Ansari Mohd Hafizur Rehman, Saher Sadia, Parveen Rabea, Khan Washim, Khan Imran Ahmad, Ahmad Sayeed
Bioactive Natural Product Laboratory, Department of Pharmacognosy and Phytochemistry, School of Pharmaceutical Education and Research, Jamia Hamdard, New Delhi, 110062, India.
Viral Research and Diagnosis Laboratory, Department of Microbiology, J.N.M.C, A.M.U, Aligarh, 202002, India.
J Tradit Complement Med. 2022 Apr 14;13(2):150-160. doi: 10.1016/j.jtcme.2022.03.005. eCollection 2023 Mar.
Gut microbiota contributes to diverse mammalian processes including the metabolic functions of drugs. It is a potential new territory for drug targeting, especially for dietary natural compounds such as tannins, flavonoids, steroidal glycosides, anthocyanins, lignans, alkaloids, and others. Because most herbal medicines are orally administered, the chemical profile and corresponding bioactivities of herbal medicines may be altered and implication to ailments by specific microbiota through gut microbiota metabolisms (GMMs) and gut microbiota biotransformations (GMBTs). In this review, briefly introducing the interactions between different categories of natural compounds and gut microbiota produced countless microbial degraded or fragmented metabolites with their biological significance in rodent-based models. From natural product chemistry division, thousands of molecules are produced, degraded, synthesized, and isolated from natural sources but exploited due to lack of biological significance. In this direction, we add a Bio-Chemoinformatics approach to get clues of biology through a specific microbial assault to (Natural products) NPs.
肠道微生物群参与多种哺乳动物生理过程,包括药物的代谢功能。它是药物靶向的一个潜在新领域,尤其是对于单宁、黄酮类化合物、甾体糖苷、花青素、木脂素、生物碱等膳食天然化合物而言。由于大多数草药是口服给药,草药的化学特征和相应生物活性可能会因特定微生物群通过肠道微生物群代谢(GMMs)和肠道微生物群生物转化(GMBTs)而发生改变,并对疾病产生影响。在本综述中,简要介绍了不同类别的天然化合物与肠道微生物群之间的相互作用,这些相互作用在基于啮齿动物的模型中产生了无数具有生物学意义的微生物降解或片段化代谢物。从天然产物化学领域来看,从天然来源产生、降解、合成和分离出了数千种分子,但由于缺乏生物学意义而未得到开发利用。在这个方向上,我们增加了一种生物化学信息学方法,通过对天然产物(NPs)进行特定的微生物攻击来获取生物学线索。