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衰老与性别的纵向血浆代谢组学

Longitudinal plasma metabolomics of aging and sex.

作者信息

Darst Burcu F, Koscik Rebecca L, Hogan Kirk J, Johnson Sterling C, Engelman Corinne D

机构信息

Department of Population Health Sciences, University of Wisconsin School of Medicine and Public Health, Madison, WI 53726, USA.

Wisconsin Alzheimer's Institute, University of Wisconsin School of Medicine and Public Health, Madison, Madison, WI 53726, USA.

出版信息

Aging (Albany NY). 2019 Feb 24;11(4):1262-1282. doi: 10.18632/aging.101837.

Abstract

Understanding how metabolites are longitudinally influenced by age and sex could facilitate the identification of metabolomic profiles and trajectories that indicate disease risk. We investigated the metabolomics of age and sex using longitudinal plasma samples from the Wisconsin Registry for Alzheimer's Prevention (WRAP), a cohort of participants who were dementia free at enrollment. Metabolomic profiles were quantified for 2,344 fasting plasma samples among 1,212 participants, each with up to three study visits. Of 1,097 metabolites tested, 623 (56.8%) were associated with age and 695 (63.4%) with sex after correcting for multiple testing. Approximately twice as many metabolites were associated with age in stratified analyses of women versus men, and 68 metabolite trajectories significantly differed by sex, most notably including sphingolipids, which tended to increase in women and decrease in men with age. Using genome-wide genotyping, we also report the heritabilities of metabolites investigated, which ranged dramatically (0.2-99.2%); however, the median heritability of 36.2% suggests that many metabolites are highly influenced by a complex combination of genomic and environmental influences. These findings offer a more profound description of the aging process and may inform many new hypotheses regarding the role metabolites play in healthy and accelerated aging.

摘要

了解代谢物如何随年龄和性别受到纵向影响,有助于识别表明疾病风险的代谢组学特征和轨迹。我们利用来自威斯康星州阿尔茨海默病预防登记处(WRAP)的纵向血浆样本,对年龄和性别的代谢组学进行了研究,该队列的参与者在入组时无痴呆症。对1212名参与者的2344份空腹血浆样本进行了代谢组学特征定量分析,每位参与者最多有三次研究随访。在经过多重检验校正后,在检测的1097种代谢物中,623种(56.8%)与年龄相关,695种(63.4%)与性别相关。在按性别分层分析中,与年龄相关的代谢物数量在女性中约为男性的两倍,68种代谢物轨迹在性别上有显著差异,最明显的包括鞘脂类,随着年龄增长,女性中的鞘脂类趋于增加,而男性中的则趋于减少。通过全基因组基因分型,我们还报告了所研究代谢物的遗传力,其范围差异很大(0.2 - 99.2%);然而,36.2%的中位数遗传力表明,许多代谢物受到基因组和环境影响的复杂组合的高度影响。这些发现对衰老过程提供了更深刻的描述,并可能为许多关于代谢物在健康衰老和加速衰老中所起作用的新假设提供依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e83d/6402508/69fdce338d39/aging-11-101837-g001.jpg

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