肠道菌群
芍药苷
失调
结肠炎
微生物学
粪便
生物
免疫学
药理学
化学
色谱法
高效液相色谱法
作者
Qilin Fan,Xiaojing Guan,Yuanlong Hou,Yali Liu,Wei Wei,Xiaoying Cai,Youying Zhang,Guangji Wang,Xiao Zheng,Haiping Hao
出处
期刊:Phytomedicine
[Elsevier BV]
日期:2020-09-19
卷期号:79: 153345-153345
被引量:108
标识
DOI:10.1016/j.phymed.2020.153345
摘要
Total glucosides of peony (TGP), extracted from the root and rhizome of Paeonia lactiflora Pall, has well-confirmed immunomodulatory efficacy in the clinic. However, the mechanism and active ingredients remain largely unclear.Our previous study revealed a low systemic exposure but predominant gut distribution of TGP components. The aim of this study was to investigate involvement of the gut microbiota in the immunoregulatory effects and identify the active component.Mice received 3% DSS to establish a model of colitis. The treatment group received TGP or single paeoniflorin (PF) or albiflorin (AF). Body weight, colon length, inflammatory and histological changes were assessed. Gut microbiota structure was profiled by 16s rRNA sequencing. Antibiotic treatment and fecal transplantation were used to explore the involvement of gut microbiota. Metabolomic assay of host and microbial metabolites in colon was performed.TGP improved colonic injury and gut microbial dysbiosis in colitis mice, and PF was responsible for the protective effects. Fecal microbiota transfer from TGP-treated mice conferred resilience to colitis, while antibiotic treatment abrogated the protective effects. Both TGP and PF decreased colonic indole-3-lactate (ILA), a microbial tryptophan metabolite. ILA was further identified as an inhibitor of epithelial autophagy and ILA supplementation compromised the benefits of TGP.Our findings suggest that TGP acts in part through a gut microbiota-ILA-epithelial autophagy axis to alleviate colitis.
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