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教程:药物代谢中的微生物组研究。

Tutorial: Microbiome studies in drug metabolism.

机构信息

Department of Pathology, Stanford University School of Medicine, Stanford, California, USA.

Department of Microbiology and Immunology, Stanford University School of Medicine, Stanford, California, USA.

出版信息

Clin Transl Sci. 2022 Dec;15(12):2812-2837. doi: 10.1111/cts.13416. Epub 2022 Sep 30.

Abstract

The human gastrointestinal tract is home to a dense population of microorganisms whose metabolism impacts human health and physiology. The gut microbiome encodes millions of genes, the products of which endow our bodies with unique biochemical activities. In the context of drug metabolism, microbial biochemistry in the gut influences humans in two major ways: (1) by producing small molecules that modulate expression and activity of human phase I and II pathways; and (2) by directly modifying drugs administered to humans to yield active, inactive, or toxic metabolites. Although the capacity of the microbiome to modulate drug metabolism has long been known, recent studies have explored these interactions on a much broader scale and have revealed an unprecedented scope of microbial drug metabolism. The implication of this work is that we might be able to predict the capacity of an individual's microbiome to metabolize drugs and use this information to avoid toxicity and inform proper dosing. Here, we provide a tutorial of how to study the microbiome in the context of drug metabolism, focusing on in vitro, rodent, and human studies. We then highlight some limitations and opportunities for the field.

摘要

人类胃肠道是大量微生物的家园,这些微生物的代谢活动影响着人类的健康和生理机能。肠道微生物组编码着数以百万计的基因,这些基因的产物赋予了我们独特的生化活性。在药物代谢的背景下,肠道中的微生物生化在两个主要方面影响着人类:(1)产生小分子,调节人类 I 相和 II 相途径的表达和活性;(2)直接修饰给予人类的药物,生成活性、无活性或毒性代谢物。尽管微生物组调节药物代谢的能力早已为人所知,但最近的研究在更广泛的范围内探讨了这些相互作用,并揭示了微生物药物代谢的空前范围。这项工作的意义在于,我们或许能够预测个体微生物组代谢药物的能力,并利用这些信息来避免毒性和指导适当的剂量。在这里,我们提供了一个在药物代谢背景下研究微生物组的教程,重点介绍了体外、啮齿动物和人体研究。然后,我们强调了该领域的一些局限性和机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d905/9747132/c3207538534b/CTS-15-2812-g001.jpg

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