Polyphenols in the Fermentation Liquid of Dendrobium candidum Relieve Intestinal Inflammation in Zebrafish Through the Intestinal Microbiome-Mediated Immune Response
Previous studies of ( ), which is mainly distributed in tropical areas, have mainly focused on its functional polysaccharide; the effects of polyphenols, the chemical composition of which may be improved by fermentation, have received limited attention, especially in models, which inevitably involve...
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Veröffentlicht in: | Frontiers in immunology 2020-07, Vol.11, p.1542-1542 |
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Hauptverfasser: | , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Previous studies of
(
), which is mainly distributed in tropical areas, have mainly focused on its functional polysaccharide; the effects of
polyphenols, the chemical composition of which may be improved by fermentation, have received limited attention, especially in
models, which inevitably involve interactions with intestinal microorganisms. To address this challenge, metagenomic and metabolomic techniques, were applied, and immune factors and mucosal barrier-related proteins were determined to reveal the effects of fermented
polyphenols (FDC) on intestinal inflammation induced by oxazolone in zebrafish. The results showed that fermentation significantly changed the chemical composition of
and that FDC significantly improved the intestinal immune index. After the 21st day of FDC intervention, the abundance of
, and
increased, but the abundance of the genera
, and
decreased. At the same time, FDC significantly increased intestinal short-chain fatty acids (SCFAs). In addition, network analysis based on multi-omics indicated that FDC intake leads to changes in intestinal microbiota and intestinal metabolites, resulting in enhanced host immune function. These results indicate that FDC can improve intestinal health by regulating the intestinal microbiota and its metabolites to treat intestinal inflammation and regulate the host immune system. The present research improved our understanding of the utilization of
polyphenols and provided new evidence for the impacts of fermented
on host health. |
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ISSN: | 1664-3224 1664-3224 |
DOI: | 10.3389/fimmu.2020.01542 |