Aims: To investigate whether improved in vivo mitochondrial function in skeletal muscle and intramyocellular lipids (IMCL) contribute to the insulin-sensitizing effect of rosiglitazone. Methods: Eight overweight type 2 diabetic patients (BMI= 29.3 +/- 1.1 kg/m(2)) were treated with rosiglitazone for 8 weeks. Before and after treatment, insulin sensitivity was determined by a hyperinsulinaemic-euglycaemic clamp. Muscular mitochondrial function (half-time of phosphocreatine recovery after exercise) and IMCL content were measured by magnetic resonance spectroscopy. Results: Insulin sensitivity improved after rosiglitazone (GIR: 19.9+/-2.8 to 24.8+/-2.1 micromol/kg/min (P<0.05)). In vivo mitochondrial function (PCr recovery half-time: 23.8+/-3....
Objective: To investigate the effects of rosiglitazone (RSG) on insulin sensitivity and regional adi...
Objective: Several lines of evidence support a potential role of skeletal muscle mitochondrial dysfu...
AbstractObjective: To examine the effects of rosiglitazone in intramyocellular lipid (IMCL) content ...
Aims: To investigate whether improved in vivo mitochondrial function in skeletal muscle and intramyo...
Objective: To examine whether rosiglitazone alters gene expression of some key genes involved in mit...
Objective: To examine whether rosiglitazone alters gene expression of some key genes involved in mit...
Objective:To examine whether rosiglitazone alters gene expression of some key genes involved in mito...
AIMS: We examined the effect of rosiglitazone on insulin sensitivity, abdominal fat and mid-thigh in...
Rosiglitazone improves muscle insulin sensitivity, irrespective of increased triglyceride content, i...
OBJECTIVE-Mitochondrial dysfunction and fat accumulation in skeletal muscle (increased intramyocellu...
Context: The mitochondrial uncoupling protein-3 (UCP3) has been implicated in the protection of the ...
Context: The mitochondrial uncoupling protein-3 (UCP3) has been implicated in the protection of the ...
Objective: To investigate the effects of rosiglitazone (RSG) on insulin sensitivity and regional adi...
Objective: Several lines of evidence support a potential role of skeletal muscle mitochondrial dysfu...
AbstractObjective: To examine the effects of rosiglitazone in intramyocellular lipid (IMCL) content ...
Aims: To investigate whether improved in vivo mitochondrial function in skeletal muscle and intramyo...
Objective: To examine whether rosiglitazone alters gene expression of some key genes involved in mit...
Objective: To examine whether rosiglitazone alters gene expression of some key genes involved in mit...
Objective:To examine whether rosiglitazone alters gene expression of some key genes involved in mito...
AIMS: We examined the effect of rosiglitazone on insulin sensitivity, abdominal fat and mid-thigh in...
Rosiglitazone improves muscle insulin sensitivity, irrespective of increased triglyceride content, i...
OBJECTIVE-Mitochondrial dysfunction and fat accumulation in skeletal muscle (increased intramyocellu...
Context: The mitochondrial uncoupling protein-3 (UCP3) has been implicated in the protection of the ...
Context: The mitochondrial uncoupling protein-3 (UCP3) has been implicated in the protection of the ...
Objective: To investigate the effects of rosiglitazone (RSG) on insulin sensitivity and regional adi...
Objective: Several lines of evidence support a potential role of skeletal muscle mitochondrial dysfu...
AbstractObjective: To examine the effects of rosiglitazone in intramyocellular lipid (IMCL) content ...