Metformin maintains intrahepatic triglyceride content through increased hepatic de novo lipogenesis

Author:

Green Charlotte J1,Marjot Thomas12,Walsby-Tickle John3,Charlton Catriona1,Cornfield Thomas1,Westcott Felix1ORCID,Pinnick Katherine E1,Moolla Ahmad1,Hazlehurst Jonathan M14,McCullagh James3,Tomlinson Jeremy W15,Hodson Leanne15

Affiliation:

1. 1Oxford Centre for Diabetes, Endocrinology and Metabolism, University of Oxford, Churchill Hospital, Oxford, UK

2. 2Translational Gastroenterology Unit, NIHR Oxford Biomedical Research Centre, University of Oxford, John Radcliffe Hospital, Oxford, UK

3. 3Chemistry Research Laboratory, University of Oxford, Oxford, UK

4. 4Institute of Metabolism and Systems Research, University of Birmingham, Edgbaston, Birmingham, UK

5. 5NIHR Oxford Biomedical Research Centre, Oxford University Hospital Trusts, Oxford, UK

Abstract

Objective Metformin is a first-line pharmacotherapy in the treatment of type 2 diabetes, a condition closely associated with non-alcoholic fatty liver disease (NAFLD). Although metformin promotes weight loss and improves insulin sensitivity, its effect on intrahepatic triglyceride (IHTG) remains unclear. We investigated the effect of metformin on IHTG, hepatic de novo lipogenesis (DNL), and fatty acid (FA) oxidation in vivo in humans. Design and methods Metabolic investigations, using stable-isotope tracers, were performed in ten insulin-resistant, overweight/obese human participants with NAFLD who were treatment naïve before and after 12 weeks of metformin treatment. The effect of metformin on markers of s.c. adipose tissue FA metabolism and function, along with the plasma metabolome, was investigated. Results Twelve weeks of treatment with metformin resulted in a significant reduction in body weight and improved insulin sensitivity, but IHTG content and FA oxidation remained unchanged. Metformin treatment was associated with a significant decrease in VLDL-triglyceride (TG) concentrations and a significant increase in the relative contribution of DNL-derived FAs to VLDL-TG. There were subtle and relatively few changes in s.c. adipose tissue FA metabolism and the plasma metabolome with metformin treatment. Conclusions We demonstrate the mechanisms of action of metformin whereby it improves insulin sensitivity and promotes weight loss, without improvement in IHTG; these observations are partly explained through increased hepatic DNL and a lack of change in FA oxidation.

Publisher

Oxford University Press (OUP)

Subject

Endocrinology,General Medicine,Endocrinology, Diabetes and Metabolism

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