Disturbances in skeletal muscle lipid metabolism may play an important role in development of insulin resistance (IR). The aim was to investigate transcriptional control of skeletal muscle fatty acid (FA) metabolism in individuals with the metabolic syndrome (MetS) with varying degrees of insulin sensitivity (S(I)). 122 individuals with MetS (NCEP-ATP III criteria) at age 35-70 years, BMI 27-38 kg/m(2) were studied (subgroup EU-LIPGENE study). Individuals were divided into quartiles of S(I) measured during a frequently sampled insulin modified intravenous glucose tolerance test. Skeletal muscle normalized mRNA expression levels of genes important in skeletal muscle FA handling were analyzed with quantitative real-time PCR. The expression of...
Altered skeletal muscle fatty acid (FA) metabolism contributes to insulin resistance. Here, we compa...
Insulin resistance is characterized by disturbances in lipid metabolism in skeletal muscle. Our aim ...
The prevalence of obesity and insulin resistance has increased at an alarming rate in recent years. ...
Disturbances in skeletal muscle lipid metabolism may play an important role in development of insuli...
Disturbances in skeletal muscle lipid metabolism may precede or contribute to the development of who...
Peroxisome proliferator-activated receptor-? (PPAR?) is a key regulator of fatty acid oxidation in s...
BACKGROUND: Insulin resistance (IR) in skeletal muscle is a key feature of the pre-diabetic state, h...
Insulin resistance in skeletal muscle is an early phenomenon in the pathogenesis of type 2 diabetes....
Disturbances in skeletal muscle fatty acid (FA) handling may contribute to the development and progr...
The metabolic syndrome (MetS) is a cluster of risk factors (such as high blood pressure, a disturbed...
One fundamental underlying risk factor for the development of non-insulin dependent (type 2) diabete...
AIMS/HYPOTHESIS: Peroxisome proliferator-activated receptor (PPAR)-gamma coactivator-1 (PPARGC1), a ...
Aims/hypothesis Peroxisome proliferator-activated receptor (PPAR)-γ coactivator-1 (PPARGC1), a...
Aims/hypothesis: Peroxisome proliferator-activated receptor (PPAR)-γ coactivator-1 (PPARGC1), a coac...
Altered skeletal muscle fatty acid (FA) metabolism contributes to insulin resistance. Here, we compa...
Insulin resistance is characterized by disturbances in lipid metabolism in skeletal muscle. Our aim ...
The prevalence of obesity and insulin resistance has increased at an alarming rate in recent years. ...
Disturbances in skeletal muscle lipid metabolism may play an important role in development of insuli...
Disturbances in skeletal muscle lipid metabolism may precede or contribute to the development of who...
Peroxisome proliferator-activated receptor-? (PPAR?) is a key regulator of fatty acid oxidation in s...
BACKGROUND: Insulin resistance (IR) in skeletal muscle is a key feature of the pre-diabetic state, h...
Insulin resistance in skeletal muscle is an early phenomenon in the pathogenesis of type 2 diabetes....
Disturbances in skeletal muscle fatty acid (FA) handling may contribute to the development and progr...
The metabolic syndrome (MetS) is a cluster of risk factors (such as high blood pressure, a disturbed...
One fundamental underlying risk factor for the development of non-insulin dependent (type 2) diabete...
AIMS/HYPOTHESIS: Peroxisome proliferator-activated receptor (PPAR)-gamma coactivator-1 (PPARGC1), a ...
Aims/hypothesis Peroxisome proliferator-activated receptor (PPAR)-γ coactivator-1 (PPARGC1), a...
Aims/hypothesis: Peroxisome proliferator-activated receptor (PPAR)-γ coactivator-1 (PPARGC1), a coac...
Altered skeletal muscle fatty acid (FA) metabolism contributes to insulin resistance. Here, we compa...
Insulin resistance is characterized by disturbances in lipid metabolism in skeletal muscle. Our aim ...
The prevalence of obesity and insulin resistance has increased at an alarming rate in recent years. ...