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捷克成年人和儿童中农药暴露对氧化应激和 DNA 甲基化尿生物标志物的影响:CELSPAC-SPECIMEn 队列研究

Effects of pesticide exposure on oxidative stress and DNA methylation urinary biomarkers in Czech adults and children from the CELSPAC-SPECIMEn cohort.

机构信息

RECETOX, Faculty of Science, Masaryk University, Kotlarska 2, Brno, Czech Republic.

Institute for Risk Assessment Sciences, Utrecht University, Utrecht, the Netherlands; Center for Sustainability, Environment and Health, National Institute for Public Health and the Environment (RIVM), Bilthoven, Netherlands.

出版信息

Environ Res. 2023 Apr 1;222:115368. doi: 10.1016/j.envres.2023.115368. Epub 2023 Jan 28.

Abstract

Current-use pesticide (CUP) exposure occurs mainly through diet and environmental application in both agricultural and urban settings. While pesticide exposure has been associated with many adverse health outcomes, the intermediary molecular mechanisms are still not completely elucidated. Among others, their roles in epigenetics (DNA methylation) and DNA damage due to oxidative stress are presumed. Scientific evidence on urinary biomarkers of such body response in general population is limited, especially in children. A total of 440 urine samples (n = 110 parent-child pairs) were collected during the winter and summer seasons in order to describe levels of overall DNA methylation (5-mC, 5-mdC, 5-hmdC, 7-mG, 3-mA) and oxidative stress (8-OHdG) biomarkers and investigate their possible associations with metabolites of pyrethroids (3-PBA, t/c-DCCA), chlorpyrifos (TCPY), and tebuconazole (TEB-OH). Linear mixed-effects models accounting for intraindividual and intrahousehold correlations were utilized. We applied false discovery rate procedure to account for multiplicity and adjusted for potential confounding variables. Higher urinary levels of most biological response biomarkers were measured in winter samples. In adjusted repeated measures models, interquartile range (IQR) increases in pyrethroid metabolites were associated with higher oxidative stress. t/c-DCCA and TCPY were associated with higher urinary levels of cytosine methylation biomarkers (5-mC and/or 5-mdC). The most robust association was observed for tebuconazole metabolite with 3-mA (-15.1% change per IQR increase, 95% CI = -23.6, -5.69) suggesting a role of this pesticide in reduced demethylation processes through possible DNA glycosylase inhibition. Our results indicate an urgent need to extend the range of analyzed environmental chemicals such as azole pesticides (e.g. prothioconazole) in human biomonitoring studies. This is the first study to report urinary DNA methylation biomarkers in children and associations between CUP metabolites and a comprehensive set of biomarkers including methylated and oxidized DNA alterations. Observed associations warrant further large-scale research of these biomarkers and environmental pollutants including CUPs.

摘要

目前使用的农药 (CUP) 暴露主要通过饮食和农业及城市环境中的应用来实现。虽然农药暴露与许多不良健康后果有关,但其中间分子机制仍未完全阐明。其中,它们在表观遗传学(DNA 甲基化)和氧化应激引起的 DNA 损伤中的作用被认为是存在的。一般人群中关于此类身体反应的尿液生物标志物的科学证据有限,尤其是在儿童中。在冬季和夏季共采集了 440 份尿液样本(n=110 对父母-子女),以描述整体 DNA 甲基化(5-mC、5-mdC、5-hmdC、7-mG、3-mA)和氧化应激(8-OHdG)生物标志物的水平,并研究它们与拟除虫菊酯(3-PBA、t/c-DCCA)、毒死蜱(TCPY)和戊唑醇(TEB-OH)代谢物的可能关联。利用考虑个体内和家庭内相关性的线性混合效应模型。我们应用错误发现率程序来考虑多重性,并针对潜在混杂变量进行调整。冬季样本中测量到大多数生物反应生物标志物的水平更高。在调整后的重复测量模型中,拟除虫菊酯代谢物的四分位间距 (IQR) 增加与氧化应激增加相关。t/c-DCCA 和 TCPY 与胞嘧啶甲基化生物标志物(5-mC 和/或 5-mdC)的尿液水平升高相关。观察到的与戊唑醇代谢物的最强关联为 3-mA(IQR 每增加 15.1%变化,95%CI=-23.6,-5.69),表明该农药可能通过可能的 DNA 糖苷酶抑制作用,在减少去甲基化过程中发挥作用。我们的研究结果表明,迫切需要在人体生物监测研究中扩大分析的环境化学物质范围,如唑类农药(如丙硫菌唑)。这是第一项报告儿童尿液 DNA 甲基化生物标志物以及 CUP 代谢物与包括甲基化和氧化 DNA 改变的综合生物标志物之间关联的研究。观察到的关联需要进一步对这些生物标志物和环境污染物(包括 CUP)进行大规模研究。

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