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一种用于研究人肠道微生物药物代谢的体外发酵筛选平台。

An Ex Vivo Fermentation Screening Platform to Study Drug Metabolism by Human Gut Microbiota.

机构信息

The Netherlands Organization for Applied Scientific Research (TNO), Zeist, The Netherlands (E.v.d.S., F.H.J.S., C.v.W., M.H., I.H.G.N., W.H.J.V.) and Pfizer, Inc., Groton, Connecticut (R.S.O., G.S.W.)

The Netherlands Organization for Applied Scientific Research (TNO), Zeist, The Netherlands (E.v.d.S., F.H.J.S., C.v.W., M.H., I.H.G.N., W.H.J.V.) and Pfizer, Inc., Groton, Connecticut (R.S.O., G.S.W.).

出版信息

Drug Metab Dispos. 2018 Nov;46(11):1596-1607. doi: 10.1124/dmd.118.081026. Epub 2018 Aug 29.

Abstract

Colon microbiota-based drug metabolism has received little attention thus far in the process of drug development, whereas the role of gut microbiota in clinical safety and efficacy of drugs has become more clear. Many of these studies have been performed using animal studies, but the translational value of these data with respect to drug pharmacokinetics, efficacy, and safety is largely unknown. To investigate human colon microbiota-mediated drug metabolism, we applied a recently developed ex vivo fermentation screening platform, in which human colonic microbiota conditions are simulated. A set of 12 drugs (omeprazole, simvastatin, metronidazole, risperidone, sulfinpyrazone, sulindac, levodopa, dapsone, nizatidine, sulfasalazine, zonisamide, and acetaminophen) was incubated with human colon microbiota under strictly anaerobic conditions, and samples were analyzed using high-performance liquid chromatograph-UV-high-resolution mass spectrometry analysis. The human microbiota in the fermentation assay consisted of bacterial genera regularly encountered in human colon and fecal samples and could be reproducibly cultured in independent experiments over time. In addition, fully anaerobic culture conditions could be maintained for 24 hours of incubation. Five out of the 12 included drugs (sulfasalazine, sulfinpyrazone, sulindac, nizatidine, and risperidone) showed microbiota-based biotransformation after 24 hours of incubation in the ex vivo fermentation assay. We demonstrated that drug metabolites formed by microbial metabolism can be detected in a qualitative manner and that the data are in accordance with those reported earlier for in vivo metabolism. In conclusion, we present a research tool to investigate human colon microbiota-based drug metabolism that may be applied to enable translatability of microbiota-based drug metabolism.

摘要

肠道微生物群药物代谢在药物开发过程中尚未得到充分关注,而肠道微生物群在药物临床安全性和疗效中的作用已变得更加明确。这些研究中的许多研究都是使用动物研究进行的,但这些数据对于药物药代动力学、疗效和安全性的转化价值在很大程度上是未知的。为了研究人类结肠微生物群介导的药物代谢,我们应用了最近开发的体外发酵筛选平台,其中模拟了人类结肠微生物群的条件。我们用 12 种药物(奥美拉唑、辛伐他汀、甲硝唑、利培酮、舒林酸、左旋多巴、达泊西汀、尼扎替丁、柳氮磺胺吡啶、佐米曲坦和对乙酰氨基酚)对人体结肠微生物群进行了严格的厌氧条件下的孵育,并使用高效液相色谱-紫外-高分辨率质谱分析进行了样品分析。发酵试验中的人类微生物群由人类结肠和粪便样本中经常遇到的细菌属组成,可以在独立的实验中随着时间的推移重复培养。此外,完全厌氧的培养条件可以维持 24 小时的孵育。在体外发酵试验中孵育 24 小时后,12 种包含药物中的 5 种(柳氮磺胺吡啶、舒林酸、舒林酸、尼扎替丁和利培酮)显示出基于微生物群的生物转化。我们证明了可以以定性的方式检测微生物代谢形成的药物代谢物,并且数据与早期报道的体内代谢数据一致。总之,我们提出了一种研究工具来研究人类结肠微生物群药物代谢,这可能有助于实现基于微生物群的药物代谢的可转化性。

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