Dietary Nitrate Supplementation Improves Exercise Tolerance by Reducing Muscle Fatigue and Perceptual Responses
Husmann F, Bruhn S, Mittlmeier T, Zschorlich V, Behrens M
Frontiers in physiology · 56 citations
How it was studied
- Design
- Randomized controlled trial (classified by our AI screen)
- Studied in
- People
- Main outcome
- Health markers and function
- Intake measured by
- Not stated
Who paid for it
- Funding
- Independent funding
- Government
- Deutsche Forschungsgemeinschaft
- University or hospital
- Universität Rostock
Based on 2 listed funder(s) and full-text disclosure statement.
Publication
- Published
- 2019-04-24 · Front Physiol · vol. 10 · p. 404
- Publisher
- Frontiers Media
- Cited
- 74 citations · more than 98% of similar papers · 9.4× the field average
- Impact
- Top 10% most cited in its field
- References
- 87 works
- Access
- Open access (journal) · CC-BY
- Research areas
- Cardiovascular and exercise physiology · Exercise and Physiological Responses · Sports Performance and Training
- Keywords
- Placebo, Crossover study, Medicine, Nitrate, Dietary Nitrate, Physical therapy, Anesthesia, Physical medicine and rehabilitation, Internal medicine, Cardiology, Chemistry, Nitrite
5 authors
From DE
- Florian Husmann · correspondingUniversity of Rostock
- Sven BruhnUniversity of Rostock
- Thomas Mittlmeier
- Volker R. ZschorlichUniversity of Rostock
- Martin BehrensUniversity of Rostock
Abstract
The present study was designed to provide further insight into the mechanistic basis for the improved exercise tolerance following dietary nitrate supplementation. In a randomized, double-blind, crossover design, twelve recreationally active males completed a dynamic time-to-exhaustion test of the knee extensors after 5 days of consuming both nitrate-rich (NITRATE) and nitrate-depleted beetroot juice (PLACEBO). Participants who improved their time-to-exhaustion following NITRATE performed a time-matched trial corresponding to the PLACEBO exercise duration with another 5 days of dietary nitrate supplementation. This procedure was performed to obtain time-matched exercise trials with (NITRATEtm) and without dietary nitrate supplementation (PLACEBO). Neuromuscular tests were performed before and after each time-matched condition. Muscle fatigue was quantified as percentage change in maximal voluntary torque from pre- to post-exercise (ΔMVT). Changes in voluntary activation (ΔVA) and quadriceps twitch torque (ΔPS100) were used to quantify central and peripheral factors of muscle fatigue, respectively. Muscle oxygen saturation, quadriceps muscle activity as well as perceptual data (i.e., perception of effort and leg muscle pain) were recorded during exercise. Time-to-exhaustion was improved with NITRATE (12:41 ± 07:18 min) compared to PLACEBO (09:03 ± 04:18 min; P = 0.010). NITRATEtm resulted in both lower ΔMVT and ΔPS100 compared to PLACEBO (P = 0.002; P = 0.001, respectively). ΔVA was not different between conditions (P = 0.308). NITRATEtm resulted in reduced perception of effort and leg muscle pain. Our findings extend the mechanistic basis for the improved exercise tolerance by showing that dietary nitrate supplementation (i) attenuated the development of muscle fatigue by reducing the exercise-induced impairments in contractile muscle function; and (ii) lowered the perception of both effort and leg muscle pain during exercise.
Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).
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