Skeletal muscle utilization of free fatty acids in women with visceral obesity.
Open Access
- 1 April 1995
- journal article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 95 (4), 1846-1853
- https://doi.org/10.1172/jci117864
Abstract
Visceral obesity is strongly associated with insulin resistance. One potential cause is increased availability of FFA. Alternatively, it has been proposed that there is impaired oxidation of lipid in individuals at risk for obesity. The extent to which either concept involves skeletal muscle is uncertain. To examine these opposing hypotheses, 17 healthy lean and obese premenopausal women, among whom cross-sectional area of visceral fat ranged from 18 to 180 cm2, participated in leg balance studies for measurement of FFA and glucose utilization during basal and insulin-stimulated conditions. A metabolic profile of skeletal muscle, based on enzyme activity, was determined in vastus lateralis muscle obtained by percutaneous biopsy. Visceral fat content was negatively correlated with insulin sensitivity (rates of leg glucose uptake and storage), but insulin resistance was not caused by glucose-FFA competition. During hyperinsulinemia, neither leg FFA uptake nor oxidation was increased in women with visceral obesity. During fasting conditions, however, rates of FFA uptake across the leg were negatively correlated with visceral adiposity as were activities of muscle carnitine palmitoyl transferase and citrate synthase. In summary, visceral adiposity is clearly associated with skeletal muscle insulin resistance but this is not due to glucose-FFA substrate competition. Instead, women with visceral obesity have reduced postabsorptive FFA utilization by muscle.This publication has 41 references indexed in Scilit:
- INFLUENCE OF PARENTERAL CARBOHYDRATE ON FAT OXIDATION IN SURGICAL PATIENTS1984
- Relationship of body fat topography to insulin sensitivity and metabolic profiles in premenopausal womenMetabolism, 1984
- Calculation of substrate oxidation rates in vivo from gaseous exchangeJournal of Applied Physiology, 1983
- Palmitate oxidation in human muscle: Comparison to CPT and carnitineMuscle & Nerve, 1982
- Relation of Body Fat Distribution to Metabolic Complications of Obesity*Journal of Clinical Endocrinology & Metabolism, 1982
- SUCTION APPLIED TO A MUSCLE BIOPSY MAXIMIZES SAMPLE-SIZE1982
- Activities of enzymes of fat and ketone-body metabolism and effects of starvation on blood concentrations of glucose and fat fuels in teleost and elasmobranch fishBiochemical Journal, 1979
- Glucose clamp technique: a method for quantifying insulin secretion and resistance.American Journal of Physiology-Endocrinology and Metabolism, 1979
- Free fatty acid oxidation by forearm muscle at rest, and evidence for an intramuscular lipid pool in the human forearm.Journal of Clinical Investigation, 1976
- Metabolic Differentiation of Distinct Muscle Types at the Level of Enzymatic OrganizationEuropean Journal of Biochemistry, 1969