Reduced Lipid Oxidation in Skeletal Muscle From Type 2 Diabetic Subjects May Be of Genetic Origin
- 1 March 2004
- journal article
- research article
- Published by American Diabetes Association in Diabetes
- Vol. 53 (3) , 542-548
- https://doi.org/10.2337/diabetes.53.3.542
Abstract
Insulin resistance in skeletal muscle in vivo is associated with reduced lipid oxidation and lipid accumulation. It is still uncertain whether changes in lipid metabolism represent an adaptive compensation at the cellular level or a direct expression of a genetic trait. Studies of palmitate metabolism in human myotubes established from control and type 2 diabetic subjects may solve this problem, as genetic defects are preserved and expressed in vitro. In this study, total uptake of palmitic acid was similar in myotubes established from both control and type 2 diabetic subjects under basal conditions and acute insulin stimulation. Myotubes established from diabetic subjects expressed a primary reduced palmitic acid oxidation to carbon dioxide with a concomitantly increased esterification of palmitic acid into phospholipids compared with control myotubes under basal conditions. Triacylglycerol (TAG) content and the incorporation of palmitic acid into diacylglycerol (DAG) and TAG at basal conditions did not vary between the groups. Acute insulin treatment significantly increased palmitate uptake and incorporation of palmitic acid into DAG and TAG in myotubes established from both study groups, but no difference was found in myotubes established from control and diabetic subjects. These results indicate that the reduced lipid oxidation in diabetic skeletal muscle in vivo may be of genetic origin; it also appears that TAG metabolism is not primarily affected in diabetic muscles under basal physiological conditions.Keywords
This publication has 40 references indexed in Scilit:
- Glycogen synthase activity is reduced in cultured skeletal muscle cells of non-insulin-dependent diabetes mellitus subjects. Biochemical and molecular mechanisms.Journal of Clinical Investigation, 1996
- Insulin action and glucose metabolism in nondiabetic control and NIDDM subjects. Comparison using human skeletal muscle cell culturesDiabetes, 1995
- Skeletal muscle utilization of free fatty acids in women with visceral obesity.Journal of Clinical Investigation, 1995
- Impaired free fatty acid utilization by skeletal muscle in non-insulin-dependent diabetes mellitus.Journal of Clinical Investigation, 1994
- Metabolic and genetic characterization of prediabetic states. Sequence of events leading to non-insulin-dependent diabetes mellitus.Journal of Clinical Investigation, 1994
- The Relation between Insulin Sensitivity and the Fatty-Acid Composition of Skeletal-Muscle PhospholipidsNew England Journal of Medicine, 1993
- Fish Oil Prevents Insulin Resistance Induced by High-Fat Feeding in RatsScience, 1987
- Correlation between muscle glycogen synthase activity and in vivo insulin action in man.Journal of Clinical Investigation, 1984
- A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye bindingAnalytical Biochemistry, 1976
- Muscle Carnitine Palmityltransferase Deficiency and MyoglobinuriaScience, 1973