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Pharmacological modulation of mitochondrial calcium homeostasis

机译:线粒体钙稳态的药理调节

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摘要

Mitochondria are pivotal organelles in calcium (Ca2+) handling and signalling, constituting intracellular checkpoints for numerous processes that are vital for cell life. Alterations in mitochondrial Ca2+ homeostasis have been linked to a variety of pathological conditions and are critical in the aetiology of several human diseases. Efforts have been taken to harness mitochondrial Ca2+ transport mechanisms for therapeutic intervention, but pharmacological compounds that direct and selectively modulate mitochondrial Ca2+ homeostasis are currently lacking. New avenues have, however, emerged with the breakthrough discoveries on the genetic identification of the main players involved in mitochondrial Ca2+ influx and efflux pathways and with recent hints towards a deep understanding of the function of these molecular systems. Here, we review the current advances in the understanding of the mechanisms and regulation of mitochondrial Ca2+ homeostasis and its contribution to physiology and human disease. We also introduce and comment on the recent progress towards a systems‐level pharmacological targeting of mitochondrial Ca2+ homeostasis.
机译:线粒体是钙(Ca 2 + )处理和发出信号的关键细胞器,构成了许多对细胞生命至关重要的过程的细胞内检查点。线粒体Ca 2 + 体内稳态的改变与多种病理状况有关,并且对几种人类疾病的病因学至关重要。人们已经努力利用线粒体Ca 2 + 的转运机制进行治疗干预,但是目前尚缺乏直接和选择性调节线粒体Ca 2 + 体内稳态的药理化合物。然而,随着线粒体Ca 2 + 流入和流出途径的主要参与者的遗传学鉴定方面的突破性发现,出现了新的途径,并且最近暗示了对这些分子功能的深入了解。系统。在此,我们综述了线粒体Ca 2 + 体内稳态机制及其调控的最新进展及其对生理和人类疾病的贡献。我们还介绍并评论了针对线粒体Ca 2 + 体内稳态的系统级药理学研究的最新进展。

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