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线粒体毒性。

Mitochondrial Toxicity.

机构信息

Nicholas School of the Environment and Integrated Toxicology and Environmental Health Program, Duke University, Durham, North Carolina 27708-0328.

出版信息

Toxicol Sci. 2018 Mar 1;162(1):15-23. doi: 10.1093/toxsci/kfy008.

Abstract

Recent decades have seen a rapid increase in reported toxic effects of drugs and pollutants on mitochondria. Researchers have also documented many genetic differences leading to mitochondrial diseases, currently reported to affect ∼1 person in 4,300, creating a large number of potential gene-environment interactions in mitochondrial toxicity. We briefly review this history, and then highlight cutting-edge areas of mitochondrial research including the role of mitochondrial reactive oxygen species in signaling; increased understanding of fundamental biological processes involved in mitochondrial homeostasis (DNA maintenance and mutagenesis, mitochondrial stress response pathways, fusion and fission, autophagy and biogenesis, and exocytosis); systemic effects resulting from mitochondrial stresses in specific cell types; mitochondrial involvement in immune function; the growing evidence of long-term effects of mitochondrial toxicity; mitochondrial-epigenetic cross-talk; and newer approaches to test chemicals for mitochondrial toxicity. We also discuss the potential importance of hormetic effects of mitochondrial stressors. Finally, we comment on future areas of research we consider critical for mitochondrial toxicology, including increased integration of clinical, experimental laboratory, and epidemiological (human and wildlife) studies; improved understanding of biomarkers in the human population; and incorporation of other factors that affect mitochondria, such as diet, exercise, age, and nonchemical stressors.

摘要

近几十年来,人们越来越多地报告药物和污染物对线粒体的毒性作用。研究人员还记录了许多导致线粒体疾病的遗传差异,目前据报道,每 4300 人中就有 1 人受到影响,这在很大程度上增加了线粒体毒性的基因-环境相互作用的可能性。我们简要回顾了这段历史,然后重点介绍了线粒体研究的前沿领域,包括线粒体活性氧在信号转导中的作用;对涉及线粒体动态平衡的基本生物学过程(DNA 维持和突变、线粒体应激反应途径、融合和裂变、自噬和生物发生以及胞吐作用)的理解的提高;特定细胞类型中线粒体应激引起的全身效应;线粒体在免疫功能中的作用;线粒体毒性的长期影响的证据不断增加;线粒体-表观遗传相互作用;以及用于测试线粒体毒性的化学物质的新方法。我们还讨论了线粒体应激源的有益效应的潜在重要性。最后,我们评论了我们认为对线粒体毒理学至关重要的未来研究领域,包括增加临床、实验实验室和流行病学(人类和野生动物)研究的综合;提高对人类群体中生物标志物的理解;以及将其他影响线粒体的因素(如饮食、运动、年龄和非化学应激源)纳入其中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/382f/5837373/00f42449710f/kfy008f1.jpg

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