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线粒体与心脏保护作用

Mitochondria and cardioprotection.

作者信息

Di Lisa Fabio, Canton Marcella, Menabò Roberta, Kaludercic Nina, Bernardi Paolo

机构信息

Dipartimento di Chimica Biologica, Università di Padova, Viale G. Colombo 3, Padua 35121, Italy.

出版信息

Heart Fail Rev. 2007 Dec;12(3-4):249-60. doi: 10.1007/s10741-007-9028-z.

Abstract

Major factors linking mitochondrial dysfunction with myocardial injury are analyzed along with protective mechanisms elicited by endogenous processes and pharmacological treatments. In particular, a reduced rate of ATP hydrolysis and a slight increase in ROS formation appear to represent the prevailing components of self-defense mechanisms, especially in the case of ischemic preconditioning. These protective processes are activated by signaling pathways, which converge on mitochondria activating the mitochondrial K(ATP) channels and/or inhibiting the mitochondrial permeability transition pore. These pathways can also be stimulated by pharmacological treatments. Another major goal for cardioprotection is decreasing the burst in mitochondrial ROS formation that characterizes post-ischemic reperfusion. Finally, mitochondrial targets for therapeutic intervention may include the switch of substrate being utilized, because inhibition of fatty acid oxidation is associated with cardioprotective effects.

摘要

分析了将线粒体功能障碍与心肌损伤联系起来的主要因素,以及内源性过程和药物治疗引发的保护机制。特别是,ATP水解速率降低和活性氧生成略有增加似乎是自我防御机制的主要组成部分,尤其是在缺血预处理的情况下。这些保护过程由信号通路激活,这些信号通路汇聚于线粒体,激活线粒体ATP敏感性钾通道和/或抑制线粒体通透性转换孔。这些通路也可以通过药物治疗来刺激。心脏保护的另一个主要目标是减少缺血后再灌注所特有的线粒体活性氧爆发。最后,治疗干预的线粒体靶点可能包括所利用底物 的转换,因为抑制脂肪酸氧化与心脏保护作用相关。

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