Published Researchs

Research TitleMAG. TITLERESEARCH AREAPUBLISH YEARDOIJournal URL
Increasing skeletal muscle fatty acid transport protein 1 (FATP1) targets fatty acids to oxidation and does not predispose mice to diet-induced insulin resistanceDiabetologiaMedical Sciences-Endocrinology2011  Visit URL
Increasing skeletal muscle fatty acid transport protein 1 (FATP1) targets fatty acids to oxidation and does not predispose mice to diet-induced insulin resistanceDiabetologiaMedical Sciences-Endocrinology2011  Visit URL
Skeletal muscle fatty acid oxidation is not directly associated with AMPK or ACC2 phosphorylationApplied Physiology, Nutrition and MetabolismMedical Sciences-Sport Medicine2011  Visit URL
Skeletal muscle fatty acid oxidation is not directly associated with AMPK or ACC2 phosphorylationApplied Physiology, Nutrition and MetabolismMedical Sciences-Sport Medicine2011  Visit URL
Thujone, a component of medicinal herbs, rescues palmitate-induced insulin resistance in skeletal muscleAmerican Journal of Physiology: Regulatory, Integrative and Comparative PhysiologyBiology-Physiology2010  Visit URL
Thujone, a component of medicinal herbs, rescues palmitate-induced insulin resistance in skeletal muscle.American Journal of Physiology: Regulatory, Integrative and Comparative PhysiologyBiology-Physiology2010  Visit URL
Greater Transport Efficiencies of the Membrane Fatty Acid Transporters FAT/CD36 and FATP4 Compared with FABPpm and FATP1 and Differential Effects on Fatty Acid Esterification and Oxidation in Rat SkelJournal of Biological ChemistryBiology-Biochemistry2009  Visit URL
Greater Transport Efficiencies of the Membrane Fatty Acid Transporters FAT/CD36 and FATP4 Compared with FABPpm and FATP1 and Differential Effects on Fatty Acid Esterification and Oxidation in Rat Skeletal MuscleJournal of Biological ChemistryBiology-Biochemistry2009  Visit URL
Restoring AS160 phosphorylation rescues skeletal muscle insulin resistance and fatty acid oxidation while not reducing intramuscular lipidsAmerican Journal of Physiology: Endocrinology and MetabolismMedical Sciences-Endocrinology2009  Visit URL
Restoring AS160 phosphorylation rescues skeletal muscle insulin resistance and fatty acid oxidation while not reducing intramuscular lipidsAmerican Journal of Physiology: Endocrinology and MetabolismBiology-Physiology2009  Visit URL
Fatty acid binding protein facilitates sarcolemmal fatty acid transport but not mitochondrial oxidation in rat and human skeletal muscleThe Journal of PhysiologyBiology-Physiology2007  Visit URL
Fatty acid binding protein facilitates sarcolemmal fatty acid transport but not mitochondrial oxidation in rat and human skeletal muscleThe Journal of PhysiologyBiology-Physiology2007  Visit URL