Metformin influences cardiomyocyte cell death by pathways that are dependent and independent of caspase-3

D. An, G. Kewalramani, J. K.Y. Chan, D. Qi, S. Ghosh, T. Pulinilkunnil, A. Abrahani, S. M. Innis, B. Rodrigues

Résultat de recherche: Articleexamen par les pairs

54 Citations (Scopus)

Résumé

Aims/hypothesis: Metformin has been shown to increase fatty acid oxidation, an effect mediated by AMP activated protein kinase (AMPK). We hypothesised that metformin could prevent both caspase-3 activation and apoptosis when induced by palmitic acid. Materials and methods: Cardiomyocytes were incubated with 1 mmol/l palmitic acid, in the absence or presence of metformin (1-5 mmol/l). Following 1 to 16 h, cell damage was evaluated by measuring lactate dehydrogenase released into the incubation medium, and Hoechst staining. To investigate the mechanism of metformin's effect on cardiomyocytes, substrate utilisation and phosphorylation of AMPK and acetyl-CoA carboxylase were measured. Intracellular mediators of apoptosis were also evaluated. Results: Incubation of myocytes with palmitic acid for 16 h increased apoptosis, an effect that was partly blunted by 1 and 2 mmol/l metformin. This beneficial effect of metformin was associated with increased AMPK phosphorylation, palmitic acid oxidation and suppression of high-fat-induced increases in (1) long chain base biosynthesis protein 1 levels, (2) ceramide levels, and (3) caspase-3 activity. Unexpectedly, 5 mmol/l metformin dramatically increased apoptosis in myocytes incubated with high fat. This effect was associated with a robust increase in glycolysis, lactate accumulation, and a significant drop of pH in the myocyte incubation medium. Conclusions/interpretation: Our study demonstrates that metformin reduces high-fat-induced cardiac cell death, probably through inhibition of ceramide synthesis. However, at high concentrations, metformin causes proton and lactate accumulation, leading to cell damage that is independent of caspase-3.

Langue d'origineEnglish
Pages (de-à)2174-2184
Nombre de pages11
JournalDiabetologia
Volume49
Numéro de publication9
DOI
Statut de publicationPublished - sept. 2006
Publié à l'externeOui

Note bibliographique

Funding Information:
Acknowledgements The studies described in this paper were supported by an operating grant from Heart and Stroke Foundation of British Columbia and Yukon. The financial support of the Health Research Foundation/Canadian Institutes of Health Research and the Heart and Stroke Foundation of Canada for Graduate Research Scholarships to T. Pulinilkunnil, S. Ghosh, and D. Qi is gratefully acknowledged. We thank D. Brindley, M. Allard and R. Wambolt for their invaluable technical support.

ASJC Scopus Subject Areas

  • Internal Medicine
  • Endocrinology, Diabetes and Metabolism

PubMed: MeSH publication types

  • Journal Article
  • Research Support, Non-U.S. Gov't

Empreinte numérique

Plonger dans les sujets de recherche 'Metformin influences cardiomyocyte cell death by pathways that are dependent and independent of caspase-3'. Ensemble, ils forment une empreinte numérique unique.

Citer