Funded in part by Banco Santander
Effects of CYP1A2 and ADORA2A Genotypes on the Ergogenic Response to Caffeine in Professional Handball Players
Muñoz A, López-Samanes Á, Aguilar-Navarro M, Varillas-Delgado D, Rivilla-García J, Moreno-Pérez V, Del Coso J
Genes · 41 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 (classified by our AI screen)
- Studied in
- People
- Main outcome
- Health markers and function
Who paid for it
- Funding
- Industry funded
- Company
- Banco Santander
- University or hospital
- Universidad Francisco de Vitoria
- Grants
- Universidad Francisco de Vitoria ((UFV-2020/43))
Based on 2 listed funder(s) and full-text disclosure statement.
Publication
- Published
- 2020-08-13 · Genes (Basel) · vol. 11 · issue 8 · p. 933
- Publisher
- Multidisciplinary Digital Publishing Institute
- Cited
- 54 citations · more than 95% of similar papers · 4.2× the field average
- Impact
- Top 10% most cited in its field
- References
- 66 works
- Access
- Open access (journal) · CC-BY
- Research areas
- Coffee research and impacts · Muscle metabolism and nutrition · Eating Disorders and Behaviors
- Keywords
- Caffeine, CYP1A2, Physiology, Medicine, Biology, Internal medicine, Metabolism
- MeSH
- humans, caffeine, cytochrome p-450 cyp1a2, receptor, adenosine a2a, gene frequency, genotype, alleles, sports, adolescent, adult, child, female, male, athletic performance, young adult, performance-enhancing substances, pharmacogenomic variants
7 authors
From ES
- Alejandro MuñozUniversidad Francisco de Vitoria; Universidad Politécnica de Madrid
- Álvaro López‐Samanes · correspondingUniversidad Francisco de Vitoria
- Millán Aguilar‐NavarroUniversidad Francisco de Vitoria
- David Varillas‐DelgadoUniversidad Francisco de Vitoria
- Jesús Rivilla-GarcíaUniversidad Politécnica de Madrid
- Víctor Moreno-PérezUniversitat de Miguel Hernández d'Elx
Abstract
Previous investigations have found that several genes may be associated with the interindividual variability to the ergogenic response to caffeine. The aim of this study is to analyze the influence of the genetic variations in CYP1A2 (-163C > A, rs762551; characterized such as "fast" (AA genotype) and "slow" caffeine metabolizers (C-carriers)) and ADORA2A (1976T > C; rs5751876; characterized by "high" (TT genotype) or "low" sensitivity to caffeine (C-carriers)) on the ergogenic response to acute caffeine intake in professional handball players. Thirty-one professional handball players (sixteen men and fifteen women; daily caffeine intake = 60 ± 25 mg·d-1) ingested 3 mg·kg-1·body mass (bm) of caffeine or placebo 60 min before undergoing a battery of performance tests consisting of a countermovement jump (CMJ), a sprint test, an agility test, an isometric handgrip test, and several ball throws. Afterwards, the handball players performed a simulated handball match (2 × 20 min) while movements were recorded using inertial units. Saliva samples were analyzed to determine the genotype of each player for the -163C > A polymorphism in the CYP1A2 gene (rs762551) and for the 1976T > C polymorphism in the ADORA2A gene (rs5751876). In the CYP1A2, C-allele carriers (54.8%) were compared to AA homozygotes (45.2%). In the ADORA2A, C-allele carriers (80.6%) were compared to TT homozygotes (19.4%). There was only a genotype x treatment interaction for the ball throwing from 7 m (p = 0.037) indicating that the ergogenic effect of caffeine on this test was higher in CYP1A2 AA homozygotes than in C-allele carriers. In the remaining variables, there were no genotype x treatment interactions for CYP1A2 or for ADORA2A. As a whole group, caffeine increased CMJ height, performance in the sprint velocity test, and ball throwing velocity from 9 m (2.8-4.3%, p = 0.001-0.022, effect size = 0.17-0.31). Thus, pre-exercise caffeine supplementation at a dose of 3 mg·kg-1·bm can be considered as an ergogenic strategy to enhance some neuromuscular aspects of handball performance in professional handball players with low daily caffeine consumption. However, the ergogenic response to acute caffeine intake was not modulated by CYP1A2 or ADORA2A genotypes.
Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).
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