Randomized controlled trial2017Open access

The effect of dietary nitrate supplementation on the spatial heterogeneity of quadriceps deoxygenation during heavy-intensity cycling

Breese BC, Poole DC, Okushima D, Bailey SJ, Jones AM, Kondo N, Amano T, Koga S

Physiological reports · 10 citations

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
Possibly industry funded
Government
Japan Society for the Promotion of Science
Grants
Japan Society for the Promotion of Science (15K16476); Japan Society for the Promotion of Science (16K13011); Japan Society for the Promotion of Science (17J09854)

Based on 1 listed funder(s) and full-text disclosure statement.

Publication

Published
2017-07-01 · Physiol Rep · vol. 5 · issue 14 · p. e13340
Publisher
Wiley
Cited
13 citations · more than 87% of similar papers · 2.3× the field average
References
60 works
Access
Open access (journal) · CC-BY
Research areas
Cardiovascular and exercise physiology · Sports Performance and Training · Heart Rate Variability and Autonomic Control
Keywords
Myoglobin, Placebo, Chemistry, Deoxygenation, Cycling, Animal science, Internal medicine, Medicine, Biochemistry, Endocrinology, Biology, Pathology
MeSH
muscle, skeletal, humans, nitrates, oxygen, hemoglobins, myoglobin, exercise, oxygen consumption, dietary supplements, adult, male

8 authors

From GB, US, JP

  • Brynmor C. BreeseUniversity of Plymouth
  • David C. PooleKansas State University
  • Dai OkushimaKobe Design University
  • Stephen J. BaileyLoughborough University; Loughborough College
  • ANDREW MARK JONESUniversity of Exeter
  • Narihiko KondoKobe University

Abstract

This study investigated the influence of dietary inorganic nitrate (NO3-) supplementation on pulmonary O2 uptake (V˙O2) and muscle deoxyhemoglobin/myoglobin (i.e. deoxy [Hb + Mb]) kinetics during submaximal cycling exercise. In a randomized, placebo-controlled, cross-over study, eight healthy and physically active male subjects completed two step cycle tests at a work rate equivalent to 50% of the difference between the gas exchange threshold and peak V˙O2 over separate 4-day supplementation periods with NO3--rich (BR; providing 8.4 mmol NO3-∙day-1) and NO3--depleted (placebo; PLA) beetroot juice. Pulmonary V˙O2 was measured breath-by-breath and time-resolved near-infrared spectroscopy was utilized to quantify absolute deoxy [Hb + Mb] and total [Hb + Mb] within the rectus femoris, vastus lateralis, and vastus medialis There were no significant differences (P > 0.05) in the primary deoxy [Hb + Mb] mean response time or amplitude between the PLA and BR trials at each muscle site. BR significantly increased the mean (three-site) end-exercise deoxy [Hb + Mb] (PLA: 91 ± 9 vs. BR: 95 ± 12 μmol/L, P 0.05), with a tendency to increase the mean (three-site) area under the curve for total [Hb + Mb] responses (PLA: 3650 ± 1188 vs. BR: 4467 ± 1315 μmol/L sec-1, P = 0.08). The V˙O2 slow component reduction after BR supplementation (PLA: 0.27 ± 0.07 vs. BR: 0.23 ± 0.08 L min-1, P = 0.07) correlated inversely with the mean increases in deoxy [Hb + Mb] and total [Hb + Mb] across the three muscle regions (r2 = 0.62 and 0.66, P 0.05). Dietary NO3- supplementation increased O2 diffusive conductance across locomotor muscles in association with improved V˙O2 dynamics during heavy-intensity cycling transitions.

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

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