Controlled clinical trial2014

Dietary nitrate supplementation: effects on plasma nitrite and pulmonary O2 uptake dynamics during exercise in hypoxia and normoxia

Kelly J, Vanhatalo A, Bailey SJ, Wylie LJ, Tucker C, List S, Winyard PG, Jones AM

American journal of physiology. Regulatory, integrative and comparative physiology · 85 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
Controlled clinical 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
2014-07-10 · Am J Physiol Regul Integr Comp Physiol · vol. 307 · issue 7 · pp. R920–R930
Publisher
American Physiological Society
Cited
117 citations · more than 100% of similar papers · 44.0× the field average
Impact
Top 10% most cited in its field
References
68 works
Access
Open access (repository copy)
Research areas
Cardiovascular and exercise physiology · High Altitude and Hypoxia · Heart Rate Variability and Autonomic Control
Keywords
Nitrite, Dietary Nitrate, Chemistry, Internal medicine, Hypoxia (environmental), Animal science, Crossover study, Confidence interval, Endocrinology, Nitrate, Oxygen, Medicine, Biology
MeSH
muscle, skeletal, humans, nitrates, nitrites, oxygen, exercise, double-blind method, oxygen consumption, blood pressure, exercise tolerance, dietary supplements, adolescent, adult, male, young adult

8 authors

From GB

  • JAMES A. KELLYUniversity of Exeter
  • Anni VanhataloUniversity of Exeter
  • Stephen J. BaileyUniversity of Exeter
  • Lee J. WylieUniversity of Exeter
  • Christopher TuckerUniversity of Exeter
  • Stephen J. ListUniversity of Exeter

Abstract

We investigated the effects of dietary nitrate (NO3 (-)) supplementation on the concentration of plasma nitrite ([NO2 (-)]), oxygen uptake (V̇o2) kinetics, and exercise tolerance in normoxia (N) and hypoxia (H). In a double-blind, crossover study, 12 healthy subjects completed cycle exercise tests, twice in N (20.9% O2) and twice in H (13.1% O2). Subjects ingested either 140 ml/day of NO3 (-)-rich beetroot juice (8.4 mmol NO3; BR) or NO3 (-)-depleted beetroot juice (PL) for 3 days prior to moderate-intensity and severe-intensity exercise tests in H and N. Preexercise plasma [NO2 (-)] was significantly elevated in H-BR and N-BR compared with H-PL (P < 0.01) and N-PL (P < 0.01). The rate of decline in plasma [NO2 (-)] was greater during severe-intensity exercise in H-BR [-30 ± 22 nM/min, 95% confidence interval (CI); -44, -16] compared with H-PL (-7 ± 10 nM/min, 95% CI; -13, -1; P < 0.01) and in N-BR (-26 ± 19 nM/min, 95% CI; -38, -14) compared with N-PL (-1 ± 6 nM/min, 95% CI; -5, 2; P < 0.01). During moderate-intensity exercise, steady-state pulmonary V̇o2 was lower in H-BR (1.91 ± 0.28 l/min, 95% CI; 1.77, 2.13) compared with H-PL (2.05 ± 0.25 l/min, 95% CI; 1.93, 2.26; P = 0.02), and V̇o2 kinetics was faster in H-BR (τ: 24 ± 13 s, 95% CI; 15, 32) compared with H-PL (31 ± 11 s, 95% CI; 23, 38; P = 0.04). NO3 (-) supplementation had no significant effect on V̇o2 kinetics during severe-intensity exercise in hypoxia, or during moderate-intensity or severe-intensity exercise in normoxia. Tolerance to severe-intensity exercise was improved by NO3 (-) in hypoxia (H-PL: 197 ± 28; 95% CI; 173, 220 vs. H-BR: 214 ± 43 s, 95% CI; 177, 249; P = 0.04) but not normoxia. The metabolism of NO2 (-) during exercise is altered by NO3 (-) supplementation, exercise, and to a lesser extent, hypoxia. In hypoxia, NO3 (-) supplementation enhances V̇o2 kinetics during moderate-intensity exercise and improves severe-intensity exercise tolerance. These findings may have important implications for individuals exercising at altitude.

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

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