4.7 Article

Effects of in vitro digestion and fermentation of Nostoc commune Vauch. polysaccharides on properties and gut microbiota

期刊

CARBOHYDRATE POLYMERS
卷 281, 期 -, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.carbpol.2021.119055

关键词

Nostoc commune Vauch; Polysaccharides; Digestion; Fermentation; Gut microbiota

资金

  1. Open Research Fund of Engineering Research Center of Bioreactor and Pharmaceutical Development, Min-istry of Education [KF202002]

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Nostoc commune Vauch. polysaccharides (NCVP), extracted from Nostoc commune Vauch., showed degradation under in vitro simulated digestion and demonstrated strong antioxidant activities. Additionally, NCVP exhibited a prebiotic effect on gut microbiota and promoted gut metabolism, enhancing the body's defense mechanism.
Nostoc commune Vauch. polysaccharides (NCVP) was extracted from Nostoc commune Vauch. with strong bio-logical properties. The molecular weight of NCVPs (NCVP, NCVP-S, NCVP-G, and NCVP-I) exhibited a downward trend, and the molar ratio of constituent monosaccharides of NCVPs significantly changed, implying that NCVP could be degraded under in vitro simulated digestion. The antioxidant activities of NCVPs were significantly improved during in vitro digestion. In addition, NCVPs had a prebiotic effect on Lactobacillus strain. During in vitro fermentation, NCVP was degraded and utilized by the gut microbiota, and a variety of short-chain fatty acids (SCFAs) were formed. Functional gene prediction of 16S rDNA sequencing data inferred that NCVP could promote gut metabolism and improve the body's defense mechanism. Overall, these findings emphasized that NCVP is beneficial by maintaining the gut health and can be used as potential prebiotics in the functional foods and medicine industries.

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