益生菌
炎症性肠病
结肠炎
发酵
肠道菌群
炎症性肠病
食品科学
肠易激综合征
疾病
生物
医学
细菌
内科学
免疫学
遗传学
作者
Qingqing Yu,Manchun Huang,Juan Bai,Ying Zhu,Yufeng He,Yansheng Zhao,Yongjun Xia,Xiang Xiao
出处
期刊:Food & Function
[Royal Society of Chemistry]
日期:2025-01-01
卷期号:16 (18): 7408-7421
被引量:3
摘要
The clinical management of Inflammatory Bowel Disease (IBD) requires novel intervention strategies, and functional fermented foods hold unique promise due to their multi-target modulatory effects. This study systematically evaluated the colitis-alleviating properties of Lactiplantibacillus plantarum dy-1 fermented barley (LFBE) compared with raw barley flour (RBE) and heat-inactivated strain and raw barley flour (HLFBE), emphasizing both the individual and synergistic roles of the functional matrices in LFBE. In a DSS-induced colitis model, the three interventions exhibited a clear gradient of efficacy (LFBE > HLFBE > RBE), with the LFBE group showing the most pronounced therapeutic benefits, including minimal body weight loss (14.12% vs. 15.56% in HLFBE, 17.47% in RBE and 24.86% in Model) and a significantly lower disease activity index (2.37 vs. 2.59 in HLFBE, 2.96 in RBE and 3.29 in Model). Notably, LFBE uniquely enriched phenolic compounds and carbohydrates, reducing pro-inflammatory cytokine levels. Moreover, its probiotic components activated KLF4/ATOH1-mediated goblet cell differentiation, thereby enhancing mucin production. Gut microbiota analysis further revealed that LFBE promoted the proliferation of Akkermansia (+61.93%) and Lachnospiraceae (+130.85%) while inhibiting the colonization of Escherichia-Shigella (-69.84%). These findings highlight the synergistic contributions of probiotic compounds, fermentation-enhanced bioactive compounds, and the prebiotic barley matrix in LFBE. Collectively, this work provides a theoretical foundation and innovative avenues for developing precision fermentation-based, targeted interventions for IBD management.
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