Chronic ingestion of a low dose of caffeine induces tolerance to the performance benefits of caffeine
Beaumont R, Cordery P, Funnell M, Mears S, James L, Watson P
Journal of sports sciences · 86 citations
Review labels
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 (indexed by PubMed)
- Studied in
- People
- Main outcome
- Health markers and function
Who paid for it
- Funding
- Funding not disclosed
Publication
- Published
- 2016-10-20 · J Sports Sci · vol. 35 · issue 19 · pp. 1920–1927
- Publisher
- Taylor & Francis
- Cited
- 131 citations · more than 98% of similar papers · 9.7× the field average
- Impact
- Top 10% most cited in its field
- References
- 44 works
- Access
- Open access (repository copy) · CC-BY-NC-ND
- Research areas
- Coffee research and impacts · Eating Disorders and Behaviors · Obesity, Physical Activity, Diet
- Keywords
- Caffeine, Ingestion, Medicine, Pharmacology, Internal medicine
- MeSH
- humans, caffeine, exercise test, oxygen consumption, drug tolerance, dietary supplements, male, athletic performance, young adult
6 authors
From GB, BE
- Ross Eric Beaumont · correspondingLoughborough University
- Philip CorderyLoughborough University
- Mark P. FunnellLoughborough University
- Stephen A. MearsLoughborough University
- Lewis John JamesLoughborough University
- Phillip WatsonVrije Universiteit Brussel
Abstract
This study examined effects of 4 weeks of caffeine supplementation on endurance performance. Eighteen low-habitual caffeine consumers (-1) were randomly assigned to ingest caffeine (1.5-3.0 mg · kg-1day-1; titrated) or placebo for 28 days. Groups were matched for age, body mass, V̇O2peak and Wmax (P > 0.05). Before supplementation, all participants completed one V̇O2peak test, one practice trial and 2 experimental trials (acute 3 mg · kg-1 caffeine [precaf] and placebo [testpla]). During the supplementation period a second V̇O2peak test was completed on day 21 before a final, acute 3 mg · kg-1 caffeine trial (postcaf) on day 29. Trials consisted of 60 min cycle exercise at 60% V̇O2peak followed by a 30 min performance task. All participants produced more external work during the precaf trial than testpla, with increases in the caffeine (383.3 ± 75 kJ vs. 344.9 ± 80.3 kJ; Cohen's d effect size [ES] = 0.49; P = 0.001) and placebo (354.5 ± 55.2 kJ vs. 333.1 ± 56.4 kJ; ES = 0.38; P = 0.004) supplementation group, respectively. This performance benefit was no longer apparent after 4 weeks of caffeine supplementation (precaf: 383.3 ± 75.0 kJ vs. postcaf: 358.0 ± 89.8 kJ; ES = 0.31; P = 0.025), but was retained in the placebo group (precaf: 354.5 ± 55.2 kJ vs. postcaf: 351.8 ± 49.4 kJ; ES = 0.05; P > 0.05). Circulating caffeine, hormonal concentrations and substrate oxidation did not differ between groups (all P > 0.05). Chronic ingestion of a low dose of caffeine develops tolerance in low-caffeine consumers. Therefore, individuals with low-habitual intakes should refrain from chronic caffeine supplementation to maximise performance benefits from acute caffeine ingestion.
Abstract via Europe PMC. Copyright remains with the authors or publisher.
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