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跨多个生理区室的健康衰老代谢组学和蛋白质组学特征

Healthy Aging Metabolomic and Proteomic Signatures Across Multiple Physiological Compartments.

作者信息

Moaddel R, Candia J, Ubaida-Mohien C, Tanaka T, Moore A Z, Zhu M, Fantoni G, Church S, D'Agostino J, Fan J, Shehadeh N, De S, Lehrmann E, Kaileh M, Simonsick E, Sen R, Egan J M, Ferrucci L

机构信息

Biomedical Research Centre, National Institute on Aging, NIH, Baltimore, Maryland, USA.

出版信息

Aging Cell. 2025 Jun;24(6):e70014. doi: 10.1111/acel.70014. Epub 2025 Feb 14.

Abstract

The study of biomarkers in biofluids and tissues expanded our understanding of the biological processes that drive physiological and functional manifestations of aging. However, most of these studies were limited to examining one biological compartment, an approach that fails to recognize that aging pervasively affects the whole body. The simultaneous modeling of hundreds of metabolites and proteins across multiple compartments may provide a more detailed picture of healthy aging and point to differences between chronological and biological aging. Herein, we report proteomic analyses of plasma and urine collected in healthy men and women, age 22-92 years. Using these data, we developed a series of metabolomic and proteomic predictors of chronological age for plasma, urine, and skeletal muscle. We then defined a biological aging score, which measures the departure between an individual's predicted age and the expected predicted age for that individual based on the full cohort. We show that these predictors are significantly and independently related to clinical phenotypes important for aging, such as inflammation, iron deficiency anemia, muscle mass, and renal and hepatic functions. Despite a different set of selected biomarkers in each compartment, the different scores reflect a similar degree of deviation from healthy aging in single individuals, thus allowing identification of subjects with significant accelerated or decelerated biological aging.

摘要

对生物流体和组织中的生物标志物进行研究,拓展了我们对驱动衰老的生理和功能表现的生物学过程的理解。然而,这些研究大多局限于检查单一生物隔室,这种方法未能认识到衰老会普遍影响全身。同时对多个隔室中的数百种代谢物和蛋白质进行建模,可能会提供一幅更详细的健康衰老图景,并指出实足年龄和生物学衰老之间的差异。在此,我们报告了对年龄在22至92岁之间的健康男性和女性采集的血浆和尿液进行的蛋白质组学分析。利用这些数据,我们开发了一系列针对血浆、尿液和骨骼肌的实足年龄的代谢组学和蛋白质组学预测指标。然后,我们定义了一个生物学衰老分数,该分数衡量个体的预测年龄与基于整个队列该个体的预期预测年龄之间的差异。我们表明,这些预测指标与对衰老重要的临床表型显著且独立相关,如炎症、缺铁性贫血、肌肉质量以及肾和肝功能。尽管每个隔室中选择的生物标志物不同,但不同的分数反映了单个个体与健康衰老的相似偏离程度,从而能够识别出生物学衰老显著加速或减速的个体。

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