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衰老过程和运动训练对肠道微生物群和端粒长度相互作用的新作用。

The Emerging Role of the Aging Process and Exercise Training on the Crosstalk between Gut Microbiota and Telomere Length.

机构信息

Laboratory of Molecular Analysis, Graduate Program of Sciences and Technology of Health, University of Brasilia, Brasília 72220-275, Brazil.

Postgraduate Program in Physical Education-Catholic University of Brasília, Brasília 71966-700, Brazil.

出版信息

Int J Environ Res Public Health. 2022 Jun 25;19(13):7810. doi: 10.3390/ijerph19137810.

Abstract

Aging is a natural process of organism deterioration, which possibly impairs multiple physiological functions. These harmful effects are linked to an accumulation of somatic mutations, oxidative stress, low-grade inflammation, protein damage, and mitochondrial dysfunction. It is known that these factors are capable of inducing telomere shortening, as well as intestinal dysbiosis. Otherwise, among the biological mechanisms triggered by physical exercise, the attenuation of pro-inflammatory mediators accompanied by redox state improvement can be the main mediators for microbiota homeostasis and telomere wear prevention. Thus, this review highlights how oxidative stress, inflammation, telomere attrition, and gut microbiota (GM) dysbiosis are interconnected. Above all, we provide a logical foundation for unraveling the role of physical exercise in this process. Based on the studies summarized in this article, exercise training can increase the biodiversity of beneficial microbial species, decrease low-grade inflammation and improve oxidative metabolism, these factors together possibly reduce telomeric shortening.

摘要

衰老是生物体退化的自然过程,可能会损害多种生理功能。这些有害影响与体细胞突变、氧化应激、低度炎症、蛋白质损伤和线粒体功能障碍的积累有关。已知这些因素能够诱导端粒缩短以及肠道菌群失调。此外,在运动引发的生物学机制中,促炎介质的衰减伴随着氧化还原状态的改善,可能是维持微生物组平衡和防止端粒磨损的主要介质。因此,本综述强调了氧化应激、炎症、端粒磨损和肠道菌群(GM)失调之间的相互关系。最重要的是,我们为揭示运动在这一过程中的作用提供了一个合理的基础。基于本文综述的研究,运动训练可以增加有益微生物物种的多样性,降低低度炎症和改善氧化代谢,这些因素共同可能减少端粒缩短。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c9d/9266215/ac8d8b330110/ijerph-19-07810-g001.jpg

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