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实时监测抗肿瘤药物代谢中的宿主-肠道微生物种间相互作用。

Real-Time Monitoring of Host-Gut Microbial Interspecies Interaction in Anticancer Drug Metabolism.

机构信息

Natural Products Research Institute, College of Pharmacy, Seoul National University, Seoul 08826, Korea.

出版信息

J Am Chem Soc. 2022 May 18;144(19):8529-8535. doi: 10.1021/jacs.1c10998. Epub 2022 May 10.

Abstract

Gut microbiome can affect drug metabolism considerably, leading to modified drug response. However, quantitative estimation of host vs. microbial contributions in a living host-gut microbiome system has been challenging. Using the interspecies system of and gut bacteria, we developed a real-time approach for monitoring their metabolic interaction during anticancer drug 5-fluorouracil (5-FU) metabolism. The fluorine NMR-based approach yielded the quantitative contributions to the host 5-FU metabolism made by human gut-microbial species of variable genetic backgrounds. It also experimentally confirmed a bacterial gene-metabolism relationship. Differential 5-FU catabolism among bacterial substrains and the contributions to the host metabolism, unobservable by conventional 16S rRNA metagenomic sequencing, were also found. The metabolic contributions could be correlated with phenotypic developmental toxicity of 5-FU to the host fed with different substrains. Our convenient platform should help to reveal heterogeneity in host-gut microbiome interactions for many drugs in a living symbiotic system.

摘要

肠道微生物组可以显著影响药物代谢,从而导致药物反应的改变。然而,在活体宿主-肠道微生物组系统中定量估计宿主与微生物的贡献一直具有挑战性。我们利用 和肠道细菌的种间系统,开发了一种实时监测抗癌药物 5-氟尿嘧啶(5-FU)代谢过程中它们代谢相互作用的方法。基于氟 NMR 的方法提供了定量贡献,即人类肠道微生物物种对不同遗传背景的宿主 5-FU 代谢的贡献。它还通过实验证实了细菌基因-代谢关系。还发现了不同细菌亚系之间的 5-FU 差异分解代谢以及对宿主代谢的贡献,这是常规 16S rRNA 宏基因组测序无法观察到的。代谢贡献可以与用不同亚系喂养的宿主的 5-FU 对宿主表型发育毒性相关。我们的便捷平台应有助于揭示许多药物在活体共生系统中宿主-肠道微生物组相互作用的异质性。

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