Mirabegron induces selective changes in the faecal microbiota of HFHFr rats without altering bile acid composition

Roger Bentanachs1,2, Lluïsa Miró3,4, Patricia Ramírez-Carrasco1

  • 1Department of Pharmacology, Toxicology and Therapeutic Chemistry, School of Pharmacy and Food Science, University of Barcelona, Barcelona, Spain.

PubMed
Abstract

Insights

Mirabegron, used for overactive bladder, alters gut microbiota and increases fat-burning proteins in a rat model of fatty liver disease. However, it did not reduce liver fat content.

Area of Science:

  • Metabolic dysfunction-associated steatotic liver (MASL) research
  • Drug repurposing for liver diseases
  • Gut microbiome and host metabolism

Background:

  • Metabolic dysfunction-associated steatotic liver (MASL) is the early stage of fatty liver disease, progressing to steatohepatitis.
  • Current MASL treatments are limited to lifestyle and diet modifications.
  • Drug repurposing offers a strategy to find safe and effective MASL treatments.

Purpose of the Study:

  • To evaluate the anti-steatotic potential of mirabegron, a repurposed drug, in a rat model of simple hepatic steatosis.
  • To investigate mirabegron's effects on liver, adipose tissue, and gut microbiome.
  • To assess changes in gene expression, protein levels, and fecal metabolomics.

Main Methods:

  • Utilized a high-fat, high-fructose diet-induced rat model of hepatic steatosis.
  • Analyzed liver, adipose tissue, serum, and fecal samples from a previous study.
  • Performed biochemical assays, fecal metabolomics, and microbiome analysis.

Main Results:

  • Mirabegron increased uncoupling protein 1 in brown adipose tissue and beta3-Adrenergic receptor protein in white adipose and liver tissues.
  • Mirabegron altered the composition of rat fecal microbiota, affecting specific genera and families.
  • Changes in gut microbiota composition were likely a direct drug effect, not mediated by bile acid alterations.

Conclusions:

  • Mirabegron influences host-adiposetissue metabolism and gut microbiome composition in a rat model of fatty liver.
  • Despite metabolic and microbiome changes, mirabegron did not reduce liver triglyceride content in this model.
  • Further research is needed to explore mirabegron's therapeutic potential for MASL.

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