Study2019

Caffeine Supplementation: Ergogenic in Both High and Low Caffeine Responders

Apostolidis A, Mougios V, Smilios I, Rodosthenous J, Hadjicharalambous M

International journal of sports physiology and performance · 17 citations

Review labels

Funding not disclosed

Neutral facts our review recorded about how this study was done. They describe method, never whether we like the result.

How it was studied

Design
Randomized controlled trial (classified by our AI screen)
Studied in
People
Main outcome
Health markers and function

Who paid for it

Funding
Funding not disclosed

Publication

Published
2018-11-14 · Int J Sports Physiol Perform · vol. 14 · issue 5 · pp. 650–657
Publisher
Human Kinetics
Cited
27 citations · more than 84% of similar papers · 1.8× the field average
References
38 works
Access
Paywalled
Research areas
Coffee research and impacts · Muscle metabolism and nutrition · Obesity, Physical Activity, Diet
Keywords
Caffeine, Placebo, Treadmill, Medicine, Ingestion, Internal medicine, Physical therapy, Anesthesia, Endocrinology
MeSH
humans, fatigue, epinephrine, glycerol, caffeine, fatty acids, nonesterified, exercise test, cross-over studies, double-blind method, oxygen consumption, blood pressure, soccer, adolescent, adult, male, athletic performance, young adult, performance-enhancing substances

5 authors

  • Andreas Apostolidis
  • Vassilis Mougios
  • Ilias Smilios
  • Johanna Rodosthenous
  • Marios Hadjicharalambous

Abstract

Purpose: Inconsistent results among studies examining the effects of caffeine on exercise performance are potentially due to interindividual variability in biological responses to caffeine ingestion. The aims, therefore, of the present study were to identify high and low caffeine responders and compare the influence of caffeine on exercise performance and biological responses between groups during a simulated soccer-game protocol on treadmill. Methods: Well-trained soccer players were distinguished as high (n = 11) and low (n = 9) caffeine responders based on resting blood pressure, plasma glycerol, nonesterified fatty acid, and epinephrine responses to caffeine. Participants underwent 2 simulated soccer-game protocols on a treadmill after caffeine (6 mg·kg-1) or placebo ingestion. Exercise performance and several biological responses were evaluated. Results: Exercise performance did not differ between the high and low responders to caffeine (P > .05). However, time to fatigue (high, caffeine: 797 [201] s vs placebo: 487 [258] s; low, caffeine: 625 [357] s vs placebo 447 [198] s) and countermovement jump (high, caffeine: 42.1 [5.5] cm vs placebo: 40.5 [5.7] cm; low, caffeine: 41.0 [3.8] cm vs placebo: 38.8 [4.6] cm) improved with caffeine relative to placebo (P P Conclusions: Caffeine improved aerobic endurance and neuromuscular performance in well-trained soccer players regardless of their responsiveness to caffeine at rest. Since no changes in substrate utilization were found with caffeine supplementation, performance improvements could be attributed to positive effects on the central nervous system and/or neuromuscular function, although the precise mechanism remains unclear.

Abstract via Europe PMC. Copyright remains with the authors or publisher.

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