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一种来自银耳的新型多糖的结构表征及其与肠道微生物群的相互作用。

Structural characterization of a novel polysaccharide from Tremella fuciformis and its interaction with gut microbiota.

作者信息

Song Haizhao, Lu Jing, Chu Qiang, Deng Rou, Shen Xinchun

机构信息

College of Food Science and Engineering, Nanjing University of Finance and Economics, Nanjing, China.

Tea Research Institute, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou, China.

出版信息

J Sci Food Agric. 2024 Aug 30;104(11):6553-6562. doi: 10.1002/jsfa.13479. Epub 2024 Apr 3.

Abstract

BACKGROUND

Because of their diverse biological activities, polysaccharides derived from Tremella fuciformis have received growing attention. This study aimed to investigate the structural characterization of a purified polysaccharide (designated as PTP-3a) derived from T. fuciformis and explore its interaction with gut microbiota in vitro.

RESULTS

The findings revealed that PTP-3a had a molecular weight of 1.22 × 10 kDa and consisted of fucose, glucose, xylose, mannose and glucuronic acid in a molar ratio of 0.271:0.016:0.275:0.400:0.038. The primary linkage types identified in PTP-3a were 1,3-linked-manp, 1,4-linked-xylp and 1,2,3-linked-fucp, with corresponding ratios of 0.215:0.161:0.15. In addition, PTP-3a demonstrated notable thermal stability and exhibited a triple-helical structure. Moreover, following in vitro fermentation for 48 h, PTP-3a was efficiently utilized, resulting in a reduction in carbohydrate levels, the production of short-chain fatty acids (SCFAs) and pH adjustment. Furthermore, during in vitro fecal microbial fermentation, PTP-3a decreased the relative abundance of Firmicutes while increasing the proportions of Bacteroidetes and Proteobacteria, resulting in a significantly reduced Firmicutes/Bacteroidetes ratio. Additionally, PTP-3a stimulated the growth of beneficial bacteria such as Parabacteroides merdae, Gordonibacter pamelaeae, Bifidobacterium pseudolongum and Parabacteroides distasonis. Importantly, a strong correlation was observed between the production of SCFAs and specific microorganisms.

CONCLUSION

These findings suggested that PTP-3a has potential as a prebiotic for modulating the gut microbiota. © 2024 Society of Chemical Industry.

摘要

背景

由于来自银耳的多糖具有多种生物活性,因此受到越来越多的关注。本研究旨在研究从银耳中提取的一种纯化多糖(命名为PTP-3a)的结构特征,并在体外探索其与肠道微生物群的相互作用。

结果

研究结果表明,PTP-3a的分子量为1.22×10 kDa,由岩藻糖、葡萄糖、木糖、甘露糖和葡萄糖醛酸组成,摩尔比为0.271:0.016:0.275:0.400:0.038。在PTP-3a中鉴定出的主要连接类型为1,3-连接-甘露糖、1,4-连接-木糖和1,2,3-连接-岩藻糖,相应比例为0.215:0.161:0.15。此外,PTP-3a表现出显著的热稳定性,并呈现三螺旋结构。此外,在体外发酵48小时后,PTP-3a被有效利用,导致碳水化合物水平降低、短链脂肪酸(SCFAs)产生以及pH值调节。此外,在体外粪便微生物发酵过程中,PTP-3a降低了厚壁菌门的相对丰度,同时增加了拟杆菌门和变形菌门的比例,导致厚壁菌门/拟杆菌门比例显著降低。此外,PTP-3a刺激了有益细菌如粪副拟杆菌、帕氏戈登氏菌、假长双歧杆菌和狄氏副拟杆菌的生长。重要的是,观察到SCFAs的产生与特定微生物之间存在很强的相关性。

结论

这些发现表明,PTP-3a作为一种调节肠道微生物群的益生元具有潜力。©2024化学工业协会。

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