Xu Rong, Liu Bei-Ying, Niu Wei-Zhen
Department of Cardiovascular Physiology, Capital University of Medical Sciences, Beijing 100054.
Sheng Li Xue Bao. 2002 Apr 25;54(2):154-8.
The purpose of this study was to investigate the effects of calcitonin gene-related peptide (CGRP) on the repolarization process in isolated guinea-pig atrial cells and to determine the contribution of K(+) channels to the CGRP-induced changes in action potential using conventional microelectrode method at the physiological temperature. We found that: (1) CGRP (16 nmol/L) antagonized the influences of potassium channel blockers, 4-AP and BaCl2, on action potential; (2) CGRP (16 nmol/L) increased the amplitude and maximum depolarizing velocity of slow action potential and shortened the conducting time in guinea pig atrial myocardium at extracellular K(+) concentration of 18.5 mmol/L; (3) CGRP (16 nmol/L) alleviated triggered activity induced by superfusion with solution containing CsCl and no potassium ion; and (4) the effects of CGRP on the configuration of action potential were temperature-dependent. At the temperature of 36.5+/-0.5 degrees C, CGRP (5, 16, and 50 nmol/L) increased the amplitude of the action potential and shortened APD(20), APD(50) and APD(90). The CGRP effects on APD(20) and APD(50) were dose-dependent and reversible. On the contrary, CGRP prolonged APD(20), APD(50) and APD(90) at the temperature of 25.5+/-2.1 degrees C. The present study suggests that CGRP possesses multiple effects on various ionic channels. Among them the effects on potassium currents are major determinants in the changes in action potential induced by CGRP under physiological temperature. It is necessary to further study the influences of CGRP on different types of potassium channels.
本研究旨在利用传统微电极方法,在生理温度下研究降钙素基因相关肽(CGRP)对豚鼠离体心房细胞复极化过程的影响,并确定钾离子通道在CGRP诱导的动作电位变化中的作用。我们发现:(1)CGRP(16 nmol/L)拮抗钾通道阻滞剂4-氨基吡啶(4-AP)和氯化钡(BaCl2)对动作电位的影响;(2)在细胞外钾离子浓度为18.5 mmol/L时,CGRP(16 nmol/L)增加了豚鼠心房肌慢动作电位的幅度和最大去极化速度,并缩短了传导时间;(3)CGRP(16 nmol/L)减轻了用含氯化铯(CsCl)且无钾离子的溶液灌流诱导的触发活动;(4)CGRP对动作电位形态的影响与温度有关。在36.5±0.5℃时,CGRP(5、16和50 nmol/L)增加了动作电位的幅度,并缩短了动作电位时程的20%(APD20)、50%(APD50)和90%(APD90)。CGRP对APD20和APD50的影响呈剂量依赖性且可逆。相反,在25.5±2.1℃时,CGRP延长了APD20、APD50和APD90。本研究表明,CGRP对多种离子通道具有多种作用。其中,对钾电流的影响是生理温度下CGRP诱导动作电位变化的主要决定因素。有必要进一步研究CGRP对不同类型钾通道的影响。