Protective Effect of Pediococcus pentosaceus Li05 on Constipation via TGR5/TPH1/5‐HT Activation

微生物学 毒力 粘液 细菌 生物 便秘 胆汁酸 粪便 乳酸 氧化应激 运动性 分泌物 胃肠道 抗生素 基因 药理学 人体胃肠道 内科学 粘蛋白 化学 表型 医学 肠道菌群 短链脂肪酸 质粒 生物化学
作者
Hui Chen,Fengjiao Wang,Shengjie Li,Longxian Lv,Haojie Xu,Jiafeng Xia,Lvwan Xu,Ding Shi,Lanjuan Li
出处
期刊:Microbial biotechnology [Wiley]
卷期号:18 (11): e70257-e70257
标识
DOI:10.1111/1751-7915.70257
摘要

Pediococcus pentosaceus Li05, a strain of lactic acid bacteria isolated from the faeces of healthy volunteers, exhibited potential protective effects against various diseases. This study performed third-generation sequencing and detailed characterisation of its genome. The Li05 chromosome harboured conserved genes associated with acid resistance (atp), bile salt resistance (bsh), oxidative stress resistance (hsl, dltA, and et al.), and adhesion (nrd, gap, and et al.), whereas the plasmid did not contain antibiotic resistance or virulence genes. Following intervention with Li05 in loperamide-induced constipated mice, constipation symptoms improved. Meanwhile, alterations in gut microbiota, increased BSH activity in faeces, and modifications to the faecal bile acid profile were observed. Additionally, expression levels of TGR5 and TPH1 in the colon of the mice increased, leading to elevated 5-HT levels. When the TGR5 gene was knocked out or the TPH1 inhibitor LX1606 was administered to suppress 5-HT synthesis in constipated mice, the beneficial effects of Li05 on gastrointestinal motility and mucus secretion were reversed. Culturing intestinal organoids demonstrated that increased bile acids such as DCA, Iso-LCA, and EALCA could enhance 5-HT levels through the TGR5/TPH1 axis. Therefore, we concluded that Li05 regulated bile acid metabolism, subsequently increasing 5-HT levels through the TGR5/TPH1 axis, thus alleviating constipation.
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