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ArrayTrack--supporting toxicogenomic research at the U.S. Food and Drug Administration National Center for Toxicological Research.

机译:ArrayTrack-支持美国食品和药物管理局国家毒理学研究中心的毒理基因组研究。

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摘要

The mapping of the human genome and the determination of corresponding gene functions, pathways, and biological mechanisms are driving the emergence of the new research fields of toxicogenomics and systems toxicology. Many technological advances such as microarrays are enabling this paradigm shift that indicates an unprecedented advancement in the methods of understanding the expression of toxicity at the molecular level. At the National Center for Toxicological Research (NCTR) of the U.S. Food and Drug Administration, core facilities for genomic, proteomic, and metabonomic technologies have been established that use standardized experimental procedures to support centerwide toxicogenomic research. Collectively, these facilities are continuously producing an unprecedented volume of data. NCTR plans to develop a toxicoinformatics integrated system (TIS) for the purpose of fully integrating genomic, proteomic, and metabonomic data with the data in public repositories as well as conventional (Italic)in vitro(/Italic) and (Italic)in vivo(/Italic) toxicology data. The TIS will enable data curation in accordance with standard ontology and provide or interface a rich collection of tools for data analysis and knowledge mining. In this article the design, practical issues, and functions of the TIS are discussed through presenting its prototype version, ArrayTrack, for the management and analysis of DNA microarray data. ArrayTrack is logically constructed of three linked components: a) a library (LIB) that mirrors critical data in public databases; b) a database (MicroarrayDB) that stores microarray experiment information that is Minimal Information About a Microarray Experiment (MIAME) compliant; and c) tools (TOOL) that operate on experimental and public data for knowledge discovery. Using ArrayTrack, we can select an analysis method from the TOOL and apply the method to selected microarray data stored in the MicroarrayDB; the analysis results can be linked directly to gene information in the LIB.
机译:人类基因组图谱的确定以及相应基因功能,途径和生物学机制的确定,正在推动毒理基因组学和系统毒理学新研究领域的兴起。诸如微阵列之类的许多技术进步使这种范式转变成为可能,这表明在分子水平上理解毒性表达方法的空前发展。在美国食品药物管理局的国家毒理学研究中心(NCTR)中,已经建立了基因组,蛋白质组学和代谢组学技术的核心设施,这些设施使用标准化的实验程序来支持全中心的毒物基因组学研究。这些设施共同不断地产生前所未有的数据量。 NCTR计划开发一种毒理学信息集成系统(TIS),以将基因组,蛋白质组学和代谢组学数据与公共存储库中的数据以及常规(Italic)体外(/ Italic)和(Italic)体内( /斜体)毒理学数据。 TIS将根据标准本体启用数据管理,并提供或接口大量用于数据分析和知识挖掘的工具。本文通过介绍其原型版本ArrayTrack来讨论TIS的设计,实际问题和功能,以管理和分析DNA微阵列数据。 ArrayTrack在逻辑上由三个链接的组件构成:a)镜像公共数据库中关键数据的库(LIB); b)存储微阵列实验信息的数据库(MicroarrayDB),该微阵列实验信息是关于微阵列实验(MIAME)的最小信息; c)对实验和公共数据进行操作以发现知识的工具(TOOL)。使用ArrayTrack,我们可以从工具中选择一种分析方法,并将该方法应用于存储在MicroarrayDB中的选定微阵列数据。分析结果可以直接链接到LIB中的基因信息。

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