A Single Dose of Dietary Nitrate Increases Maximal Knee Extensor Angular Velocity and Power in Healthy Older Men and Women

Aging results in reductions in maximal muscular strength, speed, and power, which often lead to functional limitations highly predictive of disability, institutionalization, and mortality in elderly adults. This may be partially due to reduced nitric oxide (NO) bioavailability. We, therefore, hypoth...

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Published inThe journals of gerontology. Series A, Biological sciences and medical sciences Vol. 75; no. 6; p. 1154
Main Authors Coggan, Andrew R, Hoffman, Richard L, Gray, Derrick A, Moorthi, Ranjani N, Thomas, Deepak P, Leibowitz, Joshua L, Thies, Dakkota, Peterson, Linda R
Format Journal Article
LanguageEnglish
Published United States 22.05.2020
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ISSN1758-535X
DOI10.1093/gerona/glz156

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Abstract Aging results in reductions in maximal muscular strength, speed, and power, which often lead to functional limitations highly predictive of disability, institutionalization, and mortality in elderly adults. This may be partially due to reduced nitric oxide (NO) bioavailability. We, therefore, hypothesized that dietary nitrate (NO3-), a source of NO via the NO3- → nitrite (NO2-) → NO enterosalivary pathway, could increase muscle contractile function in older subjects. Twelve healthy older (age 71 ± 5 years) men and women were studied using a randomized, double-blind, placebo-controlled, crossover design. After fasting overnight, subjects were tested 2 hours after ingesting beetroot juice containing or devoid of 13.4 ± 1.6 mmol NO3-. Plasma NO3- and NO2- and breath NO were measured periodically, and muscle function was determined using isokinetic dynamometry. N O 3 - ingestion increased (p < .001) plasma NO3-, plasma NO2-, and breath NO by 1,051% ± 433%, 138% ± 149%, and 111% ± 115%, respectively. Maximal velocity of knee extension increased (p < .01) by 10.9% ± 12.1%. Maximal knee extensor power increased (p < .05) by 4.4% ± 7.8%. Acute dietary NO3- intake improves maximal knee extensor angular velocity and power in older individuals. These findings may have important implications for this population, in whom diminished muscle function can lead to functional limitations, dependence, and even premature death.
AbstractList Aging results in reductions in maximal muscular strength, speed, and power, which often lead to functional limitations highly predictive of disability, institutionalization, and mortality in elderly adults. This may be partially due to reduced nitric oxide (NO) bioavailability. We, therefore, hypothesized that dietary nitrate (NO3-), a source of NO via the NO3- → nitrite (NO2-) → NO enterosalivary pathway, could increase muscle contractile function in older subjects. Twelve healthy older (age 71 ± 5 years) men and women were studied using a randomized, double-blind, placebo-controlled, crossover design. After fasting overnight, subjects were tested 2 hours after ingesting beetroot juice containing or devoid of 13.4 ± 1.6 mmol NO3-. Plasma NO3- and NO2- and breath NO were measured periodically, and muscle function was determined using isokinetic dynamometry. N O 3 - ingestion increased (p < .001) plasma NO3-, plasma NO2-, and breath NO by 1,051% ± 433%, 138% ± 149%, and 111% ± 115%, respectively. Maximal velocity of knee extension increased (p < .01) by 10.9% ± 12.1%. Maximal knee extensor power increased (p < .05) by 4.4% ± 7.8%. Acute dietary NO3- intake improves maximal knee extensor angular velocity and power in older individuals. These findings may have important implications for this population, in whom diminished muscle function can lead to functional limitations, dependence, and even premature death.
Author Coggan, Andrew R
Thomas, Deepak P
Leibowitz, Joshua L
Thies, Dakkota
Gray, Derrick A
Moorthi, Ranjani N
Hoffman, Richard L
Peterson, Linda R
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  surname: Coggan
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  surname: Hoffman
  fullname: Hoffman, Richard L
  organization: Department of Kinesiology, Indiana University-Purdue University Indianapolis
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  surname: Gray
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  givenname: Ranjani N
  surname: Moorthi
  fullname: Moorthi, Ranjani N
  organization: Department of Internal Medicine, Indiana University-Purdue University Indianapolis
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  givenname: Deepak P
  surname: Thomas
  fullname: Thomas, Deepak P
  organization: Department of Medicine, Washington University School of Medicine, St. Louis, Missouri
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  surname: Leibowitz
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  organization: Department of Radiology, Washington University School of Medicine, St. Louis, Missouri
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  organization: Department of Radiology, Washington University School of Medicine, St. Louis, Missouri
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  givenname: Linda R
  surname: Peterson
  fullname: Peterson, Linda R
  organization: Department of Radiology, Washington University School of Medicine, St. Louis, Missouri
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Copyright The Author(s) 2019. Published by Oxford University Press on behalf of The Gerontological Society of America. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.
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Issue 6
Keywords Isokinetic dynamometry
Blood pressure
Nitrite
Nitric oxide
Language English
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Snippet Aging results in reductions in maximal muscular strength, speed, and power, which often lead to functional limitations highly predictive of disability,...
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StartPage 1154
SubjectTerms Aged
Dietary Supplements
Double-Blind Method
Female
Humans
Knee - physiology
Male
Movement - drug effects
Muscle Contraction - drug effects
Muscle Strength - drug effects
Muscle Strength Dynamometer
Nitrates - administration & dosage
Nitrates - blood
Nitrates - therapeutic use
Title A Single Dose of Dietary Nitrate Increases Maximal Knee Extensor Angular Velocity and Power in Healthy Older Men and Women
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Volume 75
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