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Dietary nitrate accelerates postexercise muscle metabolic recovery and O2delivery in hypoxia

Authors :
James R. Blackwell
Andrew M. Jones
Paul G. Winyard
Anni Vanhatalo
Jonathan Fulford
Source :
Journal of Applied Physiology. 117:1460-1470
Publication Year :
2014
Publisher :
American Physiological Society, 2014.

Abstract

We tested the hypothesis that the time constants (τ) of postexercise T2* MRI signal intensity (an index of O2delivery) and muscle [PCr] (an index of metabolic perturbation, measured by31P-MRS) in hypoxia would be accelerated after dietary nitrate (NO3−) supplementation. In a double-blind crossover design, eight moderately trained subjects underwent 5 days of NO3−(beetroot juice, BR; 8.2 mmol/day NO3−) and placebo (PL; 0.003 mmol/day NO3−) supplementation in four conditions: normoxic PL (N-PL), hypoxic PL (H-PL; 13% O2), normoxic NO3−(N-BR), and hypoxic NO3−(H-BR). The single-leg knee-extension protocol consisted of 10 min of steady-state exercise and 24 s of high-intensity exercise. The [PCr] recovery τ was greater in H-PL (30 ± 4 s) than H-BR (22 ± 4 s), N-PL (24 ± 4 s) and N-BR (22 ± 4 s) ( P < 0.05) and the maximal rate of mitochondrial ATP resynthesis (Qmax) was lower in the H-PL (1.12 ± 0.16 mM/s) compared with H-BR (1.35 ± 0.26 mM/s), N-PL (1.47 ± 0.28 mM/s), and N-BR (1.40 ± 0.21 mM/s) ( P < 0.05). The τ of postexercise T2* signal intensity was greater in H-PL (47 ± 14 s) than H-BR (32 ± 10 s), N-PL (38 ± 9 s), and N-BR (27 ± 6 s) ( P < 0.05). The postexercise [PCr] and T2* recovery τ were correlated in hypoxia ( r = 0.60; P < 0.05), but not in normoxia ( r = 0.28; P > 0.05). These findings suggest that the NO3−-NO2−-NO pathway is a significant modulator of muscle energetics and O2delivery during hypoxic exercise and subsequent recovery.

Details

ISSN :
15221601 and 87507587
Volume :
117
Database :
OpenAIRE
Journal :
Journal of Applied Physiology
Accession number :
edsair.doi.dedup.....411335914dc4a9549f863d89fcb4269c
Full Text :
https://doi.org/10.1152/japplphysiol.00096.2014