The Relationship between Resistance Exercise Performance and Ventilatory Efficiency after Beetroot Juice Intake in Well-Trained Athletes

The assessment of ventilatory efficiency is critical to understanding the matching of ventilation (VE) and perfusion in the lungs during exercise. This study aimed to establish a causal physiological relationship between ventilatory efficiency and resistance exercise performance after beetroot juice...

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Main Authors: Noemí Serra-Payá, Manuel Vicente Garnacho-Castaño, Sergio Sánchez-Nuño, Lluís Albesa-Albiol, Montserrat Girabent-Farrés, Luciana Moizé Arcone, Alba Pardo Fernández, Adrián García-Fresneda, Jorge Castizo-Olier, Xavier Viñals, Lorena Molina-Raya, Manuel Gomis Bataller
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Nutrients
Subjects:
Online Access:https://www.mdpi.com/2072-6643/13/4/1094
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spelling doaj-5c0cd9b624de475eac0020d9306001782021-03-28T00:01:44ZengMDPI AGNutrients2072-66432021-03-01131094109410.3390/nu13041094The Relationship between Resistance Exercise Performance and Ventilatory Efficiency after Beetroot Juice Intake in Well-Trained AthletesNoemí Serra-Payá0Manuel Vicente Garnacho-Castaño1Sergio Sánchez-Nuño2Lluís Albesa-Albiol3Montserrat Girabent-Farrés4Luciana Moizé Arcone5Alba Pardo Fernández6Adrián García-Fresneda7Jorge Castizo-Olier8Xavier Viñals9Lorena Molina-Raya10Manuel Gomis Bataller11School of Health Sciences, TecnoCampus Pompeu Fabra University, Ernest Lluch, 32 (Porta Laietana), 08302 Mataró-Barcelona, SpainSchool of Health Sciences, TecnoCampus Pompeu Fabra University, Ernest Lluch, 32 (Porta Laietana), 08302 Mataró-Barcelona, SpainSchool of Health Sciences, TecnoCampus Pompeu Fabra University, Ernest Lluch, 32 (Porta Laietana), 08302 Mataró-Barcelona, SpainSchool of Health Sciences, TecnoCampus Pompeu Fabra University, Ernest Lluch, 32 (Porta Laietana), 08302 Mataró-Barcelona, SpainSchool of Health Sciences, TecnoCampus Pompeu Fabra University, Ernest Lluch, 32 (Porta Laietana), 08302 Mataró-Barcelona, SpainSchool of Health Sciences, TecnoCampus Pompeu Fabra University, Ernest Lluch, 32 (Porta Laietana), 08302 Mataró-Barcelona, SpainSchool of Health Sciences, TecnoCampus Pompeu Fabra University, Ernest Lluch, 32 (Porta Laietana), 08302 Mataró-Barcelona, SpainSchool of Health Sciences, TecnoCampus Pompeu Fabra University, Ernest Lluch, 32 (Porta Laietana), 08302 Mataró-Barcelona, SpainSchool of Health Sciences, TecnoCampus Pompeu Fabra University, Ernest Lluch, 32 (Porta Laietana), 08302 Mataró-Barcelona, SpainSchool of Health Sciences, TecnoCampus Pompeu Fabra University, Ernest Lluch, 32 (Porta Laietana), 08302 Mataró-Barcelona, SpainCampus Docent Sant Joan de Déu, Fundación Privada, 08304 Barcelona, SpainSchool of Health Sciences, TecnoCampus Pompeu Fabra University, Ernest Lluch, 32 (Porta Laietana), 08302 Mataró-Barcelona, SpainThe assessment of ventilatory efficiency is critical to understanding the matching of ventilation (VE) and perfusion in the lungs during exercise. This study aimed to establish a causal physiological relationship between ventilatory efficiency and resistance exercise performance after beetroot juice (BJ) intake. Eleven well-trained males performed a resistance exercise test after drinking 140 mL of BJ (~12.8 mmol NO<sub>3</sub><sup>−</sup>) or a placebo (PL). Ventilatory efficiency was assessed by the VE•VCO<sub>2</sub><sup>−1</sup> slope, the oxygen uptake efficiency slope and the partial pressure of end-tidal carbon dioxide (PetCO<sub>2</sub>). The two experimental conditions were controlled using a randomized, double-blind crossover design. The resistance exercise test involved repeating the same routine twice, which consisted of wall ball shots plus a full squat (FS) with a 3 min rest or without a rest between the two exercises. A higher weight lifted was detected in the FS exercise after BJ intake compared with the PL during the first routine (<i>p</i> = 0.004). BJ improved the VE•VCO<sub>2</sub><sup>−1</sup> slope and the PetCO<sub>2</sub> during the FS exercise in the first routine and at rest (<i>p</i> < 0.05). BJ intake improved the VE•VCO<sub>2</sub><sup>−1</sup> slope and the PetCO<sub>2</sub> coinciding with the resistance exercise performance. The ergogenic effect of BJ could be induced under aerobic conditions at rest.https://www.mdpi.com/2072-6643/13/4/1094VE•VCO<sub>2</sub><sup>−1</sup> slopeoxygen uptake efficiency slopepartial pressure of end-tidal carbon dioxidenitric oxidenitratenitrite
