首页> 美国卫生研究院文献>Acta Pharmaceutica Sinica. B >Regulation of drug metabolism and toxicity by multiple factors ofgenetics epigenetics lncRNAs gut microbiota and diseases: a meeting report of the21st International Symposium on Microsomes and Drug Oxidations(MDO)
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Regulation of drug metabolism and toxicity by multiple factors ofgenetics epigenetics lncRNAs gut microbiota and diseases: a meeting report of the21st International Symposium on Microsomes and Drug Oxidations(MDO)

机译:多种因素对药物代谢和毒性的调节遗传学表观遗传学lncRNA肠道菌群和疾病:第21届微粒体与药物氧化国际研讨会(MDO)

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摘要

Variations in drug metabolism may alter drug efficacy and cause toxicity; better understanding of the mechanisms and risks shall help to practice precision medicine. At the 21st International Symposium on Microsomes and Drug Oxidations held in Davis, California, USA, in October 2–6, 2016, a number of speakers reported some new findings and ongoing studies on the regulation mechanisms behind variable drug metabolism and toxicity, and discussed potential implications to personalized medications. A considerably insightful overview was provided on genetic and epigenetic regulation of gene expression involved in drug absorption, distribution, metabolism, and excretion (ADME) and drug response. Altered drug metabolism and disposition as well as molecular mechanisms among diseased and special populations were presented. In addition, the roles of gut microbiota in drug metabolism and toxicology as well as long non-coding RNAs in liver functions and diseases were discussed. These findings may offer new insights into improved understanding of ADME regulatory mechanisms and advance drug metabolism research.
机译:药物代谢的变化可能会改变药物功效并引起毒性;更好地理解其机制和风险将有助于实践精确医学。在2016年10月2日至6日在美国加利福尼亚州戴维斯举行的第21届国际微粒体与药物氧化国际研讨会上,许多发言者报告了一些新的发现以及正在进行的有关背后调控机制的研究改变药物的代谢和毒性,并讨论了对个性化药物的潜在影响。对涉及药物吸收,分布,代谢和排泄(ADME)和药物反应的基因表达的遗传和表观遗传学调控提供了相当有见地的概述。提出了疾病和特殊人群中药物代谢和处置的改变以及分子机制。此外,还讨论了肠道菌群在药物代谢和毒理学中的作用以及长链非编码RNA在肝功能和疾病中的作用。这些发现可能为增进对ADME调节机制的理解和推进药物代谢研究提供新的见解。

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