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Potential of Intestine-Selective FXR Modulation for Treatment of Metabolic Disease
Tim van Zutphen1,2, Anna Bertolini1, Hilde D de Vries1,2
1Department of Pediatrics, University Medical Center Groningen, Faculty Campus Fryslân, University of Groningen, Groningen, The Netherlands.
Abstract:
Farnesoid X receptor controls bile acid metabolism, both in the liver and intestine. This potent nuclear receptor not only maintains homeostasis of its own ligands, i.e., bile acids, but also regulates glucose and lipid metabolism as well as the immune system. These findings have led to substantial interest for FXR as a therapeutic target and to the recent approval of an FXR agonist for treating primary biliary cholangitis as well as ongoing clinical trials for other liver diseases. Given that FXR biology is complex, including moderate expression in tissues outside of the enterohepatic circulation, temporal expression of isoforms, posttranscriptional modifications, and the existence of several other bile acid-responsive receptors such as TGR5, clinical application of FXR modulators warrants thorough understanding of its actions. Recent findings have demonstrated remarkable physiological effects of targeting FXR specifically in the intestine (iFXR), thereby avoiding systemic release of modulators. These include local effects such as improvement of intestinal barrier function and intestinal cholesterol turnover, as well as systemic effects such as improvements in glucose homeostasis, insulin sensitivity, and nonalcoholic fatty liver disease (NAFLD). Intriguingly, metabolic improvements have been observed with both an iFXR agonist that leads to production of enteric Fgf15 and increased energy expenditure in adipose tissues and antagonists by reducing systemic ceramide levels and hepatic glucose production. Here we review the recent findings on the role of intestinal FXR and its targeting in metabolic disease.
Insights
Targeting the Farnesoid X receptor (FXR) in the intestine improves metabolic health, impacting glucose and lipid levels. Intestinal FXR modulation offers therapeutic potential for metabolic diseases like nonalcoholic fatty liver disease (NAFLD).
Area of Science:
- Endocrinology
- Metabolic Diseases
- Hepatology
Background:
- Farnesoid X receptor (FXR) is a nuclear receptor regulating bile acid metabolism, glucose, lipid, and immune systems.
- FXR's complex biology and role in enterohepatic circulation necessitate a deeper understanding for therapeutic applications.
- Intestinal FXR (iFXR) targeting shows promise for metabolic disorders, avoiding systemic side effects.
Purpose of the Study:
- To review recent findings on the role of intestinal FXR in metabolic disease.
- To explore the therapeutic potential of targeting intestinal FXR.
- To highlight the systemic and local effects of intestinal FXR modulation.
Main Methods:
- Review of recent scientific literature on intestinal FXR.
- Analysis of studies investigating FXR agonists and antagonists in metabolic contexts.
- Examination of physiological effects of targeting intestinal FXR.
Main Results:
- Intestinal FXR modulation improves intestinal barrier function and cholesterol turnover.
- Systemic effects include enhanced glucose homeostasis, insulin sensitivity, and NAFLD improvement.
- Both iFXR agonists (via Fgf15) and antagonists (reducing ceramides) demonstrate metabolic benefits.
Conclusions:
- Targeting intestinal FXR is a promising strategy for treating metabolic diseases.
- Intestinal FXR modulation offers localized and systemic benefits, including improved metabolic parameters.
- Further research into FXR's complex mechanisms can unlock new therapeutic avenues for metabolic disorders.
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