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食用海藻鹧鸪菜多糖通过治疗性重塑肠道微生物群和粘蛋白 O-聚糖之间的相互作用来减轻肠道黏膜损伤。

Polysaccharide from edible alga Gloiopeltis furcata attenuates intestinal mucosal damage by therapeutically remodeling the interactions between gut microbiota and mucin O-glycans.

机构信息

Key Laboratory of Marine Drugs of Ministry of Education, and Shandong Provincial Key Laboratory of Glycoscience and Glycotechnology, School of Medicine and Pharmacy, Ocean University of China, Qingdao 266003, China.

Key Laboratory of Marine Drugs of Ministry of Education, and Shandong Provincial Key Laboratory of Glycoscience and Glycotechnology, School of Medicine and Pharmacy, Ocean University of China, Qingdao 266003, China; Qingdao Marine Biomedical Research Institute, Qingdao 266071, China.

出版信息

Carbohydr Polym. 2022 Feb 15;278:118921. doi: 10.1016/j.carbpol.2021.118921. Epub 2021 Nov 30.

Abstract

Gloiopeltis furcata is an edible alga that has long been consumed in China. However, the bioactive polysaccharides from G. furcata have been largely unexplored. Here, we show for the first time that a sulfated polysaccharide from G. furcata (SAO) could improve the integrity of the colonic epithelial layer and protect against dextran sulfate sodium-induced intestinal mucosal damage. Mechanistically, SAO attenuated colonic mucosal damage by therapeutically remodeling the interactions between gut microbiota and mucin O-glycans. Specifically, SAO increased the proportions of complex long-chain mucin O-glycans in the epithelial layer with two terminal N-acetylneuraminic acid residues and promoted the growth of probiotic bacteria including Roseburia spp. and Muribaculaceae. Altogether, our study demonstrates a novel application of SAO for the treatment of inflammatory bowel disease-associated mucosal damage and forms the basis to understand the therapeutic effects of natural polysaccharides from the perspective of symbiotic interactions between host mucin O-glycome and gut microbiome.

摘要

裂片石莼是一种可食用的海藻,在中国已有很长的食用历史。然而,裂片石莼中的生物活性多糖在很大程度上尚未被探索。在这里,我们首次表明,来自裂片石莼的一种硫酸化多糖(SAO)可以改善结肠上皮层的完整性,并防止葡聚糖硫酸钠诱导的肠道黏膜损伤。从机制上讲,SAO 通过治疗性重塑肠道微生物群和粘蛋白 O-聚糖之间的相互作用来减轻结肠黏膜损伤。具体而言,SAO 增加了具有两个末端 N-乙酰神经氨酸残基的上皮层中复杂长链粘蛋白 O-聚糖的比例,并促进了包括罗斯伯里氏菌和穆里布菌科在内的益生菌的生长。总之,我们的研究证明了 SAO 在治疗炎症性肠病相关黏膜损伤方面的新应用,并为从宿主粘蛋白 O-聚糖组和肠道微生物组共生相互作用的角度理解天然多糖的治疗效果奠定了基础。

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