AbstractObjective: To examine the effects of rosiglitazone in intramyocellular lipid (IMCL) content in diabetic Psammomys obesus using novel electron microscopy technologies. Background: P. obesus is an unique polygenic model of obesity and type 2 diabetes. Male diabetic P. obesus were treated daily with 5 mg/Kg Rosiglitazone by oral gavage for 14 days. Data were compared with a group of age-matched diabetic P. obesus treated with saline vehicle. Methods: Assessment of insulin resistance and adiposity were determine before and after the treatment period by oral glucose tolerance test (oGTT) and dual energy X-ray absorptiometry (DEXA) analysis. We used a new scanning electron microscopy technology, (WETSEM) to investigate the effects of rosi...
AIMS/HYPOTHESIS: We investigated the effects of rosiglitazone on NEFA and triglyceride metabolism in...
Adipose tissue plays a central role in the control of energy homeostasis through the storage and tur...
Rosiglitazone (RSG), developed for the treatment of type 2 diabetes mellitus, is known to have poten...
AbstractObjective: To examine the effects of rosiglitazone in intramyocellular lipid (IMCL) content ...
Objective: To examine the effects of rosiglitazone in intramyocellular lipid (IMCL) content in diabe...
Rosiglitazone improves muscle insulin sensitivity, irrespective of increased triglyceride content, i...
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 mito...
We hypothesized that improved glucose tolerance with rosiglitazone treatment would coincide with dec...
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...
AIMS: We examined the effect of rosiglitazone on insulin sensitivity, abdominal fat and mid-thigh in...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Background Insulin resistance is...
AIMS/HYPOTHESIS: We investigated the effects of rosiglitazone on NEFA and triglyceride metabolism in...
Adipose tissue plays a central role in the control of energy homeostasis through the storage and tur...
Rosiglitazone (RSG), developed for the treatment of type 2 diabetes mellitus, is known to have poten...
AbstractObjective: To examine the effects of rosiglitazone in intramyocellular lipid (IMCL) content ...
Objective: To examine the effects of rosiglitazone in intramyocellular lipid (IMCL) content in diabe...
Rosiglitazone improves muscle insulin sensitivity, irrespective of increased triglyceride content, i...
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 mito...
We hypothesized that improved glucose tolerance with rosiglitazone treatment would coincide with dec...
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...
AIMS: We examined the effect of rosiglitazone on insulin sensitivity, abdominal fat and mid-thigh in...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Background Insulin resistance is...
AIMS/HYPOTHESIS: We investigated the effects of rosiglitazone on NEFA and triglyceride metabolism in...
Adipose tissue plays a central role in the control of energy homeostasis through the storage and tur...
Rosiglitazone (RSG), developed for the treatment of type 2 diabetes mellitus, is known to have poten...