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Targeting antioxidants to mitochondria and cardiovascular diseases: The effects of mitoquinone

机译:将抗氧化剂靶向线粒体和心血管疾病:米托醌的作用

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Mitochondria have long been known to play a critical role in maintaining the bioenergetic status of cells under physiological conditions. Mitochondria produce large amounts of free radicals, and mitochondrial oxidative damage can contribute to a range of degenerative conditions including cardiovascular diseases (CVDs). Although the molecular mechanisms responsible for mitochondrion-mediated disease processes are not correctly understood, oxidative stress seems to play an important role. Consequently, the selective inhibition of mitocondrial oxidative damage is an obvious therapeutic strategy. This review considers the process of CVD from a mitochondrial perspective and provides a summary of the following areas: reactive oxygen species (ROS) production and its role in pathophysiological processes such as CVD, currently available antioxidants and possible reasons for their efficacy and inefficacy in ameliorating oxidative stress-mediated diseases, and recent developments in mitochondria-targeted antioxidants that concentrate on the matrix-facing surface of the inner mitochondrial membrane. These mitochondrion-targeted antioxidants have been developed by conjugating the lipophilic triphenylphosphonium cation to antioxidant moieties such as ubiquinol. These compounds pass easily through biological membranes and, due to their positive charge, they accumulate several-hundred-fold within mitochondria. In this way they protect against mitochondrial oxidative damage and show potential as a future therapy for CVDs.
机译:长期以来,线粒体在维持生理条件下细胞的生物能状态中起着至关重要的作用。线粒体产生大量自由基,线粒体的氧化损伤可导致一系列退化性疾病,包括心血管疾病(CVD)。尽管不能正确理解负责线粒体介导的疾病过程的分子机制,但氧化应激似乎起着重要的作用。因此,选择性抑制线粒体氧化损伤是一种明显的治疗策略。这篇综述从线粒体的角度考虑了CVD的过程,并总结了以下领域:活性氧(ROS)的产生及其在诸如CVD的病理生理过程中的作用,目前可用的抗氧化剂以及其有效性和无效性改善的可能原因氧化应激介导的疾病,以及针对线粒体的抗氧化剂的最新进展,这些抗氧化剂集中在线粒体内膜的面向基质表面上。这些靶向线粒体的抗氧化剂是通过将亲脂性三苯基phosph阳离子与抗氧化剂部分(如泛醇)缀合而开发的。这些化合物很容易穿过生物膜,并且由于它们的正电荷,它们在线粒体内积累了数百倍。通过这种方式,它们可以保护线粒体免受氧化损伤,并显示出作为CVD未来疗法的潜力。

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