collection DOAJ
language English
format Article
sources DOAJ
author Noemí Serra-Payá
Manuel Vicente Garnacho-Castaño
Sergio Sánchez-Nuño
Lluís Albesa-Albiol
Montserrat Girabent-Farrés
Luciana Moizé Arcone
Alba Pardo Fernández
Adrián García-Fresneda
Jorge Castizo-Olier
Xavier Viñals
Lorena Molina-Raya
Manuel Gomis Bataller
spellingShingle Noemí Serra-Payá
Manuel Vicente Garnacho-Castaño
Sergio Sánchez-Nuño
Lluís Albesa-Albiol
Montserrat Girabent-Farrés
Luciana Moizé Arcone
Alba Pardo Fernández
Adrián García-Fresneda
Jorge Castizo-Olier
Xavier Viñals
Lorena Molina-Raya
Manuel Gomis Bataller
The Relationship between Resistance Exercise Performance and Ventilatory Efficiency after Beetroot Juice Intake in Well-Trained Athletes
Nutrients
VE•VCO<sub>2</sub><sup>−1</sup> slope
oxygen uptake efficiency slope
partial pressure of end-tidal carbon dioxide
nitric oxide
nitrate
nitrite
author_facet Noemí Serra-Payá
Manuel Vicente Garnacho-Castaño
Sergio Sánchez-Nuño
Lluís Albesa-Albiol
Montserrat Girabent-Farrés
Luciana Moizé Arcone
Alba Pardo Fernández
Adrián García-Fresneda
Jorge Castizo-Olier
Xavier Viñals
Lorena Molina-Raya
Manuel Gomis Bataller
author_sort Noemí Serra-Payá
title The Relationship between Resistance Exercise Performance and Ventilatory Efficiency after Beetroot Juice Intake in Well-Trained Athletes
title_short The Relationship between Resistance Exercise Performance and Ventilatory Efficiency after Beetroot Juice Intake in Well-Trained Athletes
title_full The Relationship between Resistance Exercise Performance and Ventilatory Efficiency after Beetroot Juice Intake in Well-Trained Athletes
title_fullStr The Relationship between Resistance Exercise Performance and Ventilatory Efficiency after Beetroot Juice Intake in Well-Trained Athletes
title_full_unstemmed The Relationship between Resistance Exercise Performance and Ventilatory Efficiency after Beetroot Juice Intake in Well-Trained Athletes
title_sort relationship between resistance exercise performance and ventilatory efficiency after beetroot juice intake in well-trained athletes
publisher MDPI AG
series Nutrients
issn 2072-6643
publishDate 2021-03-01
description The assessment of ventilatory efficiency is critical to understanding the matching of ventilation (VE) and perfusion in the lungs during exercise. This study aimed to establish a causal physiological relationship between ventilatory efficiency and resistance exercise performance after beetroot juice (BJ) intake. Eleven well-trained males performed a resistance exercise test after drinking 140 mL of BJ (~12.8 mmol NO<sub>3</sub><sup>−</sup>) or a placebo (PL). Ventilatory efficiency was assessed by the VE•VCO<sub>2</sub><sup>−1</sup> slope, the oxygen uptake efficiency slope and the partial pressure of end-tidal carbon dioxide (PetCO<sub>2</sub>). The two experimental conditions were controlled using a randomized, double-blind crossover design. The resistance exercise test involved repeating the same routine twice, which consisted of wall ball shots plus a full squat (FS) with a 3 min rest or without a rest between the two exercises. A higher weight lifted was detected in the FS exercise after BJ intake compared with the PL during the first routine (<i>p</i> = 0.004). BJ improved the VE•VCO<sub>2</sub><sup>−1</sup> slope and the PetCO<sub>2</sub> during the FS exercise in the first routine and at rest (<i>p</i> < 0.05). BJ intake improved the VE•VCO<sub>2</sub><sup>−1</sup> slope and the PetCO<sub>2</sub> coinciding with the resistance exercise performance. The ergogenic effect of BJ could be induced under aerobic conditions at rest.
topic VE•VCO<sub>2</sub><sup>−1</sup> slope
oxygen uptake efficiency slope
partial pressure of end-tidal carbon dioxide
nitric oxide
nitrate
nitrite
url https://www.mdpi.com/2072-6643/13/4/1094
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