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March 21, 2026Gut Microbes4 citationsOpen Access

A bile acid–GPBAR1 network supports anti-inflammatory and anti-fibrotic benefits of probiotics in colitis

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MBMichele BiagioliCGCristina Di GiorgioSMSilvia Marchianò

Key Points

  • The central aim is to evaluate the anti-inflammatory and anti-fibrotic effects of a 9-strains probiotic formulation compared to an 8-strains formulation in colitis.
  • Compared two probiotic formulations in a mouse model of intestinal inflammation and fibrosis.
  • Characterized microbiota composition and secondary bile acids following treatment.
  • Utilized Gpbar1 knockout mice to confirm the role of the GPBAR1 pathway.
  • Both probiotic formulations protected against acute colitis.
  • Only the 9-strains formulation reduced inflammation and fibrosis in chronic colitis.
  • The 9-strains probiotic remodeled microbiota composition and enriched GPBAR1 agonist bile acids.
  • Feeding Gpbar1⁻/⁻ mice the 9-strains formulation eliminated observed benefits.

Abstract

Intestinal fibrosis is a severe complication of Crohn's disease for which therapy remains suboptimal. Probiotics are widely used in the treatment of intestinal inflammation, but all major guidelines do not recommend in favor of their use, with the exception of an 8-strains bacterial formula, which is recommended for the treatment of pouch inflammation in ulcerative colitis. Using this 8-strains formulation as a comparator, we characterized a 9-strains probiotic formulation enriched with Lactobacillus rhamnosus and paracasei in a mouse model of intestinal inflammation and fibrosis. Our findings demonstrated that while both formulations exerted similar protective effects in acute colitis, only the 9-strains probiotic attenuates inflammation and fibrosis in chronic colitis. Mechanistically, we found that the 9-strains formulation remodeled the microbiota composition and the structure of microbiota-derived secondary bile acids, leading to the selective enrichment of those bile acids that act as GPBAR1 agonists, including 3-oxo-DCA, which in vitro directly attenuates activation of intestinal fibroblasts. Confirming the role of this pathway, feeding Gpbar1⁻/⁻ mice with 9-strains probiotic formulation abrogates its beneficial effects on inflammation and fibrosis. These findings highlight the importance of microbial metabolites in shaping probiotic efficacy and support the development of probiotic formulations that target host-microbiota interactions through bile acid signaling.

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Cite This Study

Biagioli et al. (2026) studied this question.

synapsesocial.com/papers/69be37626e48c4981c676fd5https://doi.org/10.1080/19490976.2026.2645125
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