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构建和应用定量不良结局路径模型进行化学危害和风险评估。

Building and Applying Quantitative Adverse Outcome Pathway Models for Chemical Hazard and Risk Assessment.

机构信息

US Army Engineer Research and Development Center, Vicksburg, Mississippi, USA.

Environment Department, University of York, Heslington, York, UK.

出版信息

Environ Toxicol Chem. 2019 Sep;38(9):1850-1865. doi: 10.1002/etc.4505. Epub 2019 Aug 8.

Abstract

An important goal in toxicology is the development of new ways to increase the speed, accuracy, and applicability of chemical hazard and risk assessment approaches. A promising route is the integration of in vitro assays with biological pathway information. We examined how the adverse outcome pathway (AOP) framework can be used to develop pathway-based quantitative models useful for regulatory chemical safety assessment. By using AOPs as initial conceptual models and the AOP knowledge base as a source of data on key event relationships, different methods can be applied to develop computational quantitative AOP models (qAOPs) relevant for decision making. A qAOP model may not necessarily have the same structure as the AOP it is based on. Useful AOP modeling methods range from statistical, Bayesian networks, regression, and ordinary differential equations to individual-based models and should be chosen according to the questions being asked and the data available. We discuss the need for toxicokinetic models to provide linkages between exposure and qAOPs, to extrapolate from in vitro to in vivo, and to extrapolate across species. Finally, we identify best practices for modeling and model building and the necessity for transparent and comprehensive documentation to gain confidence in the use of qAOP models and ultimately their use in regulatory applications. Environ Toxicol Chem 2019;38:1850-1865. © 2019 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals, Inc. on behalf of SETAC.

摘要

毒理学的一个重要目标是开发新方法,以提高化学危害和风险评估方法的速度、准确性和适用性。一个有前途的途径是将体外测定与生物途径信息相结合。我们研究了如何将不良结局途径 (AOP) 框架用于开发用于监管化学安全评估的基于途径的定量模型。通过将 AOP 用作初始概念模型,并将 AOP 知识库用作关键事件关系数据的来源,不同的方法可用于开发与决策相关的计算定量 AOP 模型 (qAOP)。qAOP 模型不一定具有其基础 AOP 的相同结构。有用的 AOP 建模方法范围从统计、贝叶斯网络、回归和常微分方程到基于个体的模型,应根据要提出的问题和可用数据进行选择。我们讨论了需要毒代动力学模型来提供暴露与 qAOP 之间的联系,从体外推断到体内,以及从一种物种推断到另一种物种。最后,我们确定了建模和模型构建的最佳实践,以及透明和全面的文档记录的必要性,以增强对 qAOP 模型使用的信心,并最终将其用于监管应用。环境毒理学与化学 2019;38:1850-1865。©2019 作者。环境毒理学与化学由 Wiley 期刊出版公司代表 SETAC 出版。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdac/6771761/52864de2a1ac/ETC-38-1850-g001.jpg

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