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A Panoramic Overview of Mitochondria and Mitochondrial Redox Biology

机译:线粒体和线粒体氧化还原生物学全景

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摘要

Mitochondria dysfunction was first described in the 1960s. However, the extent and mechanisms of mitochondria dysfunction’s role in cellular physiology and pathology has only recently begun to be appreciated. To adequately evaluate mitochondria-mediated toxicity, it is not only necessary to understand mitochondria biology, but discerning mitochondrial redox biology is also essential. The latter is intricately tied to mitochondrial bioenergetics. Mitochondrial free radicals, antioxidants, and antioxidant enzymes are players in mitochondrial redox biology. This review will provide an across-the-board, albeit not in-depth, overview of mitochondria biology and mitochondrial redox biology. With accumulating knowledge on mitochondria biology and mitochondrial redox biology, we may devise experimental methods with adequate sensitivity and specificity to evaluate mitochondrial toxicity, especially in vivo in living organisms, in the near future.
机译:线粒体功能障碍首次描述于1960年代。然而,线粒体功能障碍在细胞生理学和病理学中作用的程度和机制直到最近才开始被人们所认识。为了充分评估线粒体介导的毒性,不仅需要了解线粒体生物学,而且识别线粒体氧化还原生物学也必不可少。后者与线粒体生物能学密切相关。线粒体自由基,抗氧化剂和抗氧化酶是线粒体氧化还原生物学中的角色。这篇综述将提供对线粒体生物学和线粒体氧化还原生物学的全面(尽管不深入)概述。随着线粒体生物学和线粒体氧化还原生物学知识的积累,我们可能会在不久的将来设计出具有足够敏感性和特异性的实验方法来评估线粒体毒性,特别是活体在体内的毒性。

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