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精准毒理学倡议。

The Precision Toxicology initiative.

出版信息

Toxicol Lett. 2023 Jul 1;383:33-42. doi: 10.1016/j.toxlet.2023.05.004. Epub 2023 May 19.

Abstract

The goal of PrecisionTox is to overcome conceptual barriers to replacing traditional mammalian chemical safety testing by accelerating the discovery of evolutionarily conserved toxicity pathways that are shared by descent among humans and more distantly related animals. An international consortium is systematically testing the toxicological effects of a diverse set of chemicals on a suite of five model species comprising fruit flies, nematodes, water fleas, and embryos of clawed frogs and zebrafish along with human cell lines. Multiple forms of omics and comparative toxicology data are integrated to map the evolutionary origins of biomolecular interactions that are predictive of adverse health effects, to major branches of the animal phylogeny. These conserved elements of adverse outcome pathways (AOPs) and their biomarkers are expected to provide mechanistic insight useful for regulating groups of chemicals based on their shared modes of action. PrecisionTox also aims to quantify risk variation within populations by recognizing susceptibility as a heritable trait that varies with genetic diversity. This initiative incorporates legal experts and collaborates with risk managers to address specific needs within European chemicals legislation, including the uptake of new approach methodologies (NAMs) for setting precise regulatory limits on toxic chemicals.

摘要

精准毒理学的目标是通过加速发现进化上保守的毒性途径来克服替代传统哺乳动物化学安全性测试的概念障碍,这些途径是人类和更远缘动物共有的。一个国际联盟正在系统地测试一组不同的化学物质对包括果蝇、线虫、水蚤、爪蟾和斑马鱼胚胎以及人类细胞系在内的五种模式物种的毒性影响。多种形式的组学和比较毒理学数据被整合在一起,以绘制生物分子相互作用的进化起源图谱,这些相互作用可以预测对健康的不利影响,以及动物系统发育的主要分支。这些不利结局途径 (AOP) 的保守元素及其生物标志物有望为基于其共同作用模式的化学品群体提供有用的调节机制见解。精准毒理学还旨在通过认识到易感性是一种随遗传多样性而变化的可遗传特征,来量化人群内的风险变化。这一倡议纳入了法律专家,并与风险管理者合作,以满足欧洲化学品法规中的具体需求,包括采用新方法方法 (NAM) 来为有毒化学品设定精确的监管限制。

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