Nutrients (Jul 2023)

Anti-Inflammatory Effect and Signaling Mechanism of <i>Glycine max</i> Hydrolyzed with Enzymes from <i>Bacillus velezensis</i> KMU01 in a Dextran-Sulfate-Sodium-Induced Colitis Mouse Model

  • Seung-Hyeon Lee,
  • Ha-Rim Kim,
  • Eun-Mi Noh,
  • Jae Young Park,
  • Mi-Sun Kwak,
  • Ye-Jin Jung,
  • Hee-Jong Yang,
  • Myeong Seon Ryu,
  • Hyang-Yim Seo,
  • Hansu Jang,
  • Seon-Young Kim,
  • Mi Hee Park

DOI
https://doi.org/10.3390/nu15133029
Journal volume & issue
Vol. 15, no. 13
p. 3029

Abstract

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The purpose of this study was to investigate the effect that Glycine max hydrolyzed with enzymes from Bacillus velezensis KMU01 has on dextran-sulfate-sodium (DSS)-induced colitis in mice. Hydrolysis improves functional health through the bioconversion of raw materials and increase in intestinal absorption rate and antioxidants. Therefore, G. max was hydrolyzed in this study using a food-derived microorganism, and its anti-inflammatory effect was observed. Enzymatically hydrolyzed G. max (EHG) was orally administered once daily for four weeks before DSS treatment. Colitis was induced in mice through the consumption of 5% (w/v) DSS in drinking water for eight days. The results showed that EHG treatment significantly alleviated DSS-induced body weight loss and decreased the disease activity index and colon length. In addition, EHG markedly reduced tumor necrosis factor-α, interleukin (IL)-1β, and IL-6 production, and increased that of IL-10. EHG improved DSS-induced histological changes and intestinal epithelial barrier integrity in mice. Moreover, we found that the abundance of 15 microorganisms changed significantly; that of Proteobacteria and Escherichia coli, which are upregulated in patients with Crohn’s disease and ulcerative colitis, decreased after EHG treatment. These results suggest that EHG has a protective effect against DSS-induced colitis and is a potential candidate for colitis treatment.

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