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线粒体调节剂:守护者。

Mitochondrial Modulators: The Defender.

机构信息

Griffith Institute for Drug Discovery, Griffith University, Brisbane, QLD 4111, Australia.

出版信息

Biomolecules. 2023 Jan 24;13(2):226. doi: 10.3390/biom13020226.

Abstract

Mitochondria are widely considered the "power hub" of the cell because of their pivotal roles in energy metabolism and oxidative phosphorylation. However, beyond the production of ATP, which is the major source of chemical energy supply in eukaryotes, mitochondria are also central to calcium homeostasis, reactive oxygen species (ROS) balance, and cell apoptosis. The mitochondria also perform crucial multifaceted roles in biosynthetic pathways, serving as an important source of building blocks for the biosynthesis of fatty acid, cholesterol, amino acid, glucose, and heme. Since mitochondria play multiple vital roles in the cell, it is not surprising that disruption of mitochondrial function has been linked to a myriad of diseases, including neurodegenerative diseases, cancer, and metabolic disorders. In this review, we discuss the key physiological and pathological functions of mitochondria and present bioactive compounds with protective effects on the mitochondria and their mechanisms of action. We highlight promising compounds and existing difficulties limiting the therapeutic use of these compounds and potential solutions. We also provide insights and perspectives into future research windows on mitochondrial modulators.

摘要

线粒体被广泛认为是细胞的“能量中心”,因为它们在能量代谢和氧化磷酸化中起着关键作用。然而,除了产生 ATP 之外,线粒体在钙离子稳态、活性氧 (ROS) 平衡和细胞凋亡中也起着核心作用。线粒体在生物合成途径中也起着至关重要的多方面作用,是脂肪酸、胆固醇、氨基酸、葡萄糖和血红素生物合成的重要原料来源。由于线粒体在细胞中发挥多种重要作用,因此不难理解,线粒体功能的破坏与许多疾病有关,包括神经退行性疾病、癌症和代谢紊乱。在这篇综述中,我们讨论了线粒体的关键生理和病理功能,并介绍了对线粒体具有保护作用的生物活性化合物及其作用机制。我们强调了有前途的化合物和现有限制这些化合物治疗用途的困难以及潜在的解决方案。我们还提供了对线粒体调节剂未来研究窗口的见解和观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a677/9953029/1a48e49340be/biomolecules-13-00226-g001.jpg

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