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燕麦 β-(1→3, 1→4)-葡聚糖通过增加lachnospiraceae 丰度和产生丁酸来缓解食物过敏诱导的小鼠结肠损伤。

Oat β-(1 → 3, 1 → 4)-d-glucan alleviates food allergy-induced colonic injury in mice by increasing Lachnospiraceae abundance and butyrate production.

机构信息

State Key Laboratory of Animal Nutrition and Feeding, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China.

出版信息

Carbohydr Polym. 2024 Nov 15;344:122535. doi: 10.1016/j.carbpol.2024.122535. Epub 2024 Jul 24.

Abstract

Oat β-(1 → 3, 1 → 4)-d-glucan (OBG), a linear polysaccharide primarily found in oat bran, has been demonstrated to possess immunomodulatory properties and regulate gut microbiota. This study aimed to investigate the impact of low molecular weight (Mw) OBG (155.2 kDa) on colonic injury and allergic symptoms induced by food allergy (FA), and to explore its potential mechanism. In Experiment 1, results indicated that oral OBG improved colonic inflammation and epithelial barrier, and significantly relieved allergy symptoms. Importantly, the OBG supplement altered the gut microbiota composition, particularly increasing the abundance of Lachnospiraceae and its genera, and promoted the production of short-chain fatty acids, especially butyrate. However, in Experiment 2, the gut microbial depletion eliminated these protective effects of OBG on the colon in allergic mice. Further, in Experiment 3, fecal microbiota transplantation and sterile fecal filtrate transfer directly validated the role of OBG-mediated gut microbiota and its metabolites in relieving FA and its induced colonic injury. Our findings suggest that low Mw OBG can alleviate FA-induced colonic damage by increasing Lachnospiraceae abundance and butyrate production, and provide novel insights into the health benefits and mechanisms of dietary polysaccharide intervention for FA.

摘要

燕麦 β-(1→3,1→4)-葡聚糖(OBG)是一种主要存在于燕麦麸皮中的线性多糖,已被证明具有免疫调节特性和调节肠道微生物群的作用。本研究旨在探讨低分子量(Mw)OBG(155.2 kDa)对食物过敏(FA)诱导的结肠损伤和过敏症状的影响,并探讨其潜在机制。在实验 1 中,结果表明口服 OBG 可改善结肠炎症和上皮屏障,并显著缓解过敏症状。重要的是,OBG 补充剂改变了肠道微生物群的组成,特别是增加了 Lachnospiraceae 及其属的丰度,并促进了短链脂肪酸的产生,特别是丁酸。然而,在实验 2 中,肠道微生物群的耗竭消除了 OBG 对过敏小鼠结肠的这些保护作用。此外,在实验 3 中,粪便微生物群移植和无菌粪便滤液转移直接验证了 OBG 介导的肠道微生物群及其代谢物在缓解 FA 和其诱导的结肠损伤中的作用。我们的研究结果表明,低 Mw OBG 可以通过增加 Lachnospiraceae 的丰度和丁酸的产生来减轻 FA 诱导的结肠损伤,为膳食多糖干预 FA 的健康益处和机制提供了新的见解。

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