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Targeting mitochondrial biogenesis for promoting health

机译:靶向线粒体生物发生促进健康

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Mitochondrial biogenesis is a key physiological process that is required for normal growth and development and for maintenance of ongoing cellular energy requirements during aging. Of equivalent and or greater importance is the regulated enhancement of mitochondrial biogenesis upon physiological demand coupled to multiple cellular insults. Basically, cellular survival mechanisms following a variety of disease-related pathophysiological insults are entrained by convergent mechanisms designed to regain homeostatic control of mitochondrial biogenesis. Recent molecular studies represent a clearly defined approach to maximize normative cellular expression of mitochondrial biogenesis for maintenance of cellular energy requirements and as an anti-aging strategy in healthy human populations. This report focuses on mitochondrial transcription factor A, peroxisome proliferator-activated receptor gamma coactivator 1-alpha, PINK1 and Parkin. Designing agents to target mitochondrial function represents a compelling therapeutic strategy for enhancement of cellular expression of mitochondrial biogenesis in diverse human populations afflicted with metabolic, degenerative, neurodegenerative, and metastatic diseases.
机译:线粒体生物发生是关键的生理过程,是正常生长和发育以及在衰老过程中维持持续的细胞能量需求所必需的。同等甚至更重要的是,在生理需求与多种细胞损伤相耦合时,线粒体生物发生的调控增强。基本上,遵循多种与疾病相关的病理生理学损伤的细胞存活机制被旨在恢复线粒体生物发生稳态控制的收敛机制所夹带。最近的分子研究代表了一个明确定义的方法,该方法可以最大化线粒体生物发生的规范细胞表达,以维持细胞能量需求并作为健康人群的抗衰老策略。该报告的重点是线粒体转录因子A,过氧化物酶体增殖物激活受体γ辅激活物1-alpha,PINK1和Parkin。设计靶向线粒体功能的药物代表了一种令人信服的治疗策略,用于增强患有代谢性,变性,神经退行性和转移性疾病的各种人群中线粒体生物发生的细胞表达。

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