Meta-analysis2025Open access

Effects of Acute Caffeine Ingestion on Repeated Sprint Ability: A Systematic Review and Meta-Analysis

Wang Y, Su W, Zhang S, Zhao L, Lv Y, Gu B, Yu L

Nutrients · 6 citations

How it was studied

Design
Meta-analysis (indexed by PubMed)
Studied in
People
Main outcome
Health markers and function

Who paid for it

Funding
Independent funding
Government
Ministry of Education of the People's Republic of China
Government
Humanities and Social Science Fund of Ministry of Education of China
Grants
Humanities and Social Science Fund of Ministry of Education of China (24YJC890065)

Based on 2 listed funder(s) and full-text disclosure statement.

Publication

Published
2025-11-05 · Nutrients · vol. 17 · issue 21 · p. 3475
Publisher
Multidisciplinary Digital Publishing Institute
Cited
5 citations · more than 79% of similar papers · 1.3× the field average
References
61 works
Access
Open access (journal) · CC-BY
Research areas
Coffee research and impacts · Muscle metabolism and nutrition · Physical Activity and Health
Keywords
Caffeine, Ingestion, Sprint, Placebo, Strictly standardized mean difference, Meta-analysis, Confidence interval, Repeated measures design
MeSH
humans, caffeine, running, female, male, athletic performance, performance-enhancing substances

7 authors

From CN

  • Y J WangBeijing Sport University
  • Wantang SuBeijing Sport University
  • Shiyan ZhangBeijing Sport University
  • Li Ru ZhaoBeijing Sport University
  • Yuanyuan LvBeijing Sport University
  • Boya Gu · correspondingBeijing Sport University

Abstract

Background/Objectives: Caffeine is widely recognized as an ergogenic aid, yet evidence regarding its acute effects on repeated sprint ability (RSA) remains inconsistent. This systematic review and meta-analysis aimed to evaluate the effects of acute caffeine ingestion on RSA across different populations, exercise modalities, and dosage levels. Methods: A comprehensive literature search was conducted in the PubMed, EBSCO, Cochrane Library, Web of science, and Scopus databases. Data were pooled using the weighted mean difference (WMD) with 95% confidence interval (CI). Results: Thirteen studies met the inclusion criteria. Acute caffeine ingestion significantly enhanced RSA peak power output (PPO) compared with placebo (WMD, 5.28; 95% CI, 2.49 to 8.07; p = 0.0002). Subgroup analyses revealed significant improvements in both males (WMD, 13.11; 95% CI, 5.63 to 20.59; p = 0.0006) and females (WMD, 4.03; 95% CI, 1.10 to 6.97; p = 0.007). A caffeine dose of ≥6 mg/kg body weight (BW) produced greater ergogenic benefits (WMD, 6.67; 95% CI, 3.32 to 10.02; p p = 0.40). Moreover, a more pronounced enhancement was observed in cycling-based RSA (WMD, 8.77; 95% CI, 1.98 to 15.56; p = 0.01) compared with running-based protocols (WMD, 4.56; 95% CI, 1.58 to 7.55; p = 0.003). Conclusions: Acute caffeine ingestion significantly enhances RSA, particularly at doses ≥6 mg/kg BW. This effect is consistent across both male and female participants, with no statistically significant sex difference observed in the pooled analysis. These findings reinforce caffeine's role as an effective ergogenic aid for optimizing high-intensity intermittent performance, with the strongest benefits evident in cycling exercise.

Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).

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