Effect of Dietary Nitrate Supplementation on Swimming Performance in Trained Swimmers
Lowings S, Shannon OM, Deighton K, Matu J, Barlow MJ
International journal of sport nutrition and exercise metabolism · 23 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
- Intake measured by
- Not stated
Who paid for it
- Funding
- Funding not disclosed
Publication
- Published
- 2017-02-09 · Int J Sport Nutr Exerc Metab · vol. 27 · issue 4 · pp. 377–384
- Publisher
- Human Kinetics
- Cited
- 34 citations · more than 96% of similar papers · 6.6× the field average
- Impact
- Top 10% most cited in its field
- References
- 36 works
- Access
- Open access (repository copy)
- Research areas
- Cardiovascular and exercise physiology · Sports Performance and Training · High Altitude and Hypoxia
- Keywords
- Nitrate, Crossover study, Placebo, Animal science, Nitric oxide, Dietary Nitrate, Exhaled nitric oxide, Nitrite, Chemistry, Medicine, Internal medicine, Biology, Asthma
- MeSH
- humans, beta vulgaris, nitrates, nitric oxide, cross-over studies, double-blind method, biological availability, swimming, dietary supplements, female, male, athletic performance, young adult, athletes, sports nutritional physiological phenomena, fruit and vegetable juices
5 authors
From GB
- Sam LowingsLeeds Beckett University
- Oliver Michael Shannon · correspondingLeeds Beckett University
- Kevin DeightonLeeds Beckett University
- Jamie MatuLeeds Beckett University
- Matthew BarlowLeeds Beckett University
Abstract
Nitrate supplementation appears to be most ergogenic when oxygen availability is restricted and subsequently may be particularly beneficial for swimming performance due to the breath-hold element of this sport. This represents the first investigation of nitrate supplementation and swimming time-trial (TT) performance. In a randomized double-blind repeated-measures crossover study, ten (5 male, 5 female) trained swimmers ingested 140ml nitrate-rich (~12.5mmol nitrate) or nitrate-depleted (~0.01mmol nitrate) beetroot juice. Three hours later, subjects completed a maximal effort swim TT comprising 168m (8 × 21m lengths) backstroke. Preexercise fractional exhaled nitric oxide concentration was significantly elevated with nitrate compared with placebo, Mean (SD): 17 (9) vs. 7 (3)p.p.b., p = .008. Nitrate supplementation had a likely trivial effect on overall swim TT performance (mean difference 1.22s; 90% CI -0.18-2.6s; 0.93%; p = .144; d = 0.13; unlikely beneficial (22.6%), likely trivial (77.2%), most unlikely negative (0.2%)). The effects of nitrate supplementation during the first half of the TT were trivial (mean difference 0.29s; 90% CI -0.94-1.5s; 0.46%; p = .678; d = 0.05), but there was a possible beneficial effect of nitrate supplementation during the second half of the TT (mean difference 0.93s; 90% CI 0.13-1.70s; 1.36%; p = .062; d = 0.24; possibly beneficial (63.5%), possibly trivial (36.3%), most unlikely negative (0.2%)). The duration and speed of underwater swimming within the performance did not differ between nitrate and placebo (both p > .30). Nitrate supplementation increased nitric oxide bioavailability but did not benefit short-distance swimming performance or the underwater phases of the TT. Further investigation into the effects of nitrate supplementation during the second half of performance tests may be warranted.
Abstract via Europe PMC. Copyright remains with the authors or publisher.
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