AI Article Synopsis

  • Miao sour soup (MSS) from Guizhou, China, is a fermented food rich in beneficial microorganisms, yet its effects on inflammatory bowel disease (IBD) had not been previously studied.
  • This research demonstrated that MSS has protective effects against colitis in mice, reducing weight loss, disease severity, and improving intestinal health indicators.
  • MSS positively influenced the gut microbiome, preserved intestinal barrier integrity, and reduced inflammation by downregulating pro-inflammatory factors, suggesting its potential use as a functional food for IBD management.

Article Abstract

Miao sour soup (MSS), a daily fermented food in Guizhou, China, is rich in microorganisms with various beneficial activities, including anti-inflammatory and antioxidant activities. However, the therapeutic effects of MSS on IBD remain unexplored. This study aimed to investigate the protective effect of MSS against colitis in mice. In this study, we examined the microbial community structure of MSS by metagenomic sequencing and also explored the protective effect of MSS on DSS-induced colitis in mice. We investigated the effects of MSS on intestinal inflammatory response and intestinal barrier function in mice. Finally, the changes in intestinal flora were analyzed based on the 16S rRNA gene sequencing results. Significantly, the experiment result shows that MSS ameliorated the severity of DSS-induced disease in mice by mitigating colitis-associated weight loss, reducing the disease activity index of IBD, alleviating colonic hemorrhagic lesions, increasing colon length, and improving colonic tissue damage. Moreover, MSS preserved intestinal barrier integrity and restored intestinal epithelial function in mice. Additionally, MSS modulated the structure and composition of the intestinal flora. Furthermore, MSS downregulated pro-inflammatory factors and attenuated the NF-κB p65 expression, thereby mitigating the inflammatory response. These findings highlight the protective effect of MSS against DSS-induced colitis, providing substantial scientific support for potential applications of MSS as a functional food.

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http://dx.doi.org/10.1039/d4fo01794cDOI Listing

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