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Mitochondrial Dysfunction and Redox Imbalance as a Diagnostic Marker of 'Free Radical Diseases'

机译:线粒体功能障碍和氧化还原性失衡作为“自由基疾病”的诊断标志物

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摘要

The intracellular redox balance (redox status) is a dynamic system that may change via many factors. Mitochondria are one of the most important among them. These organelles are the main intracellular source of energy. They are essential for maintaining cellular homeostasis due to regulation of many biochemical processes. The mitochondrial dynamics change during cellular activities and in some cases, can cause an overproduction of reactive oxygen species (ROS), which encourages the induction of oxidative DNA damage and up-or down-regulation of phosphatases, proliferative/anti-proliferative factors, apoptotic/anti-apoptotic factors, etc. Moreover, mitochondrial dysfunction and redox imbalance can continuously support and contribute to a wide range of pathologies, termed as "free radical diseases" (e.g., cancer, neurodegeneration, atherosclerosis, inflammation, etc.). This review article is focused on the mitochondrial dysfunction and cellular redox status as a hallmark of cell homeostasis and diagnostic marker of cancer. It is intended to broad readership - from students to specialists in the field.
机译:细胞内氧化还原平衡(氧化还原状态)是一种动态系统,可能通过许多因素改变。线粒体是其中最重要的。这些细胞器是主要的细胞内能量源。由于许多生物化学过程的调节,它们对于维持细胞稳态至关重要。在细胞活性期间的线粒体动力学变化,在某些情况下,可能导致反应性氧物质(ROS)的过量生产,这促进诱导氧化DNA损伤和磷酸酶的上调,增殖/抗增殖因素,凋亡/抗凋亡因子等。此外,线粒体功能障碍和氧化还原性失衡可以不断支持和有助于各种病理学,称为“自由基疾病”(例如,癌症,神经变性,动脉粥样硬化,炎症等)。该审查文章的重点是线粒体功能障碍和细胞氧化还原状态作为细胞稳态和癌症诊断标志物的标志。它旨在广泛读者 - 从学生到该领域的专家。

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