Roles of serum uric acid on the association between arsenic exposure and incident metabolic syndrome in an older Chinese population

代谢综合征 医学 四分位数 四分位间距 调解 内科学 相对风险 置信区间 人口 糖尿病 队列研究 尿酸 人口学 内分泌学 环境卫生 肥胖 社会学 法学 政治学
作者
Haiyan Jiang,Simei Zhang,Yaoyao Lin,Lin Meng,Jiayi Li,Wenqing Wang,Kaixuan Yang,Mingjuan Jin,Jianbing Wang,Mengling Tang,Kun Chen
出处
期刊:Journal of Environmental Sciences-china [Elsevier BV]
卷期号:147: 332-341
标识
DOI:10.1016/j.jes.2023.12.005
摘要

Growing evidences showed that heavy metals exposure may be associated with metabolic diseases. Nevertheless, the mechanism underlying arsenic (As) exposure and metabolic syndrome (MetS) risk has not been fully elucidated. So we aimed to prospectively investigate the role of serum uric acid (SUA) on the association between blood As exposure and incident MetS. A sample of 1045 older participants in a community in China was analyzed. We determined As at baseline and SUA concentration at follow-up in the Yiwu Elderly Cohort. MetS events were defined according to the criteria of the International Diabetes Federation (IDF). Generalized linear model with log-binominal regression model was applied to estimate the association of As with incident MetS. To investigate the role of SUA in the association between As and MetS, a mediation analysis was conducted. In the fully adjusted log-binominal model, per interquartile range increment of As, the risk of MetS increased 1.25-fold. Compared with the lowest quartile of As, the adjusted relative risk (RR) of MetS in the highest quartile was 1.42 (95% confidence interval, CI: 1.03, 2.00). Additionally, blood As was positively associated with SUA, while SUA had significant association with MetS risk. Further mediation analysis demonstrated that the association of As and MetS risk was mediated by SUA, with the proportion of 15.7%. Our study found higher As was remarkably associated with the elevated risk of MetS in the Chinese older adults population. Mediation analysis indicated that SUA might be a mediator in the association between As exposure and MetS.
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