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Systems toxicology: applications of toxicogenomics, transcriptomics, proteomics and metabolomics in toxicology

机译:系统毒理学:毒理基因组学,转录组学,蛋白质组学和代谢组学在毒理学中的应用

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摘要

Toxicogenomics can facilitate the identification and characterization of toxicity, as illustrated in this review. Toxicogenomics, the application of the functional genomics technologies (transcriptomics, proteomics and metabolomics) in toxicology enables the study of adverse effects of xenobiotic substances in relation to structure and activity of the genome. The advantages and limitations of the different technologies are evaluated, and the prospects for integration of the technologies into a systems biology or systems toxicology approach are discussed. Applications of toxicogenomics in various laboratories around the world show that the crucial steps and sequence of events at the molecular level can be studied to provide detailed insights into mechanisms of toxic action. Toxicogenomics allowed for more sensitive and earlier detection of adverse effects in (animal) toxicity studies. Furthermore, the effects of exposure to mixtures could be studied in more detail. This review argues that in the (near) future, human health risk assessment will truly benefit from toxicogenomics (systems toxicology).
机译:如本文所述,毒物基因组学可以促进毒性的鉴定和表征。毒理基因组学,功能基因组学技术(转录组学,蛋白质组学和代谢组学)在毒理学中的应用,使得能够研究异种生物物质与基因组结构和活性有关的不利影响。评价了不同技术的优缺点,并讨论了将该技术集成到系统生物学或系统毒理学方法中的前景。毒理基因组学在世界各地的不同实验室中的应用表明,可以研究分子水平上关键事件的关键步骤和顺序,以深入了解毒理作用的机理。在动物毒性研究中,毒理基因组学可以更灵敏地及更早地发现不良反应。此外,可以更详细地研究暴露于混合物的影响。这篇评论认为,在不久的将来,人类健康风险评估将真正受益于毒物基因组学(系统毒理学)。

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