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氧化应激相关研究领域中线粒体靶向阳离子的使用方法。

Methodology for use of mitochondria-targeted cations in the field of oxidative stress-related research.

作者信息

Vyssokikh Mikhail Y, Antonenko Yury N, Lyamzaev Konstantin G, Rokitskaya Tatyana I, Skulachev Vladimir P

机构信息

Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Bldg. 40, Leninskie Gory 1, Moscow, 119992, Russia.

出版信息

Methods Mol Biol. 2015;1265:149-59. doi: 10.1007/978-1-4939-2288-8_12.

Abstract

For many pathological conditions, reactive oxygen species (ROS) generated in mitochondria are considered to have a role as a trigger. When mitochondrial ROS (mROS) are formed in the inner mitochondrial membrane, they initiate free radical-mediated chain reactions of lipid peroxidation and are thus especially damaging. The consequences of membrane damage are decreased electrical resistance of the membrane, oxidative damage to cardiolipin (a mitochondria specific lipid essential for functioning of respiratory chain proteins and H(+)-ATP synthase), and damage to mitochondrial DNA localized in close vicinity to the inner membrane, with consequent mitochondrial dysfunction and induction of apoptotic cascade and cell death. To target the starting point of such undesirable events, antioxidants conjugated with mitochondria-targeted, membrane-penetrating cations can be used to scavenge ROS inside mitochondria. The most demonstrative indications favoring this conclusion originate from recent discoveries of the in vivo effects of such cations belonging to the MitoQ and SkQ groups. Here we describe some essential methodological aspects of the application of mitochondria-targeted cations promising in treating oxidative stress-related pathologies.

摘要

对于许多病理状况而言,线粒体中产生的活性氧(ROS)被认为起到触发作用。当线粒体内膜形成线粒体ROS(mROS)时,它们会引发自由基介导的脂质过氧化链式反应,因此具有特别的破坏性。膜损伤的后果包括膜电阻降低、对心磷脂(一种对呼吸链蛋白和H(+) - ATP合酶功能至关重要的线粒体特异性脂质)的氧化损伤,以及对位于内膜附近的线粒体DNA的损伤,进而导致线粒体功能障碍,并引发凋亡级联反应和细胞死亡。为了针对此类不良事件的起始点,可以使用与线粒体靶向、膜穿透性阳离子结合的抗氧化剂来清除线粒体内的ROS。支持这一结论的最具说服力的证据来自于最近对属于MitoQ和SkQ组的此类阳离子体内效应的发现。在此,我们描述了有望用于治疗氧化应激相关病症的线粒体靶向阳离子应用的一些基本方法学方面。

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