Center for Public Health and Environmental Assessment, Office of Research and Development, U.S. Environmental Protection Agency, 109 TW Alexander Drive, Research Triangle Park, NC 27711, United States.
Center for Public Health and Environmental Assessment, Office of Research and Development, U.S. Environmental Protection Agency, 109 TW Alexander Drive, Research Triangle Park, NC 27711, United States.
Environ Int. 2020 May;138:105673. doi: 10.1016/j.envint.2020.105673. Epub 2020 Mar 24.
This paper presents a framework for organizing and accessing mechanistic data on chemical interactions. The framework is designed to support the assessment of risks from combined chemical exposures. The framework covers interactions between chemicals that occur over the entire source-to-outcome continuum including interactions that are studied in the fields of chemical transport, environmental fate, exposure assessment, dosimetry, and individual and population-based adverse outcomes. The framework proposes to organize data using a semantic triple of a chemical (subject), has impact (predicate), and a causal event on the source-to-outcome continuum of a second chemical (object). The location of the causal event on the source-to-outcome continuum and the nature of the impact are used as the basis for a taxonomy of interactions. The approach also builds on concepts from the Aggregate Exposure Pathway (AEP) and Adverse Outcome Pathway (AOP). The framework proposes the linking of AEPs of multiple chemicals and the AOP networks relevant to those chemicals to form AEP-AOP networks that describe chemical interactions that cannot be characterized using AOP networks alone. Such AEP-AOP networks will aid the construction of workflows for both experimental design and the systematic review or evaluation performed in risk assessments. Finally, the framework is used to link the constructs of existing component-based approaches for mixture toxicology to specific categories in the interaction taxonomy.
本文提出了一个组织和访问化学相互作用机制数据的框架。该框架旨在支持对复合化学暴露风险的评估。该框架涵盖了化学物质在整个源到结果连续体中的相互作用,包括在化学传输、环境命运、暴露评估、剂量学以及个体和人群不良结果等领域中研究的相互作用。该框架建议使用化学物质(主语)、有影响(谓语)和源到结果连续体中第二种化学物质的因果事件(宾语)的语义三元组来组织数据。因果事件在源到结果连续体中的位置和影响的性质用作相互作用分类的基础。该方法还借鉴了聚合暴露途径 (AEP) 和不良结局途径 (AOP) 的概念。该框架建议将多种化学物质的 AEP 与与这些化学物质相关的 AOP 网络联系起来,形成 AEP-AOP 网络,以描述仅使用 AOP 网络无法描述的化学相互作用。这样的 AEP-AOP 网络将有助于构建风险评估中实验设计和系统审查或评估的工作流程。最后,该框架用于将现有的基于组件的混合物毒理学方法的结构与相互作用分类中的特定类别联系起来。