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May 4, 20263 citations

The gut microbiome-bile acid-FXR interplay: a pivotal axis in metabolic and gastrointestinal diseases.

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JSJiawen ShouTFTing Fu

Key Points

  • This review aims to elucidate the interactions between gut microbiota, bile acids, and FXR signaling in the context of metabolic and gastrointestinal diseases.
  • Systematic exploration of the molecular mechanisms involved in bile acid-microbiota interactions.
  • Focus on the role of FXR signaling pathways and their impact on metabolic processes.
  • Comprehensive analysis of the literature concerning gut microbiota and bile acids.
  • Bile acids modify various host signaling pathways via FXR and TGR5 receptors.
  • Interactions between microbiota and bile acids contribute to metabolic, gastrointestinal, and immune-related diseases.
  • Understanding this interplay may provide insights for therapeutic strategies in related diseases.

Abstract

The gut microbiota is increasingly recognized as an essential metabolic "organ", involved not only in nutrient extraction and energy metabolism but also in generating diverse bioactive metabolites. Among these metabolites, bile acids (BAs) - initially synthesized in the liver - are substantially modified by bacterial enzymes in the gut, enabling them to engage various host signaling pathways. Notably, these BAs interact with critical host receptors, such as nuclear farnesoid X receptor (FXR) and G protein-coupled BA receptor 1 (TGR5), influencing numerous metabolic processes. Given the complexity and significance of BAs signaling between microbiota-host interactions, a comprehensive review of this interplay is essential. Here, we systematically explore the molecular mechanisms underlying the BA-microbiota axis, emphasizing its role in metabolic, gastrointestinal, and immune-related diseases, with a focus on the roles of FXR signaling pathways.

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Cite This Study

Shou et al. (2026) studied this question.

synapsesocial.com/papers/69f836aa3ed186a739980f22https://doi.org/10.1080/19490976.2026.2665890
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