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基于效应导向分析的方法在中国电子废物拆解地的沉积物中检测出芳香烃受体激动剂。

Effect-directed analysis for revealing aryl hydrocarbon receptor agonists in sediment samples from an electronic waste recycling town in China.

机构信息

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China; University of Chinese Academy of Sciences, Beijing, 100049, China.

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China; University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Environ Pollut. 2022 Sep 1;308:119659. doi: 10.1016/j.envpol.2022.119659. Epub 2022 Jun 20.

Abstract

Exposure to electronic and electrical waste (e-waste) has been related to a few adverse health effects. In this study, sediment samples from an e-waste recycling town in China were collected, and aryl hydrocarbon receptor (AhR) agonists in the samples were identified using an effect-directed analysis (EDA) strategy. The CBG2.8D cell line reporter gene bioassay was used as a toxicity test, while suspect screening against chemical databases was performed for potential AhR agonist identification where both gas chromatography- and liquid chromatography-high resolution mass spectrometry analyses were run. When the original sample extract showed high AhR-mediated activity, sample fractionation was performed, and fractions exhibiting high bioactivity were chemically analyzed again to reveal the corresponding AhR agonists. In total, 23 AhR agonists were identified, including 14 commonly known ones and 9 new ones. Benzo [k]fluoranthene and 6-nitrochrysene were the dominant AhR agonists, covering 16-71% and 2.7-12%, respectively, of the AhR activation effects measured in the parent extracts. The newly identified AhR-active chemicals combined explained 0.13-0.20% of the parent extracts' effects, with 7,12-dimethylbenz [a]anthracene and 8,9,11-trimethylbenz [a]anthracene being the major contributors. A diagnostic isomer ratio analysis of polycyclic aromatic hydrocarbons suggested that the major source of AhR agonists identified in these e-waste related sediment samples were probably petroleum product combustion and biomass combustion. In the future, for a more comprehensive AhR agonist investigation, in-house chemical synthesis and purification, and, when necessary, a secondary sample fractionation, would be beneficial.

摘要

电子和电气废物(电子废物)暴露已与一些不良健康影响有关。在这项研究中,采集了中国一个电子废物回收城镇的沉积物样本,并使用效应导向分析(EDA)策略鉴定了样本中的芳烃受体(AhR)激动剂。使用 CBG2.8D 细胞系报告基因生物测定作为毒性测试,同时针对化学数据库进行可疑筛选,以鉴定潜在的 AhR 激动剂,其中同时进行气相色谱-和液相色谱-高分辨率质谱分析。当原始样品提取物显示出高 AhR 介导的活性时,进行样品分级,并且对表现出高生物活性的级分再次进行化学分析,以揭示相应的 AhR 激动剂。总共鉴定出 23 种 AhR 激动剂,包括 14 种常见的和 9 种新的。苯并[k]荧蒽和 6-硝基苊是主要的 AhR 激动剂,分别占母体提取物中测量的 AhR 激活作用的 16-71%和 2.7-12%。新鉴定的 AhR 活性化学物质共同解释了母体提取物作用的 0.13-0.20%,其中 7,12-二甲基苯并[a]蒽和 8,9,11-三甲基苯并[a]蒽是主要贡献者。多环芳烃的诊断异构体比分析表明,在这些与电子废物相关的沉积物样本中鉴定出的 AhR 激动剂的主要来源可能是石油产品燃烧和生物质燃烧。在未来,为了更全面地进行 AhR 激动剂研究,内部化学合成和纯化,以及在必要时进行二次样品分级,将是有益的。

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