Meta-analysis2024Open access

Effects of Dietary Nitrate Supplementation on High-Intensity Cycling Sprint Performance in Recreationally Active Adults: A Systematic Review and Meta-Analysis

Tan R, Cass JK, Lincoln IG, Wideen LE, Nicholl MJ, Molnar TJ, Gough LA, Bailey SJ, Pennell A

Nutrients · 5 citations

How it was studied

Design
Meta-analysis (indexed by PubMed)
Studied in
People
Main outcome
Health markers and function
Intake measured by
Not stated

Who paid for it

Funding
Independent funding

Based on full-text disclosure statement.

Publication

Published
2024-08-19 · Nutrients · vol. 16 · issue 16 · p. 2764
Publisher
Multidisciplinary Digital Publishing Institute
Cited
6 citations · more than 72% of similar papers · 1.1× the field average
References
74 works
Access
Open access (journal) · CC-BY
Research areas
Cardiovascular and exercise physiology · Muscle metabolism and nutrition · Nitric Oxide and Endothelin Effects
Keywords
Sprint, Cycling, Meta-analysis, Medicine, Time trial, Nitrate, Dietary Nitrate, Physical therapy, Regimen, Subgroup analysis, Animal science, Internal medicine, Biology, Heart rate, Blood pressure, Ecology
MeSH
humans, beta vulgaris, nitrates, bicycling, dietary supplements, adult, female, male, athletic performance, fruit and vegetable juices

9 authors

From US, GB

  • Rachel Tan · correspondingPepperdine University
  • Jordan K. CassPepperdine University
  • Isabella G. LincolnPepperdine University
  • Lauren E. WideenPepperdine University
  • Madelyn J. NichollPepperdine University
  • Trevor J. MolnarPepperdine University

Abstract

This systematic review and meta-analysis investigated the influence of dietary nitrate supplementation on performance metrics during cycling sprint exercise according to the PRISMA guidelines. Searches were conducted on MEDLINE, PubMed, ScienceDirect, Scopus, and SPORTDiscus databases up to September 2023. Inclusion criteria were healthy recreationally active men and women who consumed nitrate-rich and nitrate-deficient beetroot juice to assess performance outcomes of mean power, peak power, time-to-peak power, and minimum power during 30-s cycling sprints. Risk of bias was assessed using the Cochrane Risk of Bias 2 and TESTEX tools and funnel plots. A random effects model was performed on six studies and showed that dietary nitrate had significant effects on time-to-peak power (SMD: -0.66, 95% CI: -1.127 to -0.192, p = 0.006) but not on mean power, peak power, or minimum power. Subgroup analysis revealed that an acute low nitrate dose improved time-to-peak power (SMD: -0.977, 95% CI: -1.524 to -0.430, p p = 0.431). These data suggest that acute nitrate supplementation can benefit time-to-peak power during 30-s cycling sprints, but due to the limited availability of data and heterogeneity in methodology, these results should be interpreted with caution. There was insufficient data on women to analyze sex-based differences. Future studies are required to provide insight on how supplementation regimen and population impact the effects of dietary nitrate for enhancing cycling sprint performance.

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

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