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Beneficial effects of MGL-3196 and BAM15 combination in a mouse model of fatty liver disease

Study · animal · Acta physiologica (Oxford, England) · 2024 · DOI 10.1111/apha.14217 · PMID 39152636

Plain-language summary

Paraphrased from the published abstract below — not a verdict on whether anything works.

In this mouse study (C57BL/6J male mice fed a GAN diet for 38 weeks, modeling metabolic dysfunction-associated steatohepatitis, MASH), the authors tested combination treatment with the thyroid hormone receptor-β agonist resmetirom/MGL-3196 (MGL) and the mitochondrial uncoupler BAM15 for 8 weeks. The abstract notes over 60% of patients receiving MGL do not achieve MASH resolution. MGL + BAM15 combination treatment showed greater changes than either drug alone in energy expenditure, liver fat loss, glucose control, and fatty liver disease activity score versus GAN control mice. Improvements in ALT, liver mass, and plasma cholesterol were mainly associated with MGL, while improvements in body fat were mainly associated with BAM15; no treatment altered liver fibrosis.

Abstract

Metabolic dysfunction-associated steatohepatitis (MASH) is a metabolic disorder with limited treatment options. The thyroid hormone receptor (THR)-β agonist resmetirom/MGL-3196 (MGL) increases liver fat oxidation and has been approved for treating adult MASH. However, over 60% of patients receiving MGL treatment do not achieve MASH resolution. Therefore, we investigated the potential for combination therapy of MGL with the mitochondrial uncoupler BAM15 to improve fatty liver disease outcomes in the GAN mouse model of MASH. C57BL/6J male mice were fed GAN diet for 38 weeks before stratification and randomization to treatments including MGL, BAM15, MGL + BAM15, or no drug control for 8 weeks. Treatments were admixed in diet and mice were pair-fed to control for drug intake. Treatment effectiveness was assessed by body weight, body composition, energy expenditure, glucose tolerance, tissue lipid content, and histological analyses. MGL + BAM15 treatment resulted in better efficacy versus GAN control mice than either monotherapy in the context of energy expenditure, liver fat loss, glucose control, and fatty liver disease activity score. Improvements in ALT, liver mass, and plasma cholesterol were primarily driven by MGL, while improvements in body fat were primarily driven by BAM15. No treatments altered liver fibrosis. MGL + BAM15 treatment had overall better efficacy to improve metabolic outcomes in mice fed GAN diet than either monotherapy alone. These data warrant further investigation into combination therapies of THR-β agonists and mitochondrial uncouplers for the potential treatment of disorders related to fatty liver, obesity, and insulin resistance.

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