School of Food Engineering and Nutritional Science, Shaanxi Normal University, Xi'an 710062, China.
School of Food Science and Engineering, South China University of Technology, Guangdong 510641, China.
Int J Biol Macromol. 2024 Oct;278(Pt 3):134860. doi: 10.1016/j.ijbiomac.2024.134860. Epub 2024 Aug 18.
Exploring nutritional therapies that manipulate tryptophan metabolism to activate AhR signaling represents a promising approach for mitigating chronic colitis. Arabinoxylan is a bioactive constituent abundant in wheat bran. Here, we comprehensively investigated anti-colitis potentials of wheat bran arabinoxylan (WBAX), its synbiotic and postbiotic derived from WBAX and Limosilactobacillus reuteri WX-94 (i.e., a probiotic strain exhibiting tryptophan metabolic activity). WBAX fueled L. reuteri and promoted microbial conversion of tryptophan to AhR ligands during in vitro fermentation in the culture medium and in the fecal microbiota from type 2 diabetes. The WBAX postbiotic outperformed WBAX and its synbiotic in augmenting efficacy of tryptophan in restoring DSS-disturbed serum immune markers, colonic tight junction proteins and gene profiles involved in amino acid metabolism and FoxO signaling. The WBAX postbiotic remodeled gut microbiota and superiorly enhanced AhR ligands (i.e., indole metabolites and bile acids), alongside with elevation in colonic AhR and IL-22. Associations between genera and metabolites modified by the postbiotic and colitis in human were verified and strong binding capacities between metabolites and colitis-related targets were demonstrated by molecular docking. Our study advances the novel perspective of WBAX in manipulating tryptophan metabolism and anti-colitis potentials of WBAX postbiotic via promoting gut microbiota-dependent AhR signaling.
探索通过操纵色氨酸代谢来激活 AhR 信号的营养疗法,代表了一种减轻慢性结肠炎的有前途的方法。阿拉伯木聚糖是麦麸中丰富的生物活性成分。在这里,我们全面研究了麦麸阿拉伯木聚糖 (WBAX)、其源自 WBAX 和罗伊氏乳杆菌 WX-94(即具有色氨酸代谢活性的益生菌株)的共生元和后生元的抗结肠炎潜力。WBAX 为 L. reuteri 提供燃料,并促进了色氨酸在体外发酵培养基中和 2 型糖尿病患者粪便微生物群中的 AhR 配体的微生物转化。WBAX 后生元在增强色氨酸恢复 DSS 扰乱的血清免疫标志物、结肠紧密连接蛋白以及参与氨基酸代谢和 FoxO 信号的基因谱方面优于 WBAX 和其共生元。WBAX 后生元重塑了肠道微生物群,并卓越地增强了 AhR 配体(即吲哚代谢物和胆汁酸),同时提高了结肠 AhR 和 IL-22。通过分子对接验证了后生元和人类结肠炎改变的属和代谢物之间的关联,并证明了代谢物与结肠炎相关靶点之间的强结合能力。我们的研究通过促进肠道微生物群依赖的 AhR 信号,推进了 WBAX 在后生元中操纵色氨酸代谢和抗结肠炎潜力的新视角。