Caffeine Does Not Alter Performance, Perceptual Responses, and Oxidative Stress After Short Sprint Interval Training.
Mauro F BernardoAlysson EnesElisangela Franciele ResendeAlexandre R OkuyamaRagami C AlvesMurilo de AndradeAna Carolina G MacedoMarcelo Paes de BarrosDarren G CandowScott C ForbesTácito P Souza-JuniorPublished in: International journal of sport nutrition and exercise metabolism (2024)
Despite the abundance of research investigating the efficacy of caffeine supplementation on exercise performance, the physiological and biochemical responses to caffeine supplementation during intermittent activities are less evident. This study investigated the acute effects of caffeine supplementation on measures of exercise performance, ratings of perceived exertion, and biomarkers of oxidative stress induced by an acute bout of sprint interval training. In a randomized crossover design, 12 healthy males (age: 26 ± 4 years, height: 177.5 ± 6 cm, body mass: 80.7 ± 7.6 kg) ingested 6 mg/kg of caffeine or placebo 60 min prior to performing sprint interval training (12 × 6 s "all-out sprints" interspersed by 60 s of rest). Performance scores and ratings of perceived exertion were assessed after every sprint. Blood samples were collected before supplementation, prior to and following each sprint, and 5 and 60 min after the last sprint. Caffeine had no effect on any performance measures, ratings of perceived exertion, or biomarkers of oxidative stress (p > .05). In conclusion, caffeine supplementation does not improve performance or decrease oxidative stress after an acute bout of sprint interval training.
Keyphrases
- high intensity
- oxidative stress
- resistance training
- liver failure
- physical activity
- social support
- respiratory failure
- virtual reality
- depressive symptoms
- ischemia reperfusion injury
- mental health
- induced apoptosis
- diabetic rats
- body composition
- body mass index
- drug induced
- aortic dissection
- working memory
- randomized controlled trial
- intensive care unit
- extracorporeal membrane oxygenation
- double blind
- mass spectrometry
- endoplasmic reticulum stress
- signaling pathway
- heat shock
- atomic force microscopy
- placebo controlled