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用于生物年龄的表观遗传和代谢组学生物标志物:死亡率和脆弱性风险的比较分析。

Epigenetic and Metabolomic Biomarkers for Biological Age: A Comparative Analysis of Mortality and Frailty Risk.

机构信息

Department of Internal Medicine, Erasmus MC, Rotterdam, The Netherlands.

Center for Nutrition, Prevention and Health Services, Bilthoven, The Netherlands.

出版信息

J Gerontol A Biol Sci Med Sci. 2023 Oct 9;78(10):1753-1762. doi: 10.1093/gerona/glad137.

Abstract

Biological age captures a person's age-related risk of unfavorable outcomes using biophysiological information. Multivariate biological age measures include frailty scores and molecular biomarkers. These measures are often studied in isolation, but here we present a large-scale study comparing them. In 2 prospective cohorts (n = 3 222), we compared epigenetic (DNAm Horvath, DNAm Hannum, DNAm Lin, DNAm epiTOC, DNAm PhenoAge, DNAm DunedinPoAm, DNAm GrimAge, and DNAm Zhang) and metabolomic-based (MetaboAge and MetaboHealth) biomarkers in reflection of biological age, as represented by 5 frailty measures and overall mortality. Biomarkers trained on outcomes with biophysiological and/or mortality information outperformed age-trained biomarkers in frailty reflection and mortality prediction. DNAm GrimAge and MetaboHealth, trained on mortality, showed the strongest association with these outcomes. The associations of DNAm GrimAge and MetaboHealth with frailty and mortality were independent of each other and of the frailty score mimicking clinical geriatric assessment. Epigenetic, metabolomic, and clinical biological age markers seem to capture different aspects of aging. These findings suggest that mortality-trained molecular markers may provide novel phenotype reflecting biological age and strengthen current clinical geriatric health and well-being assessment.

摘要

生物年龄利用生物生理信息来捕捉一个人与其年龄相关的不良结局风险。多变量生物年龄测量包括虚弱评分和分子生物标志物。这些测量方法通常是孤立地进行研究,但在这里我们提出了一项大规模的研究,比较了它们。在 2 项前瞻性队列研究(n=3222)中,我们比较了反映生物年龄的表观遗传(DNAm Horvath、DNAm Hannum、DNAm Lin、DNAm epiTOC、DNAm PhenoAge、DNAm DunedinPoAm、DNAm GrimAge 和 DNAm Zhang)和基于代谢组学的生物标志物(MetaboAge 和 MetaboHealth),这些标志物通过 5 种虚弱测量和总体死亡率来表示。基于具有生物生理和/或死亡率信息的结果进行训练的生物标志物在虚弱反映和死亡率预测方面优于基于年龄进行训练的生物标志物。基于死亡率进行训练的 DNAm GrimAge 和 MetaboHealth 与这些结果的关联最强。DNAm GrimAge 和 MetaboHealth 与虚弱和死亡率的关联彼此独立,且与模拟临床老年评估的虚弱评分也相互独立。表观遗传、代谢组学和临床生物年龄标志物似乎捕捉到了衰老的不同方面。这些发现表明,基于死亡率训练的分子标志物可能提供反映生物年龄的新表型,并增强当前的临床老年健康和幸福感评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63ce/10562890/1733ce814392/glad137_fig1.jpg

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