首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Electron Transport Disturbances and Neurodegeneration: From Albert Szent-Györgyi’s Concept (Szeged) till Novel Approaches to Boost Mitochondrial Bioenergetics
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Electron Transport Disturbances and Neurodegeneration: From Albert Szent-Györgyi’s Concept (Szeged) till Novel Approaches to Boost Mitochondrial Bioenergetics

机译:电子传输扰动和神经退行性变:从AlbertSzent-Györgyi的概念(Szeged)到增强线粒体生物能学的新颖方法

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Impaired function of certain mitochondrial respiratory complexes has long been linked to the pathogenesis of chronic neurodegenerative disorders such as Parkinson’s and Huntington’s diseases. Furthermore, genetic alterations of mitochondrial genome or nuclear genes encoding proteins playing essential roles in maintaining proper mitochondrial function can lead to the development of severe systemic diseases associated with neurodegeneration and vacuolar myelinopathy. At present, all of these diseases lack effective disease modifying therapy. Following a brief commemoration of Professor Albert Szent-Györgyi, a Nobel Prize laureate who pioneered in the field of cellular respiration, antioxidant processes, and the roles of free radicals in health and disease, the present paper overviews the current knowledge on the involvement of mitochondrial dysfunction in central nervous system diseases associated with neurodegeneration including Parkinson’s and Huntington’s disease as well as mitochondrial encephalopathies. The review puts special focus on the involvement and the potential therapeutic relevance of peroxisome proliferator-activated receptor-gamma coactivator 1-alpha (PGC-1α), a nuclear-encoded master regulator of mitochondrial biogenesis and antioxidant responses in these disorders, the transcriptional activation of which may hold novel therapeutic value as a more system-based approach aiming to restore mitochondrial functions in neurodegenerative processes.
机译:某些线粒体呼吸复合物的功能受损长期以来一直与慢性神经退行性疾病(如帕金森氏症和亨廷顿氏病)的发病机理有关。此外,线粒体基因组或编码在维持适当的线粒体功能中起重要作用的蛋白质的核基因的遗传改变可能导致与神经变性和液泡性脊髓病相关的严重全身性疾病的发展。目前,所有这些疾病都缺乏有效的疾病改良疗法。在对诺贝尔奖获得者阿尔伯特·森特·吉尔吉(AlbertSzent-Györgyi)教授进行简短的纪念之后,他在细胞呼吸,抗氧化过程以及自由基在健康和疾病中的作用方面开创了先河,本文概述了有关线粒体参与的最新知识与神经变性有关的中枢神经系统疾病(包括帕金森氏症和亨廷顿氏病)以及线粒体脑病。审查特别关注过氧化物酶体增殖物激活的受体-γ辅激活物1-alpha(PGC-1α)的参与及其潜在的治疗相关性,PGC-1α是一种核编码的线粒体生物发生和抗氧化反应的主调节剂,其转录激活作为恢复神经变性过程中线粒体功能的基于系统的方法,其中的一种可能具有新颖的治疗价值。

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