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不良结局途径在化学毒性测试中的应用:潜在优势与局限性

Use of adverse outcome pathways in chemical toxicity testing: potential advantages and limitations.

作者信息

Jeong Jaeseong, Choi Jinhee

机构信息

School of Environmental Engineering, University of Seoul, Seoul, Korea.

出版信息

Environ Health Toxicol. 2017 Dec 30;33(1):e2018002. doi: 10.5620/eht.e2018002. eCollection 2017.

Abstract

Amid revolutionary changes in toxicity assessment brought about by increasing regulation of chemicals, adverse outcome pathways (AOPs) have emerged as a useful framework to assess adverse effect of chemicals using molecular level effect, which aid in setting environmental regulation policies. AOPs are biological maps that describe mechanisms linking molecular initiating event to adverse outcomes (AOs) at an individual level. Each AOP consists of a molecular initiating event, key events, and an AO. AOPs use molecular markers to predict endpoints currently used in risk assessment, promote alternatives to animal model-based test methods, and provide scientific explanations for the effects of chemical exposures. Moreover, AOPs enhance certainty in interpreting existing and new information. The application of AOPs in chemical toxicity testing will help shift the existing paradigm of chemical management based on apical endpoints toward active application of in silico and in vitro data.

摘要

在化学品监管日益严格所带来的毒性评估的革命性变化中,不良结局途径(AOPs)已成为一个有用的框架,用于利用分子水平效应评估化学品的不良影响,这有助于制定环境监管政策。AOPs是描述在个体水平上连接分子引发事件与不良结局(AO)的机制的生物学图谱。每个AOP都由一个分子引发事件、关键事件和一个AO组成。AOPs使用分子标记来预测目前在风险评估中使用的终点,推广基于动物模型的测试方法的替代方法,并为化学物质暴露的影响提供科学解释。此外,AOPs提高了对现有和新信息进行解释的确定性。AOPs在化学毒性测试中的应用将有助于将基于顶端终点的现有化学品管理模式转变为积极应用计算机模拟和体外数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38cf/5903038/5e7172bdd340/eht-33-1-e2018002f1.jpg

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