The environmental neuroactive chemicals list of prioritized substances for human biomonitoring and neurotoxicity testing: A database and high-throughput toxicokinetics approach.

IF 7.7 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Environmental Research Pub Date : 2025-02-01 Epub Date: 2024-12-04 DOI:10.1016/j.envres.2024.120537
Julia E Rager, Lauren E Koval, Elise Hickman, Caroline Ring, Taylor Teitelbaum, Todd Cohen, Giulia Fragola, Mark J Zylka, Lawrence S Engel, Kun Lu, Stephanie M Engel
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Abstract

There is a diversity of chemicals to which humans are potentially exposed. Few of these chemicals have linked human biomonitoring data, and most have very limited neurotoxicity testing. Of particular concern are environmental exposures impacting children, who constitute a population of heightened susceptibility due to rapid neural growth and plasticity, yet lack biomonitoring data compared to other age/population subgroups. This study set out to develop a prioritized list of neuroactive substances, titled the Environmental NeuRoactIve CHemicals (ENRICH) list, to be used as a defined screening library in the evaluation of human biological samples, with emphasis on early childhood-relevant environmental exposures. In silico database mining approaches were used to prioritize chemicals based upon likelihood of neuroactivity, human exposure, and feasible detection in biological samples. Evidence of neuroactivity was compiled across in vitro high-throughput screening, animal testing, and/or human epidemiological findings. Chemicals were considered for their likelihood of human exposure and detection presence in biological samples (including metabolites), with additional evidence indicating presence within child-relevant products. The resulting list of 1827 chemicals were ranked using a Chemical Prioritization Index. Manual inclusion/exclusion criteria were employed for the top-ranking chemical candidates to ensure that chemicals were within the study's scope (i.e., environmentally relevant) and, for the purposes of biomonitoring, had properties amenable to mass spectrometry methods. These elements were combined to produce the ENRICH list of 250 top-ranking chemicals, spanning pesticides and those used in home maintenance, personal care, cleaning products, vehicles, arts and crafts, and consumer electronics, among other sources. Chemicals were additionally evaluated for high-throughput toxicokinetics to predict how much of a chemical and/or its metabolite(s) may reach urine, as an example biological matrix for practical use in biomonitoring efforts. This novel study couples databases and in silico-based predictions to prioritize chemicals in the environment with potential neurological impacts for future study.

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人类生物监测和神经毒性测试优先物质的环境神经活性化学物质清单:一个数据库和高通量毒物动力学方法。
人类可能接触到的化学物质种类繁多。这些化学物质中很少有与人体生物监测数据相关的,而且大多数化学物质的神经毒性测试非常有限。特别值得关注的是环境暴露对儿童的影响,由于神经快速生长和可塑性,儿童构成了易感性较高的人群,但与其他年龄/人群亚组相比,缺乏生物监测数据。本研究旨在制定一份神经活性物质的优先清单,名为“环境神经活性化学物质(富集)清单”,作为评估人类生物样本的明确筛选库,重点是早期儿童相关的环境暴露。在计算机中,数据库挖掘方法被用来根据神经活动的可能性、人类暴露和生物样品中可行的检测来确定化学物质的优先级。神经活性的证据是通过体外高通量筛选、动物试验和/或人类流行病学调查结果汇编而成的。考虑了人类接触化学品的可能性和在生物样品(包括代谢物)中检测到化学品的存在,并有额外证据表明在儿童相关产品中存在化学品。使用化学优先级指数对1827种化学物质进行了排序。对排名靠前的候选化学物质采用人工纳入/排除标准,以确保化学物质在研究范围内(即与环境相关),并且出于生物监测的目的,具有适用于质谱法的特性。这些元素结合在一起,产生了250种顶级化学品的清单,包括杀虫剂和用于家庭维护、个人护理、清洁产品、车辆、艺术品和手工艺品、消费电子产品等来源。此外,还对化学物质进行了高通量毒性动力学评估,以预测有多少化学物质和/或其代谢物可能到达尿液,作为生物监测工作中实际使用的生物基质。这项新研究结合了数据库和基于硅的预测,优先考虑环境中具有潜在神经学影响的化学物质,以供未来研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Environmental Research
Environmental Research 环境科学-公共卫生、环境卫生与职业卫生
CiteScore
12.60
自引率
8.40%
发文量
2480
审稿时长
4.7 months
期刊介绍: The Environmental Research journal presents a broad range of interdisciplinary research, focused on addressing worldwide environmental concerns and featuring innovative findings. Our publication strives to explore relevant anthropogenic issues across various environmental sectors, showcasing practical applications in real-life settings.
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