丹参
溃疡性结肠炎
化学
结肠炎
失调
重编程
药理学
作用机理
肠道菌群
胆汁酸
迷迭香酸
炎症性肠病
生物化学
治疗效果
代谢途径
机制(生物学)
G蛋白偶联胆汁酸受体
草药
代谢紊乱
亚油酸
新陈代谢
癌症研究
PI3K/AKT/mTOR通路
作者
Zhe Liu,Chan Hui,Guochao Zhang,Haicheng Yang,Yi Wang,Yaqian Shi,Chao Wang,Yanfei Liu,Xia Gao,Yuting Wen
摘要
The anti-inflammatory properties of the traditional herb Salvia miltiorrhiza Bunge are well-established, yet its precise mechanism of action in ulcerative colitis (UC) remains unclear. Herein, we evaluate the therapeutic potential of four major tanshinones-tanshinone IIA (Tan IIA), miltirone, neocryptotanshinone, and dihydrotanshinone I-in a murine dextran sulfate sodium (DSS)-induced colitis model. Our results show that tanshinones effectively alleviate disease severity, suppress systemic and local inflammation, and restore intestinal barrier integrity. Integrated multi-omics analysis reveals that the therapeutic efficacy originates from a comprehensive reprogramming of the gut microbiota-metabolite axis. Specifically, tanshinones reverse colitis-associated dysbiosis and rectify metabolic disturbances in linoleic acid metabolism, bile acid biosynthesis, and amino acid utilization. Correlation network analysis identifies key functional modules linking beneficial microbes ( e. g., Akkermansia) to anti-inflammatory lipid mediators and associating pathobionts ( e . g., Desulfovibrio) with disrupted bile acid metabolism. Notably, supplementation with Akkermansia muciniphila synergizes with Tan IIA to amplify barrier restoration and metabolic normalization. Our findings establish that tanshinones ameliorate UC through microbiota-driven metabolic reprogramming, wherein the restructured microbial community actively shapes a therapeutic metabolic output. This work elucidates a metabolite-mediated mechanism of action and positions tanshinones as promising microbiome-targeting therapeutics for inflammatory bowel disease.
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