Inhibition of sarcolemmal FAT/CD36 by sulfo-N-succinimidyl oleate rapidly corrects metabolism and restores function in the diabetic heart following hypoxia/reoxygenation
Cardiovascular Research

Abstract
The type 2 diabetic heart oxidizes more fat and less glucose, which can impair metabolic flexibility and function. Increased sarcolemmal fatty acid translocase (FAT/CD36) imports more fatty acid into the diabetic myocardium, feeding increased fatty acid oxidation and elevated lipid deposition. Unlike other metabolic modulators that target mitochondrial fatty acid oxidation, we proposed that pharmacologically inhibiting fatty acid uptake, as the primary step in the pathway, would provide an alternative mechanism to rebalance metabolism and prevent lipid accumulation following hypoxic stress.
Hearts from type 2 diabetic and control male Wistar rats were perfused in normoxia, hypoxia and reoxygenation, with the FAT/CD36 inhibitor sulfo-
Diabetic hearts have limited metabolic flexibility and cardiac dysfunction when stressed, which can be rapidly rectified by reducing fatty acid uptake with the FAT/CD36 inhibitor, SSO. This novel therapeutic approach not only reduces fat oxidation but also lipotoxicity, by targeting the primary step in the fatty acid metabolism pathway.
Contributors

Latt S. Mansor
Author

Maria da Luz Sousa Fialho
Author

Georgina Yea
Author

Will A. Coumans
Author

James A. West
Author

Matthew Kerr
Author

Carolyn A. Carr
Author

Joost J.F.P. Luiken
Author

Jan F.C. Glatz
Author

Rhys D. Evans
Author

Julian L. Griffin
Author

Damian J. Tyler
Author

Kieran Clarke
Author

Lisa C. Heather
Author
University of Oxford Oxford , United Kingdom of Great Britain & Northern Ireland


