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Dietary nitrate reduces muscle metabolic perturbation and improves exercise tolerance in hypoxia.

Abstract
Exercise in hypoxia is associated with reduced muscle oxidative function and impaired exercise tolerance. We hypothesised that dietary nitrate supplementation (which increases plasma [nitrite] and thus NO bioavailability) would ameliorate the adverse effects of hypoxia on muscle metabolism and oxidative function. In a double-blind, randomised crossover study, nine healthy subjects completed knee-extension exercise to the limit of tolerance (T(lim)), once in normoxia (20.9% O(2); CON) and twice in hypoxia (14.5% O(2)). During 24 h prior to the hypoxia trials, subjects consumed 0.75 L of nitrate-rich beetroot juice (9.3 mmol nitrate; H-BR) or 0.75 L of nitrate-depleted beetroot juice as a placebo (0.006 mmol nitrate; H-PL). Muscle metabolism was assessed using calibrated (31)P-MRS. Plasma [nitrite] was elevated (P < 0.01) following BR (194 ± 51 nm) compared to PL (129 ± 23 nm) and CON (142 ± 37 nM). T(lim) was reduced in H-PL compared to CON (393 ± 169 vs. 471 ± 200 s; P < 0.05) but was not different between CON and H-BR (477 ± 200 s). The muscle [PCr], [P(i)] and pH changed at a faster rate in H-PL compared to CON and H-BR. The [PCr] recovery time constant was greater (P < 0.01) in H-PL (29 ± 5 s) compared to CON (23 ± 5 s) and H-BR (24 ± 5 s). Nitrate supplementation reduced muscle metabolic perturbation during exercise in hypoxia and restored exercise tolerance and oxidative function to values observed in normoxia. The results suggest that augmenting the nitrate-nitrite-NO pathway may have important therapeutic applications for improving muscle energetics and functional capacity in hypoxia.
AuthorsAnni Vanhatalo, Jonathan Fulford, Stephen J Bailey, James R Blackwell, Paul G Winyard, Andrew M Jones
JournalThe Journal of physiology (J Physiol) Vol. 589 Issue Pt 22 Pg. 5517-28 (Nov 15 2011) ISSN: 1469-7793 [Electronic] England
PMID21911616 (Publication Type: Journal Article, Randomized Controlled Trial)
Chemical References
  • Nitrates
  • Nitrites
  • Plant Extracts
Topics
  • Adult
  • Beta vulgaris
  • Blood Pressure
  • Cross-Over Studies
  • Dietary Supplements
  • Double-Blind Method
  • Exercise Test
  • Exercise Tolerance (drug effects)
  • Female
  • Humans
  • Hypoxia (blood, drug therapy, physiopathology)
  • Male
  • Muscle, Skeletal (drug effects, physiopathology)
  • Nitrates (pharmacology)
  • Nitrites (blood)
  • Plant Extracts (pharmacology, therapeutic use)
  • Plant Roots (chemistry)
  • Young Adult

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