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不同提取工艺下蛹虫草多糖的理化性质及生物活性:对小鼠肠道菌群和免疫应答的影响。

Physicochemical properties and bioactivity of polysaccharides from with different extraction processes: effects on gut microbiota and immune response in mice.

机构信息

Key Laboratory of Dairy Science, Northeast Agricultural University, College of Food Science, Harbin 150030, China.

出版信息

Food Funct. 2022 Sep 22;13(18):9268-9284. doi: 10.1039/d2fo01646j.

Abstract

The effect of different extraction processes on the physicochemical characterization, digestibility, antioxidant activity and prebiotic activity of (ICM) fruiting body polysaccharides was studied. Furthermore, the effect of ultrasound-assisted extraction of ICM (U-ICM) on gut microbiota, the intestinal barrier and immune response was deeply explored. This study found that ICMs showed high indigestibility in both α-amylase and artificial gastric juice, indicating that ICMs have the potential as dietary fiber. In contrast, U-ICM had the best antioxidant activity and prebiotic potential. Meanwhile, there was a structure-activity relationship between the antioxidant activity of ICMs and the content of uronic acid, arabinose and galactose. When healthy mice were fed U-ICM for 42 days, the relative abundances of , , and were found to increase significantly, while that of decreased significantly. Meanwhile, U-ICM significantly promotes the expression of tight junction protein and the production of cytokines, indicating that U-ICM had the function of enhancing the intestinal barrier and regulating the host immune response. In conclusion, U-ICM as dietary fiber has the potential to be developed as a gut health-promoting prebiotic component or functional food. This research provided a valuable resource for further exploring the structure-activity relationship and prebiotic activity of ICMs.

摘要

研究了不同提取工艺对(ICM)子实体多糖的理化特性、消化率、抗氧化活性和益生元活性的影响。此外,还深入探讨了超声辅助提取 ICM(U-ICM)对肠道微生物群、肠道屏障和免疫反应的影响。本研究发现,ICM 在α-淀粉酶和人工胃液中均表现出高消化率,表明 ICM 具有膳食纤维的潜力。相比之下,U-ICM 具有最佳的抗氧化活性和益生元潜力。同时,ICM 的抗氧化活性与糖醛酸、阿拉伯糖和半乳糖的含量之间存在结构-活性关系。当健康小鼠喂食 U-ICM 42 天时,发现 、 、 和 的相对丰度显著增加,而 的相对丰度显著降低。同时,U-ICM 显著促进了紧密连接蛋白的表达和细胞因子的产生,表明 U-ICM 具有增强肠道屏障和调节宿主免疫反应的功能。总之,作为膳食纤维的 U-ICM 具有作为肠道健康促进益生元成分或功能性食品开发的潜力。本研究为进一步探索 ICM 的结构-活性关系和益生元活性提供了有价值的资源。

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