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Phthalate exposure and markers of biological aging: The mediating role of inflammation and moderating role of dietary nutrient intake

邻苯二甲酸盐 炎症 营养物 生物 免疫学 化学 生态学 有机化学
作者
Xin Xu,Jianheng Zheng,Jing Li,Ying Shen,Leiyan Zhu,Yan Jin,Mei Zhang,Shuyu Yang,Jun Du,Huatao Wang,Bo Chen,Ruihua Dong
出处
期刊:Ecotoxicology and Environmental Safety [Elsevier BV]
卷期号:281: 116649-116649 被引量:24
标识
DOI:10.1016/j.ecoenv.2024.116649
摘要

Limited evidence has suggested a relationship between phthalate exposure and biological aging. This study investigated the association between phthalate exposure and biological aging, focusing on the mediating role of inflammation and the interaction with dietary nutrient intake. Data were analyzed from a nationwide cross-sectional survey comprising 12,994 participants aged 18 and above. Eight phthalate metabolites were detected in spot urine samples. Biological aging was assessed using the Klemera-Doubal method-biological age (KDM-BA) acceleration, phenotypic age (PA) acceleration, and homeostatic dysregulation (HD). The systemic immune-inflammation index (SII) evaluated systemic inflammation. The individual and combined associations between phthalate exposure and biological aging were assessed using linear regression, weighted quantile sum (WQS) regression, and quantile g-computation (qgcomp). The participants had a mean age of 47 years, with 50.7 % male and 44.8 % non-Hispanic white. Most phthalate metabolites were positively correlated with KDM-BA acceleration (β = 0.306-0.584), PA acceleration (β = 0.081-0.281), and HD (β = 0.016-0.026). Subgroup analysis indicated that men, older individuals, and non-Hispanic whites are particularly sensitive populations. WQS regression and qgcomp analyses consistently indicated a positive association between mixed phthalate exposure and HD, highlighting MEHHP as the most significant contributing metabolite. Mediation analyses showed inflammation partially mediated the association between phthalate metabolites and biological aging. Significant interactions regarding biological aging were found between specific phthalate metabolites and dietary nutrients (carotenoids, vitamins A, B
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