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缺氧期间给予间隙连接解偶联剂对离体大鼠心脏复氧损伤的保护作用。

Protective effect of gap junction uncouplers given during hypoxia against reoxygenation injury in isolated rat hearts.

作者信息

Rodríguez-Sinovas Antonio, García-Dorado David, Ruiz-Meana Marisol, Soler-Soler Jordi

机构信息

Laboratorio de Investigación Cardiovascular, Hospitals Vall d'Hebron, Pg. Vall d'Hebron 119-129, 08035 Barcelona, Spain.

出版信息

Am J Physiol Heart Circ Physiol. 2006 Feb;290(2):H648-56. doi: 10.1152/ajpheart.00439.2005. Epub 2005 Sep 23.

Abstract

It has been shown that cell-to-cell chemical coupling may persist during severe myocardial hypoxia or ischemia. We aimed to analyze the effects of different, chemically unrelated gap junction uncouplers on the progression of ischemic injury in hypoxic myocardium. First, we analyzed the effects of heptanol, 18alpha-glycyrrhetinic acid, and palmitoleic acid on intracellular Ca2+ concentration during simulated hypoxia (2 mM NaCN) in isolated cardiomyocytes. Next, we analyzed their effects on developed and diastolic tension and electrical impedance in 47 isolated rat hearts submitted to 40 min of hypoxia and reoxygenation. All treatments were applied only during the hypoxic period. Cell injury was determined by lactate dehydrogenase (LDH) release. Heptanol, but not 18alpha-glycyrrhetinic acid nor palmitoleic acid, attenuated the increase in cytosolic Ca2+ concentration induced by simulated ischemia in cardiomyocytes and delayed rigor development (rigor onset at 7.31 +/- 0.71 min in controls vs. 14.76 +/- 1.44 in heptanol-treated hearts, P < 0.001) and the onset of the marked changes in electrical impedance (tissue resistivity: 4.02 +/- 0.29 vs. 7.75 +/- 1.84 min, P = 0.016) in hypoxic rat hearts. LDH release from hypoxic hearts was minimal and was not significantly modified by drugs. However, all gap junction uncouplers, given during hypoxia, attenuated LDH release during subsequent reoxygenation. Dose-response analysis showed that increasing heptanol concentration beyond the level associated with maximal effects on cell coupling resulted in further protection against hypoxic injury. In conclusion, gap junction uncoupling during hypoxia has a protective effect on cell death occurring upon subsequent reoxygenation, and heptanol has, in addition, a marked protective effect independent of its uncoupling actions.

摘要

研究表明,在严重心肌缺氧或缺血期间,细胞间化学偶联可能持续存在。我们旨在分析不同的、化学性质无关的缝隙连接解偶联剂对缺氧心肌缺血性损伤进展的影响。首先,我们分析了庚醇、18α - 甘草次酸和棕榈油酸对分离的心肌细胞在模拟缺氧(2 mM 氰化钠)期间细胞内 Ca2+ 浓度的影响。接下来,我们分析了它们对 47 个分离的大鼠心脏在经历 40 分钟缺氧和复氧过程中所产生的张力和舒张期张力以及电阻抗的影响。所有处理仅在缺氧期进行。通过乳酸脱氢酶(LDH)释放来确定细胞损伤。庚醇可减轻模拟缺血诱导的心肌细胞胞质 Ca2+ 浓度升高,并延迟僵硬度发展(对照组僵硬度起始时间为 7.31 ± 0.71 分钟,庚醇处理组为 14.76 ± 1.44 分钟,P < 0.001)以及缺氧大鼠心脏电阻抗显著变化的起始时间(组织电阻率:4.02 ± 0.29 分钟 vs. 7.75 ± 1.84 分钟,P = 0.016)。缺氧心脏的 LDH 释放量极少,且药物对其无显著影响。然而,在缺氧期间给予的所有缝隙连接解偶联剂均可减轻随后复氧期间的 LDH 释放。剂量 - 反应分析表明,将庚醇浓度增加至超过对细胞偶联产生最大效应的水平可进一步保护心肌免受缺氧损伤。总之,缺氧期间缝隙连接解偶联对随后复氧时发生的细胞死亡具有保护作用,此外,庚醇具有显著的保护作用,且与其解偶联作用无关。

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