Soccer players display elevated inflammatory and oxidative stress markers combined with reduced soccer specific performance over a 72-hour period. However, in modern soccer, players participate very often in 2 or 3 matches within a week, with a recovery period of 72 hours between successive matches, that is insufficient to restore skeletal muscle homeostasis and performance. Of note, reduced glutathione (GSH) levels, a tripeptide consisting of the amino acids cysteine, glycine and glutamic acid, are substantially reduced during the 72-hour recovery period after a match because of the trauma-related acute inflammatory and oxidative stress response. GSH availability is a crucial regulator of cellular redox status, affecting numerous intracellular and physiological processes such as redox signalling, immunoregulation and muscle metabolism. Indeed, enhanced GSH availability following muscle damaging exercise has been shown to be beneficial for skeletal muscle and performance recovery by mitigating the inflammatory and oxidative stress response. Thus, the enhancement of GSH availability through dietary interventions would be a promising strategy to accelerate skeletal muscle and performance recovery following a soccer game. S-Acetyl Glutathione (SAG) is a glutathione precursor with enhanced absorption kinetics due to chemical S-acetylation of the thiol group on the cysteinyl amino acid of GSH and oral administration of SAG has been shown to be more effective in restoring intracellular glutathione levels compared to oral glutathione. The aim of this study is to (i) perform a pharmacokinetic assessment of 200 mg/day vs 500 mg/day of SAG during a 7-day supplementation period (pre-loading) and (ii) to establish the pharmacodynamic effect of the two dosages at 24, 48 and 72h following a 90-minute official soccer match.
Age range
19 Years – 29 Years
Sex
ALL
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Change in creatine kinase levels
Timeframe: Day 1, day 7, day 9, day 10 and day 11
Change in myoglobin levels
Timeframe: Day 1, day 7, day 9, day 10 and day 11
Change in reduced glutathione
Timeframe: Day 1, day 7, day 9, day 10 and day 11
Change in oxidized glutathione
Timeframe: Day 1, day 7, day 9, day 10 and day 11
Change in glutathione reductase activity
Timeframe: Day 1, day 7, day 9, day 10 and day 11
Change in glutathione peroxidase activity
Timeframe: Day 1, day 7, day 9, day 10 and day 11.
Change in catalase activity
Timeframe: Day 1, day 7, day 9, day 10 and day 11
Change in superoxide dismutase activity
Timeframe: Day 1, day 7, day 9, day 10 and day 11
Change in maximal voluntary isometric contraction
Timeframe: Day 1, day 9, day 10 and day 11
Change in maximal peak torque
Timeframe: Day 1, day 9, day 10 and day 11
Change in jumping performance
Timeframe: Day 1, day 9, day 10 and day11
Change in repeated sprint ability
Timeframe: Day 1, day 9, day 10 and day 11
Change in delayed onset muscle soreness (DOMS)
Timeframe: Day 1, day 9, day 10 and day 11