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可改变的生活方式因素对生物衰老的影响。

Effect of Modifiable Lifestyle Factors on Biological Aging.

作者信息

Lu W-H

机构信息

IHU HealthAge, Toulouse, France.

Institute on Aging, Toulouse University Hospital (CHU Toulouse), Toulouse, France.

出版信息

JAR Life. 2024 Jun 5;13:88-92. doi: 10.14283/jarlife.2024.13. eCollection 2024.

Abstract

Biological age is a concept that uses bio-physiological parameters to account for individual heterogeneity in the biological processes driving aging and aims to enhance the prediction of age-related clinical conditions compared to chronological age. Although engaging in healthy lifestyle behaviors has been linked to a lower mortality risk and a reduced incidence of chronic diseases, it remains unclear to what extent these health benefits result from slowing the pace of the biological aging process. This short review summarized how modifiable lifestyle factors - including diet, physical activity, smoking, alcohol consumption, and the aggregate of multiple healthy behaviors - were associated with established estimates of biological age based on clinical or cellular/molecular markers, including Klemera-Doubal Method biological age, homeostatic dysregulation, phenotypic age, DNA methylation age, and telomere length. In brief, the available studies tend to show a consistent association of lifestyle factors with physiological measures of biological age, while findings regarding molecular-based metrics vary. The limited evidence highlights the need for further research in this field, particularly with a life-course approach.

摘要

生物学年龄是一个利用生物生理参数来解释驱动衰老的生物过程中个体异质性的概念,旨在相比于实足年龄提高对与年龄相关临床状况的预测。尽管采取健康的生活方式行为与较低的死亡风险和慢性病发病率降低有关,但这些健康益处多大程度上源于减缓生物衰老过程的步伐仍不清楚。这篇简短综述总结了可改变的生活方式因素——包括饮食、身体活动、吸烟、饮酒以及多种健康行为的总和——如何与基于临床或细胞/分子标志物(包括克莱梅拉-杜巴尔方法生物学年龄、稳态失调、表型年龄、DNA甲基化年龄和端粒长度)的既定生物学年龄估计值相关联。简而言之,现有研究倾向于表明生活方式因素与生物学年龄的生理测量之间存在一致关联,而关于基于分子指标的研究结果则各不相同。有限的证据凸显了该领域进一步研究的必要性,特别是采用生命历程方法的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a04/11161669/1beba0238abf/jarlife-13-0013-f1.jpg

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