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Updated: May 26, 2026

Combining Human Organoids and Organ-on-a-Chip Technology to Model Intestinal Region-Specific Functionality
Published on: May 5, 2022
Secondary bile acid lithocholic acid ameliorates colitis-like inflammation in a human intestine-on-chip system
Tim Kaden1,2, Manuel Allwang2,3, Johannes Stallhofer4
1Dynamic42 GmbH, Jena, Germany.
Abstract:
Inflammatory bowel disease is a multifactorial disease of the gastrointestinal tract without curative treatment. Previous studies highlighted that altered fecal bile acid levels correlate with intestinal microbiota composition changes and inflammation in inflammatory bowel disease. Lithocholic acid is a secondary bile acid drastically reduced during active inflammatory bowel disease but mediates beneficial effects at the mucosal intestinal barrier during intestinal homeostasis. In a dextran sodium sulfate-induced colitis-on-chip model, it was investigated whether the administration of lithocholic acid has a protective impact on inflammation-mediated tissue damage. Physiological responses were successfully recapitulated in the human colitis model, enabling the dissection of individual cell responses. Treatment with lithocholic acid concentrations similar to healthy human intestinal levels efficiently ameliorated the colitis-like phenotype. Lithocholic acid treatment stimulated epithelial cell proliferation, thereby maintaining villus morphology, intestinal barrier integrity, and reducing inflammation. The protective effects of lithocholic acid were mainly mediated by the activation of the farnesoid X receptor.
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