Exposome-wide association study of environmental chemical exposures and epigenetic aging in the national health and nutrition examination survey.

IF 3.9 3区 医学 Q2 CELL BIOLOGY
Aging-Us Pub Date : 2025-02-11 DOI:10.18632/aging.206201
Dennis Khodasevich, Nicole Gladish, Saher Daredia, Anne K Bozack, Hanyang Shen, Jamaji C Nwanaji-Enwerem, Belinda L Needham, David H Rehkopf, Andres Cardenas
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引用次数: 0

Abstract

Epigenetic clocks can serve as pivotal biomarkers linking environmental exposures with biological aging. However, research on the influence of environmental exposures on epigenetic aging has largely been limited to a small number of chemicals and specific populations. We harnessed data from the National Health and Nutrition Examination Survey 1999-2000 and 2001-2002 cycles to examine exposome-wide associations between environmental exposures and epigenetic aging. A total of 8 epigenetic aging biomarkers were obtained from whole blood in 2,346 participants ranging from 50-84 years of age. A total of 64 environmental exposures including phthalates, metals, pesticides, dioxins, and polychlorinated biphenyls (PCBs) were measured in blood and urine. Associations between log2-transformed/standardized exposure measures and epigenetic age acceleration (EAA) were assessed using survey-weighted generalized linear regression. A 1 standard deviation (SD) increase in log2 serum cadmium levels was associated with higher GrimAge acceleration (beta = 1.23 years, p = 3.63e-06), higher GrimAge2 acceleration (beta = 1.27 years, p = 1.62e-05), and higher DunedinPoAm (beta = 0.02, p = 2.34e-05). A 1 SD increase in log2 serum cotinine levels was associated with higher GrimAge2 acceleration (beta = 1.40 years, p = 6.53e-04) and higher DunedinPoAm (beta = 0.03, p = 6.31e-04). Associations between cadmium and EAA across several clocks persisted in sensitivity models adjusted for serum cotinine levels, and other associations involving lead, dioxins, and PCBs were identified. Several environmental exposures are associated with epigenetic aging in a nationally representative US adult population, with particularly strong associations related to cadmium and cotinine across several epigenetic clocks.

全国健康与营养调查中环境化学物质暴露与表观遗传老化的关联研究。
表观遗传时钟可以作为连接环境暴露与生物衰老的关键生物标志物。然而,关于环境暴露对表观遗传衰老影响的研究在很大程度上仅限于少数化学物质和特定人群。我们利用1999-2000年和2001-2002年国家健康和营养调查周期的数据来研究环境暴露与表观遗传衰老之间的广泛联系。研究人员从2346名年龄在50-84岁之间的参与者的全血中获得了8种表观遗传衰老生物标志物。在血液和尿液中总共测量了64种环境暴露,包括邻苯二甲酸盐、金属、农药、二恶英和多氯联苯。使用调查加权广义线性回归评估log2转换/标准化暴露测量与表观遗传年龄加速(EAA)之间的关系。1个标准差(SD)的log2血清镉水平升高与GrimAge加速升高(β = 1.23年,p = 3.63e-06)、GrimAge2加速升高(β = 1.27年,p = 1.62e-05)和DunedinPoAm升高(β = 0.02, p = 2.34e-05)相关。血清中log2水平升高1 SD与GrimAge2加速升高(β = 1.40年,p = 6.53e-04)和DunedinPoAm升高(β = 0.03, p = 6.31e-04)相关。在血清可替宁水平调整后的敏感性模型中,镉和EAA在几个时钟之间的关联持续存在,并确定了涉及铅、二恶英和多氯联苯的其他关联。在具有全国代表性的美国成年人群中,几种环境暴露与表观遗传衰老有关,镉和可替宁在几种表观遗传时钟中具有特别强的相关性。
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来源期刊
Aging-Us
Aging-Us CELL BIOLOGY-
CiteScore
10.00
自引率
0.00%
发文量
595
审稿时长
6-12 weeks
期刊介绍: Information not localized
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