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线粒体DNA异常与代谢综合征

Mitochondrial DNA abnormalities and metabolic syndrome.

作者信息

Ding Xudong, Fang Tingting, Pang Xiaoqi, Pan Xueru, Tong Aiying, Lin Ziyi, Zheng Shikuan, Zheng Ningning

机构信息

Department of Anesthesiology, Shengjing Hospital, China Medical University, Liaoning, China.

Department of Pathophysiology, College of Basic Medical Science, China Medical University, Liaoning, China.

出版信息

Front Cell Dev Biol. 2023 Mar 10;11:1153174. doi: 10.3389/fcell.2023.1153174. eCollection 2023.

Abstract

Metabolic syndrome (MetS) is a complex pathological condition that involves disrupted carbohydrate, protein, and fat metabolism in the human body, and is a major risk factor for several chronic diseases, including diabetes, cardiovascular disease, and cerebrovascular disease. While the exact pathogenesis of metabolic syndrome is not yet fully understood, there is increasing evidence linking mitochondrial dysfunction, which is closely related to the mitochondrial genome and mitochondrial dynamics, to the development of this condition. Recent advancements in genetic sequencing technologies have allowed for more accurate detection of mtDNA mutations and other mitochondrial abnormalities, leading to earlier diagnosis and intervention in patients with metabolic syndrome. Additionally, the identification of specific mechanisms by which reduced mtDNA copy number and gene mutations, as well as abnormalities in mtDNA-encoded proteins and mitochondrial dynamics, contribute to metabolic syndrome may promote the development of novel therapeutic targets and interventions, such as the restoration of mitochondrial function through the targeting of specific mitochondrial defects. Additionally, advancements in genetic sequencing technologies may allow for more accurate detection of mtDNA mutations and other mitochondrial abnormalities, leading to earlier diagnosis and intervention in patients with MetS. Therefore, strategies to promote the restoration of mitochondrial function by addressing these defects may offer new options for treating MetS. This review provides an overview of the research progress and significance of mitochondrial genome and mitochondrial dynamics in MetS.

摘要

代谢综合征(MetS)是一种复杂的病理状况,涉及人体碳水化合物、蛋白质和脂肪代谢紊乱,是包括糖尿病、心血管疾病和脑血管疾病在内的多种慢性疾病的主要危险因素。虽然代谢综合征的确切发病机制尚未完全明确,但越来越多的证据表明,与线粒体基因组和线粒体动力学密切相关的线粒体功能障碍与该病症的发生发展有关。基因测序技术的最新进展使得能够更准确地检测线粒体DNA(mtDNA)突变和其他线粒体异常,从而实现对代谢综合征患者的早期诊断和干预。此外,明确线粒体DNA拷贝数减少、基因突变以及线粒体DNA编码蛋白和线粒体动力学异常导致代谢综合征的具体机制,可能会推动新型治疗靶点和干预措施的开发,例如通过针对特定线粒体缺陷来恢复线粒体功能。此外,基因测序技术的进步可能使人们能够更准确地检测线粒体DNA突变和其他线粒体异常,从而对代谢综合征患者进行更早的诊断和干预。因此,通过解决这些缺陷来促进线粒体功能恢复的策略可能为治疗代谢综合征提供新的选择。本综述概述了线粒体基因组和线粒体动力学在代谢综合征中的研究进展及意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4c4/10036395/35e6222d720a/fcell-11-1153174-g001.jpg

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