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犬心房中的瞬时外向电流和延迟整流电流:分离方法的特性及作用

Transient outward and delayed rectifier currents in canine atrium: properties and role of isolation methods.

作者信息

Yue L, Feng J, Li G R, Nattel S

机构信息

Department of Medicine, Montreal Heart Institute, Quebec, Canada.

出版信息

Am J Physiol. 1996 Jun;270(6 Pt 2):H2157-68. doi: 10.1152/ajpheart.1996.270.6.H2157.

Abstract

Although the dog is the principal species used for in vivo studies of atrial arrhythmias, little is known about currents governing canine atrial repolarization. Cells were isolated from dog atria by exposure to collagenase of tissue in vitro ("chunk cells") and by arterial perfusion ("perfusion cells"). Whole cell voltage clamp revealed transient outward K+ current (Ito1), Ca(2+)-dependent Cl- current (Ito2), and delayed rectifier K+ current (IK). Ito1 recovered rapidly and showed little frequency dependence. Two components of IK were present as follows: a rapidly activating E-4031-sensitive current with marked inward recitification and a slower-activating E-4031-insensitive component. Ito1 and IK resembled corresponding currents previously described in human atrium. Transient outward currents were similar in chunk and perfusion cells, but IK was seen in 4% of chunk cells vs. 99% of perfusion cells (P < 0.001). Suppression of each identified current retarded canine action potential repolarization. We conclude that Ito1, Ito2, and both components of IK are present in dog atrium, IK is much more sensitive to the isolation method than Ito1 or Ito2, and the properties of two important repolarizing currents (Ito1 and IK) previously described in human atrium are similar to those in dog atrium.

摘要

尽管狗是用于心房心律失常体内研究的主要物种,但关于控制犬类心房复极化的电流却知之甚少。通过体外将组织暴露于胶原酶(“块状细胞”)和动脉灌注(“灌注细胞”)从犬心房分离细胞。全细胞电压钳显示出瞬时外向钾电流(Ito1)、钙依赖性氯电流(Ito2)和延迟整流钾电流(IK)。Ito1快速恢复且频率依赖性很小。IK存在两个成分,如下:一个快速激活的对E - 4031敏感的电流,具有明显的内向整流,以及一个激活较慢的对E - 4031不敏感的成分。Ito1和IK类似于先前在人心房中描述的相应电流。块状细胞和灌注细胞中的瞬时外向电流相似,但在4%的块状细胞中可见IK,而在99%的灌注细胞中可见(P < 0.001)。对每种已识别电流的抑制都会延迟犬类动作电位的复极化。我们得出结论,Ito1、Ito2和IK的两个成分都存在于犬心房中,IK对分离方法的敏感性远高于Ito1或Ito2,并且先前在人心房中描述的两种重要复极化电流(Ito1和IK)的特性与犬心房中的相似。

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