Muscle fatty acid (FA) metabolism is impaired in obesity and insulin resistance, reflected by reduced rates of FA oxidation and accumulation of lipids. It has been suggested that interventions that increase FA oxidation may enhance insulin action by reducing these lipid pools. Here, we examined the effect of endurance training on rates of mitochondrial FA oxidation, the activity of carnitine palmitoyltransferase I (CPT I), and the lipid content in muscle of obese individuals and related these to measures of glucose tolerance. Nine obese subjects completed 8 wk of moderate-intensity endurance training, and muscle biopsies were obtained before and after training. Training significantly improved glucose tolerance, with a reduction in the area ...
cellular lipid (IMCL) has been associated with insulin resistance. However, an association between I...
Fat accumulation in skeletal muscle combined with low mitochondrial oxidative capacity is associated...
A high turnover rate of intramyocellular lipids (IMCL) is proposed to reduce high-fat diet-induced a...
Fat accumulation in skeletal muscle combined with low mitochon-drial oxidative capacity is associate...
Fat-rich energy-dense diet is an important cause of insulin resistance. Stimulation of fat turnover ...
Obese individuals exhibit skeletal muscle metabolic inflexibility by failing to increase fat oxidati...
Skeletal muscle constitutes 40% of body mass and takes up 80% of a glucose load. Therefore, impaired...
Eight men were studied before and after an endurance training program to assess changes in the lipid...
Obesity-linked insulin resistance is mainly due to fatty acid overload in non-adipose tissues, parti...
Obese individuals exhibit skeletal muscle metabolic inflexibility by failing to increase fat oxidati...
ABSTRACTThe skeletal muscle in our body is a major site for bioenergetics and metabolism during exer...
The increased energy demand that occurs with incremental exercise intensity is met by increases in t...
The skeletal muscle in our body is a major site for bioenergetics and metabolism during exercise. Ca...
Individuals with insulin resistance are characterized by impaired insulin action on whole-body gluco...
International audienceRecent literature shows that exercise is not simply a way to generate a calori...
cellular lipid (IMCL) has been associated with insulin resistance. However, an association between I...
Fat accumulation in skeletal muscle combined with low mitochondrial oxidative capacity is associated...
A high turnover rate of intramyocellular lipids (IMCL) is proposed to reduce high-fat diet-induced a...
Fat accumulation in skeletal muscle combined with low mitochon-drial oxidative capacity is associate...
Fat-rich energy-dense diet is an important cause of insulin resistance. Stimulation of fat turnover ...
Obese individuals exhibit skeletal muscle metabolic inflexibility by failing to increase fat oxidati...
Skeletal muscle constitutes 40% of body mass and takes up 80% of a glucose load. Therefore, impaired...
Eight men were studied before and after an endurance training program to assess changes in the lipid...
Obesity-linked insulin resistance is mainly due to fatty acid overload in non-adipose tissues, parti...
Obese individuals exhibit skeletal muscle metabolic inflexibility by failing to increase fat oxidati...
ABSTRACTThe skeletal muscle in our body is a major site for bioenergetics and metabolism during exer...
The increased energy demand that occurs with incremental exercise intensity is met by increases in t...
The skeletal muscle in our body is a major site for bioenergetics and metabolism during exercise. Ca...
Individuals with insulin resistance are characterized by impaired insulin action on whole-body gluco...
International audienceRecent literature shows that exercise is not simply a way to generate a calori...
cellular lipid (IMCL) has been associated with insulin resistance. However, an association between I...
Fat accumulation in skeletal muscle combined with low mitochondrial oxidative capacity is associated...
A high turnover rate of intramyocellular lipids (IMCL) is proposed to reduce high-fat diet-induced a...