首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Carvedilol inhibits mitochondrial complex I and induces resistance to H2O2-mediated oxidative insult in H9C2 myocardial cells
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Carvedilol inhibits mitochondrial complex I and induces resistance to H2O2-mediated oxidative insult in H9C2 myocardial cells

机译:卡维地洛抑制线粒体复合物I,并诱导对H9C2心肌细胞中H2O2介导的氧化损伤的抗性

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摘要

Carvedilol, a beta-adrenoreceptor antagonist with strong antioxidant activity, produces a high degree of cardioprotection in a variety of experimental models of ischemic cardiac injury. Although growing evidences suggest specific effects on mitochondrial metabolism, how carvedilol would exert its overall activity has not been completely disclosed. In the present work we have investigated the impact of carvedilol-treatment on mitochondrial bioenergetic functions and ROS metabolism in H9C2 cells. This analysis has revealed a dose-dependent decrease in respiratory fluxes by NAD-dependent substrates associated with a consistent decline of mitochondrial complex I activity. These changes were associated with an increase in mitochondrial H2O2 production, total glutathione and protein thiols content. To evaluate the antioxidant activity of carvedilol, the effect of the exposure of control and carvedilol-pretreated H9C2 cells to H2O2 were investigated. The H2O2-mediated oxidative insult resulted in a significant decrease of mitochondrial respiration, glutathione and protein thiol content and in an increased level of GSSG. These changes were prevented by carvedilol-pretreatment. A similar protective effect on mitochondrial respiration could be obtained by pretreatment of the cells with a sub-saturating amount of rotenone, a complex I inhibitor. We therefore suggest that carvedilol exerts its protective antioxidant action both by a direct antioxidant effect and by a preconditioning-like mechanism, via inhibition of mitochondrial complex 1. (c) 2007 Elsevier B.V. All rights reserved.
机译:卡维地洛是一种具有强抗氧化剂活性的β-肾上腺素能受体拮抗剂,在各种缺血性心脏损伤的实验模型中均具有高度的心脏保护作用。尽管越来越多的证据表明对线粒体代谢有特定影响,但卡维地洛如何发挥其整体活性尚未完全揭示。在本工作中,我们研究了卡维地洛治疗对H9C2细胞中线粒体生物能功能和ROS代谢的影响。该分析表明,NAD依赖性底物引起的呼吸通量呈剂量依赖性下降,与线粒体复合体I活性的持续下降有关。这些变化与线粒体H2O2产量,总谷胱甘肽和蛋白质硫醇含量的增加有关。为了评估卡维地洛的抗氧化活性,研究了对照和卡维地洛预处理的H9C2细胞暴露于H2O2的影响。 H2O2介导的氧化损伤导致线粒体呼吸,谷胱甘肽和蛋白质硫醇含量显着降低,GSSG水平升高。卡维地洛预处理可防止这些变化。通过用亚饱和量的鱼藤酮(一种复杂的I抑制剂)预处理细胞,可以获得对线粒体呼吸的类似保护作用。因此,我们建议卡维地洛通过抑制线粒体复合物1,通过直接的抗氧化作用和类似预处理的机制发挥其保护性抗氧化作用。(c)2007 Elsevier B.V.保留所有权利。

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