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缺氧大鼠心脏冠脉流出液对心肌收缩的非钙离子依赖性抑制作用。

Ca2+-independent inhibition of myocardial contraction by coronary effluent of hypoxic rat hearts.

作者信息

Yang Z K, Draper N J, Shah A M

机构信息

Department of Cardiology, University of Wales College of Medicine, Cardiff CF4 4XN, United Kingdom.

出版信息

Am J Physiol. 1999 Feb;276(2):H623-32. doi: 10.1152/ajpheart.1999.276.2.H623.

Abstract

Endothelial cells release agents that influence cardiac contraction. We recently reported that cultured hypoxic endothelial cells release an unidentified factor(s) that inhibits myocardial contraction. In this study, we investigated the effects of coronary effluent of isolated hypoxic rat hearts on isolated rat ventricular myocyte contraction. Coronary effluent collected during brief moderate hypoxia significantly depressed myocyte twitch shortening and decreased diastolic length, with only minor reduction in intracellular Ca2+ transients. These effects were similar to those of hypoxic rat coronary microvascular endothelial cell superfusates and were reversed by reoxygenation of hearts. "Hypoxic" coronary effluent exerted essentially Ca2+-independent effects on myofilament interaction in intact myocytes, as assessed by 1) peak Ca2+-shortening relations, 2) phase-plane analysis of instantaneous Ca2+-cell length relations, and 3) "steady-state" myofilament responses in tetanized, sarcoplasmic reticulum-disabled cells. Thus an unidentified substance(s) that inhibits myocyte shortening predominantly via effects on the myofilaments is reversibly released during acute moderate hypoxia of isolated hearts, presumably from coronary endothelial cells. Release of such an agent may be relevant to the cardiac contractile response to hypoxia.

摘要

内皮细胞释放影响心脏收缩的介质。我们最近报道,培养的缺氧内皮细胞释放一种未确定的因子,该因子可抑制心肌收缩。在本研究中,我们研究了分离的缺氧大鼠心脏的冠状动脉流出物对分离的大鼠心室肌细胞收缩的影响。在短暂中度缺氧期间收集的冠状动脉流出物显著抑制肌细胞收缩期缩短并降低舒张期长度,而细胞内Ca2+瞬变仅略有减少。这些作用与缺氧大鼠冠状动脉微血管内皮细胞的灌流液相似,且心脏复氧后这些作用可逆转。通过1)Ca2+峰值-缩短关系、2)瞬时Ca2+-细胞长度关系的相平面分析以及3)强直收缩、肌浆网失活细胞中的“稳态”肌丝反应评估,“缺氧”冠状动脉流出物对完整肌细胞中的肌丝相互作用产生基本不依赖Ca2+的作用。因此,在分离的心脏急性中度缺氧期间,一种主要通过对肌丝的作用来抑制肌细胞缩短的未确定物质可逆地释放,推测来自冠状动脉内皮细胞。这种介质的释放可能与心脏对缺氧的收缩反应有关。

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