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瞬时外向电流对人心房复极化的作用。

Contributions of a transient outward current to repolarization in human atrium.

作者信息

Shibata E F, Drury T, Refsum H, Aldrete V, Giles W

机构信息

Department of Medical Physiology, University of Calgary, Alberta, Canada.

出版信息

Am J Physiol. 1989 Dec;257(6 Pt 2):H1773-81. doi: 10.1152/ajpheart.1989.257.6.H1773.

Abstract

Conventional microelectrode recordings combined with enzymatic cell dispersion methods and a single microelectrode voltage-clamp technique were used to record transmembrane action potentials and ionic currents in isolated single myocytes and in excised segments of human right atrium. Recordings of the outward current(s), which is responsible for the resting potential and early repolarization of the action potential in human right atrium, consistently showed that this tissue has 1) a relatively small inwardly rectifying background potassium current (IK1) which generates the resting potential in mammalian ventricular tissue and Purkinje fibers, and 2) a large time- and voltage-dependent, but Ca2(+)-independent, transient outward current. A somewhat similar K+ current was originally described in neurons and recently has also been identified in a variety of mammalian cardiac tissues. As expected from previous work, this transient outward current in human atrium is blocked by 4-aminopyridine (4-AP; 0.5 mM) and exhibits time- and voltage-dependent inactivation and reactivation. Measurements of action potential shape changes and phasic tension as a function of stimulus frequency, or after 4-AP application, show that in human atrium this current can produce pronounced changes in both the early repolarization of the action potential and force generation.

摘要

采用传统微电极记录法,结合酶促细胞分散方法和单微电极电压钳技术,记录分离的单个心肌细胞和人右心房离体节段的跨膜动作电位和离子电流。对人右心房动作电位静息电位和早期复极化起作用的外向电流记录结果始终表明,该组织具有:1)相对较小的内向整流背景钾电流(IK1),它在哺乳动物心室组织和浦肯野纤维中产生静息电位;2)一种较大的、时间和电压依赖性但与Ca2+无关的瞬时外向电流。一种有些类似的钾电流最初在神经元中被描述,最近在多种哺乳动物心脏组织中也被发现。正如先前工作所预期的那样,人心房中的这种瞬时外向电流被4-氨基吡啶(4-AP;0.5 mM)阻断,并表现出时间和电压依赖性失活与再激活。作为刺激频率的函数,或在应用4-AP后,对动作电位形状变化和相位张力的测量表明,在人心房中,这种电流可在动作电位的早期复极化和力的产生方面均产生显著变化。

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