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验证个人护理产品中内分泌干扰物在社区层面的暴露情况 - 通过体外研究和基于污水的流行病学寻找暴露的代谢生物标志物。

Verifying community-wide exposure to endocrine disruptors in personal care products - In quest for metabolic biomarkers of exposure via in vitro studies and wastewater-based epidemiology.

机构信息

Department of Chemistry, University of Bath, Bath BA2 7AY, UK.

Department of Chemistry, University of Bath, Bath BA2 7AY, UK.

出版信息

Water Res. 2018 Oct 15;143:117-126. doi: 10.1016/j.watres.2018.06.028. Epub 2018 Jun 14.

Abstract

This study aimed to identify human specific metabolites of selected known or suspected endocrine disruptors (EDCs), mainly UV filters, used in personal care and consumer products whose metabolism has hardly been explored and to select suitable candidate biomarkers for human exposure studies using wastewater based epidemiology (WBE). The analysis of metabolic biomarkers of target chemicals is crucial in order to distinguish between internal and external exposure, since many sources contribute to chemicals being discharged into wastewater. This was achieved through the employment of a new analytical framework for verification of biomarkers of exposure to chemicals combining human biomonitoring and water fingerprinting. Eight EDCs with unknown metabolic pathways (benzophenone-1 (BP-1); benzophenone-2 (BP-2); 4,4'-dihydroxybenzophenone (4,4'-DHBP); 4-benzylphenol (4-BenzPh); homosalate (HO); octocrylene (OC); 3-benzylidene camphor (3-BC), and two EDCs with known metabolism (bisphenol A (BPA) and benzophenone-3 (BP-3)) were tested. The biotransformation observed consisted mainly of phase I processes such as hydrolysis and hydroxylation together with phase II conjugation reactions such as sulphation and glucuronidation. Only two chemicals (BP-1, BP-3) were identified in urine and three chemicals (BPA, BP-1, BP-3) in wastewater. Five newly discovered metabolites (HO-Met1, OC-Met1, 4-BenzPh-Met4, 4-BenzPh-Met5 and 4-BenzPh-Met6) and one previously known metabolite (BPA-Met3) were detected in tested urine/wastewater samples from five WWTPs serving large communities ranging between 17 and 100 thousand inhabitants. The presence of metabolic biotransformation products of OC, 4-BenzPh, BPA and HO in wastewater provides evidence for internal exposure of studied populations to these chemicals.

摘要

本研究旨在鉴定选定的已知或疑似内分泌干扰物(EDCs)的人类特有代谢物,这些 EDCs 主要为个人护理和消费产品中使用的紫外线滤光剂,它们的代谢途径尚未得到充分探索,并选择合适的候选生物标志物用于基于废水的流行病学(WBE)的人体暴露研究。分析目标化学物质的代谢生物标志物对于区分内部暴露和外部暴露至关重要,因为许多来源都会导致化学物质排放到废水中。这是通过采用一种新的分析框架来实现的,该框架用于结合人体生物监测和水指纹识别来验证化学物质暴露的生物标志物。有 8 种 EDC 具有未知的代谢途径(二苯甲酮-1(BP-1);二苯甲酮-2(BP-2);4,4'-二羟基二苯甲酮(4,4'-DHBP);4-苄基苯酚(4-BenzPh);甲氧基肉桂酸(HO);奥克立林(OC);3-亚苄基樟脑(3-BC))和 2 种具有已知代谢途径的 EDC(双酚 A(BPA)和二苯甲酮-3(BP-3))进行了测试。观察到的生物转化主要包括水解和羟化等 I 相过程以及硫酸化和葡萄糖醛酸化等 II 相结合反应。只有两种化学物质(BP-1、BP-3)在尿液中被鉴定出来,三种化学物质(BPA、BP-1、BP-3)在废水中被鉴定出来。在来自五个服务于 17 万至 100 万居民的大型社区的五个 WWTP 的测试尿液/废水中,检测到了五个新发现的代谢物(HO-Met1、OC-Met1、4-BenzPh-Met4、4-BenzPh-Met5 和 4-BenzPh-Met6)和一个先前已知的代谢物(BPA-Met3)。OC、4-BenzPh、BPA 和 HO 在废水中代谢生物转化产物的存在为研究人群内部暴露于这些化学物质提供了证据。

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