Meta-analysis2018

Caffeine and Physiological Responses to Submaximal Exercise: A Meta-Analysis

Glaister M, Gissane C

International journal of sports physiology and performance · 46 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
Meta-analysis (indexed by PubMed)
Studied in
People
Main outcome
Health markers and function

Who paid for it

Funding
Funding not disclosed

Publication

Published
2017-09-05 · Int J Sports Physiol Perform · vol. 13 · issue 4 · pp. 402–411
Publisher
Human Kinetics
Cited
82 citations · more than 82% of similar papers · 1.6× the field average
References
65 works
Access
Paywalled
Research areas
Coffee research and impacts · Muscle metabolism and nutrition · Cardiovascular and exercise physiology
Keywords
Respiratory exchange ratio, Caffeine, Heart rate, Time trial, Crossover study, VO2 max, Medicine, Placebo, Confidence interval, Incremental exercise, Exercise physiology, Meta-analysis, Internal medicine, Blood lactate, Animal science, Cardiology, Physical therapy, Blood pressure
MeSH
humans, lactic acid, caffeine, blood glucose, pulmonary gas exchange, exercise, perception, oxygen consumption, heart rate, adult, physical exertion

2 authors

From GB

  • Mark Glaister · correspondingSt Mary's University College
  • Conor GissaneSt Mary's University College

Abstract

The aim of this study was to carry out a systematic review and meta-analysis of the effects of caffeine supplementation on physiological responses to submaximal exercise. A total of 26 studies met the inclusion criteria of adopting double-blind, randomized crossover designs that included a sustained (5-30 min) fixed-intensity bout of submaximal exercise (constrained to 60-85% maximal rate of oxygen consumption) using a standard caffeine dose of 3-6 mg·kg-1 administered 30-90 min prior to exercise. Meta-analyses were completed using a random-effects model, and data are presented as raw mean difference (D) with associated 95% confidence limits (CLs). Relative to placebo, caffeine led to significant increases in submaximal measures of minute ventilation (D = 3.36 L·min-1; 95% CL, 1.63-5.08; P = .0001; n = 73), blood lactate (D = 0.69 mmol·L-1; 95% CL, 0.46-0.93; P -1; 95% CL, 0.29-0.55; P < .00001; n = 129). In contrast, caffeine had a suppressive effect on ratings of perceived exertion (D = -0.8; 95% CL, -1.1 to -0.6; P < .00001; n = 147). Caffeine had no effect on measures of heart rate (P = .99; n = 207), respiratory exchange ratio (P = .18; n = 181), or oxygen consumption (P = .92; n = 203). The positive effects of caffeine supplementation on sustained high-intensity exercise performance are widely accepted, although the mechanisms to explain that response are currently unresolved. This meta-analysis has revealed clear effects of caffeine on various physiological responses during submaximal exercise, which may help explain its ergogenic action.

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

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