钾电流(IKr)的特性。所有测量均在37摄氏度下使用全细胞膜片钳记录进行。在AVN肌细胞中,电压阶跃和缓慢斜坡去极化期间的IKr在正电位时表现出“内向整流”(该通道的特征)。E - 4031敏感电流在-10.8 +/- 0.86 mV时显示出半数最大激活,激活关系的斜率因子为6.5 +/- 0.77 mV(n = 7)。在AVN动作电位期间,IKr在动作电位上升支后迅速达到峰值,并在动作电位复极化后期保持相似幅度。在AVN动作电位后的最大舒张电位时,IKr的一个成分仍然存在,并且在起搏去极化期间衰减,这与该电流在产生AVN起搏活动中的作用一致。在心室肌细胞中,IKr在动作电位开始时较小,并在动作电位平台期缓慢增加。对心室肌细胞中Ba敏感内向整流钾电流(IK1)的测量显示,IK1在动作电位最终复极化阶段迅速增加,而IKr下降。得出的结论是,IKr可能参与AVN细胞的动作电位复极化和起搏去极化,而在心室肌细胞中,IKr和IK1分别参与控制动作电位的早期和最终复极化。