Egg white peptides ameliorate dextran sulfate sodium-induced acute colitis symptoms by inhibiting the production of pro-inflammatory cytokines and modulation of gut microbiota composition

[Display omitted] •Pro-inflammatory cytokine levels negatively correlated with CPs concentration.•CPs alleviated DSS-induced acute colitis symptom and repaired intestinal mucosa.•CPs have the potential to modulate relative abundance of functionally microbiota. Egg white peptides (EWPs) can be effect...

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Veröffentlicht in:Food chemistry 2021-10, Vol.360, p.129981-129981, Article 129981
Hauptverfasser: Ge, Huifang, Cai, Zhuanzhang, Chai, Jiale, Liu, Jiyun, Liu, Boqun, Yu, Yiding, Liu, Jingbo, Zhang, Ting
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Sprache:eng
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Zusammenfassung:[Display omitted] •Pro-inflammatory cytokine levels negatively correlated with CPs concentration.•CPs alleviated DSS-induced acute colitis symptom and repaired intestinal mucosa.•CPs have the potential to modulate relative abundance of functionally microbiota. Egg white peptides (EWPs) can be effectively used to alleviate and treat inflammatory diseases due to their anti-oxidation, anti-inflammation, and microbiota regulation capabilities. A dextran sodium sulfate (DSS)-induced colitis model was used to clarify the regulatory effects of EWPs on colitis. Forty-three peptide sequences were identified from EWPs using LC-MS/MS. The results demonstrated that EWPs decreased the levels of pro-inflammatory cytokines and the extent of crypt damage in a dose-dependent manner. 16S rRNA gene sequencing results indicated that 200 mg/kg EWPs significantly increased the relative abundance of beneficial bacteria Lactobacillus and Candidatus_Saccharimonas, and reduced the relative abundance of pathogenic bacteria Ruminiclostridium and Akkermansia. In addition, the degree of correlation between pro-inflammatory cytokines and microbiota was as follows: interleukin (IL)-1β > IL-8 > IL-6 > tumor necrosis factor-α To summarize, EWPs contributed to the alleviation of colitis symptoms and the intestinal injury through anti-inflammatory effects, repair of intestinal mucosa, and modulation of gut microbiota.
ISSN:0308-8146
1873-7072
1873-7072
DOI:10.1016/j.foodchem.2021.129981