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Xenobiotic Metabolism, Disposition, and Regulation by Receptors: From Biochemical Phenomenon to Predictors of Major Toxicities

机译:受体的异源生物代谢,处置和调节:从生化现象到主要毒性的预测因子

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摘要

To commemorate the 50th anniversary of the Society of Toxicology, this special edition article reviews the history and current scope of xenobiotic metabolism and transport, with special emphasis on the discoveries and impact of selected “xenobiotic receptors.” This overall research realm has witnessed dynamic development in the past 50 years, and several of the key milestone events that mark the impressive progress in these areas of toxicological sciences are highlighted. From the initial observations regarding aspects of drug metabolism dating from the mid- to late 1800’s, the area of biotransformation research witnessed seminal discoveries in the mid-1900’s and onward that are remarkable in retrospect, including the discovery and characterization of the phase I monooxygenases, the cytochrome P450s. Further research uncovered many aspects of the biochemistry of xenobiotic metabolism, expanding to phase II conjugation and phase III xenobiotic transport. This led to hallmark developments involving integration of genomic technologies to elucidate the basis for interindividual differences in response to xenobiotic exposures and discovery of nuclear and soluble receptor families that selectively “sense” the chemical milieu of the mammalian cell and orchestrate compensatory changes in gene expression programming to accommodate complex xenobiotic exposures. This review will briefly summarize these developments and investigate the expanding roles of xenobiotic receptor biology in the underlying basis of toxicological response to chemical agents.
机译:为了纪念毒理学学会成立50周年,本特别版文章回顾了异种生物代谢和运输的历史和当前范围,并特别强调了某些“异种生物受体”的发现和影响。在过去的50年中,这个整体研究领域见证了动态发展,并突出了标志着毒理学这些领域令人瞩目的进步的几个关键里程碑事件。从有关1800年代中期至后期的药物代谢方面的初步观察结果来看,生物转化研究领域见证了1900年代中期及以后的重大发现,其回顾令人瞩目,包括I期单加氧酶的发现和表征,细胞色素P450。进一步的研究发现了异种生物代谢的生物化学的许多方面,扩展到II期共轭和III期异种生物运输。这导致了标志性的发展,涉及整合基因组技术以阐明对异种生物暴露的个体差异的基础,并发现了核和可溶性受体家族,这些家族选择性地“感知”了哺乳动物细胞的化学环境并精心策划了基因表达程序的补偿性变化。以适应复杂的异生物接触。这篇综述将简要总结这些进展,并研究异种生物受体生物学在对化学试剂进行毒理学反应的潜在基础中的扩展作用。

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