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正常心肌与肥厚心肌慢反应动作电位的比较。

Comparison of slow response action potentials from normal and hypertrophied myocardium.

作者信息

Hemwall E L, Duthinh V, Houser S R

出版信息

Am J Physiol. 1984 May;246(5 Pt 2):H675-82. doi: 10.1152/ajpheart.1984.246.5.H675.

Abstract

Previous studies have shown that papillary muscles from hypertrophied cat right ventricles (RVH) exhibit altered mechanical properties which may be associated with defects in the excitation-contraction coupling process. Since calcium influx [as slow inward current (Isi) during the cardiac action potential is thought to be a major determinant of contractile state, we compared Isi-mediated slow response action potentials ( SRAPs ) in papillary muscles from cats with RVH, induced by chronic pulmonary artery constriction, to SRAPs from sham-operated controls. The results show that 1) when depolarized by elevated extracellular potassium (K+o, 22 mM), RVH muscles became inexcitable (as defined here) significantly faster than control muscles; 2) inexcitable RVH muscles required significantly more isoproterenol than controls to restore slow response activity; 3) at all isoproterenol concentrations tested, SRAPs from RVH muscles were reduced in amplitude and duration compared with controls; 4) SRAPs evoked by long duration stimulus pulses in the absence of isoproterenol were also markedly reduced in RVH; and 5) the relationship between resting potential and K+o was the same in both groups. If the alterations in SRAPs observed in RVH are produced by a smaller Isi, this change may be associated with the diminished inotropic state of cardiac muscle caused to hypertrophy due to pressure overload.

摘要

以往的研究表明,来自肥大猫右心室(RVH)的乳头肌表现出机械性能改变,这可能与兴奋-收缩偶联过程中的缺陷有关。由于钙内流(作为心脏动作电位期间的缓慢内向电流[Isi])被认为是收缩状态的主要决定因素,我们将由慢性肺动脉收缩诱导的RVH猫乳头肌中Isi介导的慢反应动作电位(SRAPs)与假手术对照组的SRAPs进行了比较。结果表明:1)当细胞外钾升高(K+o,22 mM)去极化时,RVH肌肉比对照肌肉显著更快地变得不可兴奋(此处定义);2)不可兴奋的RVH肌肉比对照组需要显著更多的异丙肾上腺素来恢复慢反应活性;3)在所有测试的异丙肾上腺素浓度下,与对照组相比,RVH肌肉的SRAPs振幅和时程均降低;4)在无异丙肾上腺素的情况下,长时间刺激脉冲诱发的RVH中的SRAPs也明显降低;5)两组的静息电位与K+o之间的关系相同。如果在RVH中观察到的SRAPs改变是由较小的Isi产生的,那么这种变化可能与压力超负荷导致心肌肥大引起的心肌收缩力状态降低有关。

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