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Introducing WikiPathways as a Data-Source to Support Adverse Outcome Pathways for Regulatory Risk Assessment of Chemicals and Nanomaterials

机译:引入WikiPathways作为数据源以支持不良后果途径来进行化学和纳米材料的监管风险评估

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摘要

A paradigm shift is taking place in risk assessment to replace animal models, reduce the number of economic resources, and refine the methodologies to test the growing number of chemicals and nanomaterials. Therefore, approaches such as transcriptomics, proteomics, and metabolomics have become valuable tools in toxicological research, and are finding their way into regulatory toxicity. One promising framework to bridge the gap between the molecular-level measurements and risk assessment is the concept of adverse outcome pathways (AOPs). These pathways comprise mechanistic knowledge and connect biological events from a molecular level toward an adverse effect outcome after exposure to a chemical. However, the implementation of omics-based approaches in the AOPs and their acceptance by the risk assessment community is still a challenge. Because the existing modules in the main repository for AOPs, the AOP Knowledge Base (AOP-KB), do not currently allow the integration of omics technologies, additional tools are required for omics-based data analysis and visualization. Here we show how WikiPathways can serve as a supportive tool to make omics data interoperable with the AOP-Wiki, part of the AOP-KB. Manual matching of key events (KEs) indicated that 67% could be linked with molecular pathways. Automatic connection through linkage of identifiers between the databases showed that only 30% of AOP-Wiki chemicals were found on WikiPathways. More loose linkage through gene names in KE and Key Event Relationships descriptions gave an overlap of 70 and 71%, respectively. This shows many opportunities to create more direct connections, for example with extended ontology annotations, improving its interoperability. This interoperability allows the needed integration of omics data linked to the molecular pathways with AOPs. A new AOP Portal on WikiPathways is presented to allow the community of AOP developers to collaborate and populate the molecular pathways that underlie the KEs of AOP-Wiki. We conclude that the integration of WikiPathways and AOP-Wiki will improve risk assessment because omics data will be linked directly to KEs and therefore allow the comprehensive understanding and description of AOPs. To make this assessment reproducible and valid, major changes are needed in both WikiPathways and AOP-Wiki.
机译:风险评估正在发生范式转变,以取代动物模型,减少经济资源并改进方法以测试日益增长的化学物质和纳米材料。因此,转录组学,蛋白质组学和代谢组学等方法已成为毒理学研究中的重要工具,并正在寻求进入监管毒性的途径。不良结果途径(AOP)的概念是弥合分子水平测量与风险评估之间差距的一个有前途的框架。这些途径包括机制知识,并将生物学事件从分子水平连接到暴露于化学物质后的不良反应结果。但是,在AOP中实施基于组学的方法以及风险评估界对其的接受仍然是一个挑战。由于AOP的主要存储库中的现有模块AOP知识库(AOP-KB)当前不允许集成组学技术,因此需要其他工具来进行基于组学的数据分析和可视化。在这里,我们展示WikiPathways如何充当支持工具,使组学数据与AOP-KB的AOP-Wiki互操作。手动匹配关键事件(KE)表明67%可能与分子途径有关。通过数据库之间标识符链接的自动连接表明,只有30%的AOP-Wiki化学药品在WikiPathways中被发现。通过KE和关键事件关系描述中的基因名称更松散的链接分别给出了70%和71%的重叠。这显示了创建更多直接连接的机会,例如使用扩展的本体注释,从而改善其互操作性。这种互操作性允许将与分子途径相关的组学数据与AOP整合在一起。提出了WikiPathways上的新AOP门户,以允许AOP开发人员社区进行协作并填充构成AOP-Wiki关键要素的分子途径。我们得出的结论是,由于omics数据将直接与KE链接,因此WikiPathways和AOP-Wiki的集成将改善风险评估,因此可以全面理解和描述AOP。为了使该评估可重复且有效,在WikiPathways和AOP-Wiki中都需要进行重大更改。

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