Caffeine ingestion does not alter carbohydrate or fat metabolism in human skeletal muscle during exercise
Open Access
- 1 December 2000
- journal article
- Published by Wiley in The Journal of Physiology
- Vol. 529 (3) , 837-847
- https://doi.org/10.1111/j.1469-7793.2000.00837.x
Abstract
1 This study examined the effect of ingesting caffeine (6 mg kg−1) on muscle carbohydrate and fat metabolism during steady-state exercise in humans. Young male subjects (n= 10) performed 1 h of exercise (70 % maximal oxygen consumption (V̇O2,max)) on two occasions (after ingestion of placebo and caffeine) and leg metabolism was quantified by the combination of direct Fick measures and muscle biopsies. 2 Following caffeine ingestion serum fatty acid and glycerol concentration increased (P≤ 0.05) at rest, suggesting enhanced adipose tissue lipolysis. 3 In addition circulating adrenaline concentration was increased (P≤ 0.05) at rest following caffeine ingestion and this, as well as leg noradrenaline spillover, was elevated (P≤ 0.05) above placebo values during exercise. 4 Caffeine resulted in a modest increase (P≤ 0.05) in leg vascular resistance, but no difference was found in leg blood flow. 5 Arterial lactate and glucose concentrations were increased (P≤ 0.05) by caffeine, while the rise in plasma potassium was dampened (P≤ 0.05). 6 There were no differences in respiratory exchange ratio or in leg glucose uptake, net muscle glycogenolysis, leg lactate release or muscle lactate, or glucose 6-phosphate concentration. Similarly there were no differences between treatments in leg fatty acid uptake, glycerol release or muscle acetyl CoA concentration. 7 These findings indicate that caffeine ingestion stimulated the sympathetic nervous system but did not alter the carbohydrate or fat metabolism in the monitored leg. Other tissues must have been involved in the changes in circulating potassium, fatty acids, glucose and lactate.Keywords
This publication has 45 references indexed in Scilit:
- Role of adenosine in regulating glucose uptake during contractions and hypoxia in rat skeletal muscleThe Journal of Physiology, 1999
- Stimulation of Na+, K+‐pump activity in skeletal muscle by methylxanthines: evidence and proposed mechanismsActa Physiologica Scandinavica, 1996
- Caffeine Ingestion and Performance of a 1,500-Metre SwimCanadian Journal of Applied Physiology, 1995
- Adenosine receptors mediate synergistic stimulation of glucose uptake and transport by insulin and by contractions in rat skeletal muscle.Journal of Clinical Investigation, 1994
- Alterations in G-protein expression, Gi function and stimulatory receptor-mediated regulation of adipocyte adenylyl cyclase in a model of insulin-resistant diabetes with obesityCellular Signalling, 1992
- Effect of arm‐cranking on leg blood flow and noradrenaline spillover during leg exercise in manActa Physiologica Scandinavica, 1992
- Noradrenaline spillover during exercise in active versus resting skeletal muscle in manActa Physiologica Scandinavica, 1987
- Tolerance to the humoral and hemodynamic effects of caffeine in man.Journal of Clinical Investigation, 1981
- Effects of Caffeine Ingestion on Utilization of Muscle Glycogen and Lipid During Leg Ergometer CyclingInternational Journal of Sports Medicine, 1980
- Glycogen, Glycolytic Intermediates and High-Energy Phosphates Determined in Biopsy Samples of Musculus Quadriceps Femoris of Man at Rest. Methods and Variance of ValuesScandinavian Journal of Clinical and Laboratory Investigation, 1974