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ToxCast高通量筛选计划中与食品相关化学品的评估

Evaluation of food-relevant chemicals in the ToxCast high-throughput screening program.

作者信息

Karmaus Agnes L, Filer Dayne L, Martin Matthew T, Houck Keith A

机构信息

ILSI North America Technical Committee on Food and Chemical Safety Summer Fellow, Washington, DC, USA; Oak Ridge Institue for Science and Education (ORISE) Fellow at the US Environmental Protection Agency, Office of Research and Development, National Center for Computational Toxicology, Research Triangle Park, NC, USA.

Oak Ridge Institue for Science and Education (ORISE) Fellow at the US Environmental Protection Agency, Office of Research and Development, National Center for Computational Toxicology, Research Triangle Park, NC, USA.

出版信息

Food Chem Toxicol. 2016 Jun;92:188-96. doi: 10.1016/j.fct.2016.04.012. Epub 2016 Apr 19.

Abstract

Thousands of chemicals are directly added to or come in contact with food, many of which have undergone little to no toxicological evaluation. The landscape of the food-relevant chemical universe was evaluated using cheminformatics, and subsequently the bioactivity of food-relevant chemicals across the publicly available ToxCast highthroughput screening program was assessed. In total, 8659 food-relevant chemicals were compiled including direct food additives, food contact substances, and pesticides. Of these food-relevant chemicals, 4719 had curated structure definition files amenable to defining chemical fingerprints, which were used to cluster chemicals using a selforganizing map approach. Pesticides, and direct food additives clustered apart from one another with food contact substances generally in between, supporting that these categories not only reflect different uses but also distinct chemistries. Subsequently, 1530 food-relevant chemicals were identified in ToxCast comprising 616 direct food additives, 371 food contact substances, and 543 pesticides. Bioactivity across ToxCast was filtered for cytotoxicity to identify selective chemical effects. Initiating analyses from strictly chemical-based methodology or bioactivity/cytotoxicity-driven evaluation presents unbiased approaches for prioritizing chemicals. Although bioactivity in vitro is not necessarily predictive of adverse effects in vivo, these data provide insight into chemical properties and cellular targets through which foodrelevant chemicals elicit bioactivity.

摘要

数以千计的化学物质被直接添加到食品中或与食品接触,其中许多化学物质几乎没有或根本没有经过毒理学评估。利用化学信息学评估了与食品相关的化学物质领域,随后评估了在公开可用的ToxCast高通量筛选计划中与食品相关的化学物质的生物活性。总共汇编了8659种与食品相关的化学物质,包括直接食品添加剂、食品接触物质和农药。在这些与食品相关的化学物质中,有4719种具有适合定义化学指纹的精选结构定义文件,这些文件被用于使用自组织映射方法对化学物质进行聚类。农药和直接食品添加剂彼此聚类分开,食品接触物质通常介于两者之间,这表明这些类别不仅反映了不同的用途,而且反映了不同的化学性质。随后,在ToxCast中鉴定出1530种与食品相关的化学物质,包括616种直接食品添加剂、371种食品接触物质和543种农药。对ToxCast中的生物活性进行细胞毒性过滤,以识别选择性化学效应。从严格基于化学的方法或生物活性/细胞毒性驱动的评估开始分析,为化学物质的优先级排序提供了无偏倚的方法。虽然体外生物活性不一定能预测体内的不良反应,但这些数据提供了对化学性质和细胞靶点的洞察,与食品相关的化学物质通过这些靶点引发生物活性。

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