In vitro digestion and human gut microbiota fermentation of Bletilla striata polysaccharides and oligosaccharides

益生元 发酵 拟杆菌 肠道菌群 消化(炼金术) 食品科学 生物 多糖 抗氧化剂 生物化学 唾液 乳酸菌 真细菌 微生物学 化学 细菌 色谱法 遗传学
作者
Qiqi Wang,Huimin Chen,Mingzhu Yin,Cheng Xue,Hui Xia,Hongtao Liu,Junping Zheng,Zhigang Zhang,Hongtao Liu
出处
期刊:Frontiers in Cellular and Infection Microbiology [Frontiers Media SA]
卷期号:13 被引量:11
标识
DOI:10.3389/fcimb.2023.1105335
摘要

Background Bletilla striata is one of the commonly used traditional Chinese medicine. B. striata polysaccharides (BP) and oligosaccharides (BO) are one of the main components of B. striata , which have been proved to have a variety of biological activities. However, the digestion and fermentation characteristics of BP and BO are still unclear. Methods The study evaluated different prebiotic effects of BP and BO by in vitro simulating digestion and gut microbiota fermentation. Results The results show that the simulating saliva partly degraded BP, but had no effect on BO. The molecular weights of BP and BO remained basically unchanged in gastric and intestinal digestion. In addition, BP and BO could be rapidly degraded and utilized by gut microbiota. During in vitro fermentation, the growth rates of the BP and BO groups were higher than that of the Control group and the pH value and total carbohydrate content in BP group and BO group decreased significantly. Although the reducing sugar level in the BO group decreased rapidly, it remained at a low level in the BP group. Both BP and BO improved the composition and structure of gut microbiota, indicative of the upregulated abundances of Streptococcus and Veillonella , and the downregulated populations of Escherichia and Bacteroides. There were differences in the SCFA production by gut microbiota and antioxidant activities between the BP and BO groups. The fermentation broth of the BP group displayed a stronger suppression of O 2 -, but a higher scavenging effect on DPPH for the BO group. Conclusions BP and BO displayed different digestion and fermentation characteristics in vitro due to their distinct polymerization degrees. The study point towards the potential of BP and BO as prebiotics in the application to human diseases by selectively regulating gut microbiota in the future.

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