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毒理学本体论视角。

Toxicology ontology perspectives.

机构信息

Douglas Connect and OpenTox, Zeiningen, Switzerland.

出版信息

ALTEX. 2012;29(2):139-56. doi: 10.14573/altex.2012.2.139.

Abstract

The field of predictive toxicology requires the development of open, public, computable, standardized toxicology vocabularies and ontologies to support the applications required by in silico, in vitro, and in vivo toxicology methods and related analysis and reporting activities. In this article we review ontology developments based on a set of perspectives showing how ontologies are being used in predictive toxicology initiatives and applications. Perspectives on resources and initiatives reviewed include OpenTox, eTOX, Pistoia Alliance, ToxWiz, Virtual Liver, EU-ADR, BEL, ToxML, and Bioclipse. We also review existing ontology developments in neighboring fields that can contribute to establishing an ontological framework for predictive toxicology. A significant set of resources is already available to provide a foundation for an ontological framework for 21st century mechanistic-based toxicology research. Ontologies such as ToxWiz provide a basis for application to toxicology investigations, whereas other ontologies under development in the biological, chemical, and biomedical communities could be incorporated in an extended future framework. OpenTox has provided a semantic web framework for the implementation of such ontologies into software applications and linked data resources. Bioclipse developers have shown the benefit of interoperability obtained through ontology by being able to link their workbench application with remote OpenTox web services. Although these developments are promising, an increased international coordination of efforts is greatly needed to develop a more unified, standardized, and open toxicology ontology framework.

摘要

预测毒理学领域需要开发开放、公共、可计算、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程序。在本文中,我们根据一组视角回顾了本体的发展,展示了本体在预测毒理学计划和应用中的使用方式。回顾的资源和计划的视角包括 OpenTox、eTOX、Pistoia Alliance、ToxWiz、Virtual Liver、EU-ADR、BEL、ToxML 和 Bioclipse。我们还回顾了邻近领域中现有的本体开发,这些开发可以为预测毒理学建立一个本体框架做出贡献。目前已经有大量的资源可以为 21 世纪基于机制的毒理学研究的本体框架提供基础。ToxWiz 等本体为毒理学研究提供了应用基础,而生物、化学和生物医学领域正在开发的其他本体可以在未来的扩展框架中得到应用。OpenTox 为将这些本体实现到软件应用程序和链接数据资源中提供了语义 Web 框架。Bioclipse 的开发人员通过能够将他们的工作台应用程序与远程 OpenTox Web 服务链接,展示了通过本体获得的互操作性的好处。尽管这些发展很有希望,但非常需要加强国际协调,以开发出更统一、标准化和开放的毒理学本体框架。

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