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网络药理学探索揭示,以玛咖化合物方治疗抗疲劳作用的共同治疗机制是调节肠道微生物群。

Network Pharmacology Exploration Reveals Gut Microbiota Modulation as a Common Therapeutic Mechanism for Anti-Fatigue Effect Treated with Maca Compounds Prescription.

机构信息

School of Food Science and Technology, Jiangnan University, Wuxi 214122, China.

Air Force Medical Center, PLA, Beijing 100142, China.

出版信息

Nutrients. 2022 Apr 7;14(8):1533. doi: 10.3390/nu14081533.

Abstract

Maca compounds prescription (MCP) is a common botanical used in dietary supplements, primarily to treat exercise-induced fatigue. The aim of this study is to elucidate the multi-target mechanism of MCP on fatigue management via network pharmacology and gut microbiota analysis. Databases and literature were used to screen the chemical compounds and targets of MCP. Subsequently, 120 active ingredients and 116 fatigue-related targets played a cooperative role in managing fatigue, where several intestine-specific targets indicated the anti-fatigue mechanism of MCP might be closely related to its prebiotics of intestinal bacteria. Thus, forced swimming tests (FSTs) were carried and mice fecal samples were collected and analyzed by 16S rRNA sequencing. Gut microbiota were beneficially regulated in the MCP-treated group in phylum, genus and OTU levels, respectively, and that with a critical correlation included Lactobacillus and . The results systematically reveal that MCP acts against fatigue on multi-targets with different ingredients and reshapes the gut microbial ecosystem.

摘要

玛卡复方方剂(MCP)是一种常用于膳食补充剂的植物药,主要用于治疗运动引起的疲劳。本研究旨在通过网络药理学和肠道微生物组学分析阐明 MCP 对疲劳管理的多靶点作用机制。利用数据库和文献筛选 MCP 的化学化合物和靶点。随后,120 种活性成分和 116 个与疲劳相关的靶点共同发挥抗疲劳作用,其中几个肠道特异性靶点表明 MCP 的抗疲劳机制可能与其肠道细菌的益生元密切相关。因此,进行了强迫游泳试验(FST),并收集和分析了小鼠粪便样本 16S rRNA 测序。在门、属和 OTU 水平上,MCP 处理组的肠道微生物群分别得到了有益的调节,具有关键相关性的包括乳杆菌和. 结果系统地表明,MCP 以不同的成分针对多种靶点发挥抗疲劳作用,并重塑肠道微生物生态系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a5c/9026883/438ecf96faa7/nutrients-14-01533-g001.jpg

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