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毒理学本体论路线图。

A toxicology ontology roadmap.

机构信息

Douglas Connect and OpenTox, Zeiningen, Switzerland.

出版信息

ALTEX. 2012;29(2):129-37. doi: 10.14573/altex.2012.2.129.

Abstract

Foreign substances can have a dramatic and unpredictable adverse effect on human health. In the development of new therapeutic agents, it is essential that the potential adverse effects of all candidates be identified as early as possible. The field of predictive toxicology strives to profile the potential for adverse effects of novel chemical substances before they occur, both with traditional in vivo experimental approaches and increasingly through the development of in vitro and computational methods which can supplement and reduce the need for animal testing. To be maximally effective, the field needs access to the largest possible knowledge base of previous toxicology findings, and such results need to be made available in such a fashion so as to be interoperable, comparable, and compatible with standard toolkits. This necessitates the development of open, public, computable, and standardized toxicology vocabularies and ontologies so as to support the applications required by in silico, in vitro, and in vivo toxicology methods and related analysis and reporting activities. Such ontology development will support data management, model building, integrated analysis, validation and reporting, including regulatory reporting and alternative testing submission requirements as required by guidelines such as the REACH legislation, leading to new scientific advances in a mechanistically-based predictive toxicology. Numerous existing ontology and standards initiatives can contribute to the creation of a toxicology ontology supporting the needs of predictive toxicology and risk assessment. Additionally, new ontologies are needed to satisfy practical use cases and scenarios where gaps currently exist. Developing and integrating these resources will require a well-coordinated and sustained effort across numerous stakeholders engaged in a public-private partnership. In this communication, we set out a roadmap for the development of an integrated toxicology ontology, harnessing existing resources where applicable. We describe the stakeholders' requirements analysis from the academic and industry perspectives, timelines, and expected benefits of this initiative, with a view to engagement with the wider community.

摘要

异物会对人类健康产生显著且不可预测的不良影响。在开发新的治疗药物时,尽早确定所有候选药物的潜在不良影响至关重要。预测毒理学领域致力于在新型化学物质发生不良反应之前对其进行预测,其方法包括传统的体内实验方法,以及越来越多的体外和计算方法,这些方法可以补充并减少对动物实验的需求。为了达到最大效果,该领域需要访问尽可能大的先前毒理学发现知识库,并且需要以可互操作、可比较和与标准工具包兼容的方式提供这些结果。这就需要开发开放、公共、可计算和标准化的毒理学词汇和本体,以支持计算机、体外和体内毒理学方法以及相关分析和报告活动所需的应用。这种本体开发将支持数据管理、模型构建、集成分析、验证和报告,包括法规报告和根据 REACH 法规等指南提交替代测试的要求,从而在基于机制的预测毒理学方面取得新的科学进展。许多现有的本体和标准倡议可以为支持预测毒理学和风险评估需求的毒理学本体做出贡献。此外,还需要新的本体来满足当前存在差距的实际用例和场景。开发和整合这些资源需要在参与公私合作伙伴关系的众多利益相关者之间进行协调一致和持续的努力。在本通讯中,我们制定了开发综合毒理学本体的路线图,在适用的情况下利用现有资源。我们从学术和行业角度描述了利益相关者的需求分析、时间表以及该倡议的预期收益,以期与更广泛的社区进行接触。

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