FGF19型
熊去氧胆酸
粪便
肠道菌群
内科学
牛磺酸
维管菌
胆汁酸
胃肠病学
医学
化学
内分泌学
免疫学
生物
微生物学
细菌
生物化学
链球菌
受体
氨基酸
遗传学
成纤维细胞生长因子
作者
Weihua Chen,Yiran Wei,Aizhen Xiong,Yanmei Li,Huida Guan,Qixia Wang,Qi Miao,Zhaolian Bian,Xiao Xiao,Min Lian,Shouxin Zhang,Bo Li,Qin Cao,Zhuping Fan,Weici Zhang,Dekai Qiu,Jing‐Yuan Fang,M. Eric Gershwin,Li Yang,Ruqi Tang,Xiong Ma
标识
DOI:10.1007/s12016-019-08731-2
摘要
Accumulation of bile acids (BAs) contributes significantly to the pathogenesis of primary biliary cholangitis (PBC). Here, we sought to systematically characterize the serum and fecal BA profiles and the linkage between BAs and gut microbiota in PBC. The serum and fecal BAs were compared between 65 UDCA treatment-naive PBC and 109 healthy controls using UPLC-MS in cross-sectional study. In a prospective study, a subgroup of patients was enrolled for BA and microbiota analysis before and after UDCA therapy. BA compositions in serum and feces significantly differed between treatment-naive PBC and controls. Particularly, PBC was associated with decreased conversions of conjugated to unconjugated, and primary to secondary BAs, indicating impaired microbial metabolism of BAs. PBC patients at advanced stage exhibited a more abnormal BA profile compared with early-stage patients. UDCA treatment led to a decreased level of taurine-conjugated BAs, thereby reversing the conjugated/unconjugated ratio in PBC. Moreover, the level of secondary BAs such as DCA and conjugated DCA inversely correlated with PBC-enriched gut microbes (e.g., Veillonella, Klebsiella), while positively correlated with control-enriched microbes (e.g., Faecalibacterium, Oscillospira). Microbiota analysis also revealed a significant increase of taurine-metabolizing bacteria Bilophila spp. in patients after UDCA, which was strongly correlated with decreased taurine-conjugated BAs. In addition, serum FGF19 was remarkably increased in treatment-naïve PBC and decreased after UDCA. Our study established specific alterations of BA compositions in serum and feces of PBC, suggesting the potential for using BAs for diagnosis, and highlighting the possibility of modulating BA profile by altering gut microbiota. Graphical Abstract.
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