Cette page a été traduite automatiquement et l'exactitude de la traduction n'est pas garantie. Veuillez vous référer au version anglaise pour un texte source.

Tart Cherry Juice for Exercise Performance and Recovery

27 juin 2018 mis à jour par: Phil Chilibeck, University of Saskatchewan

The Effect of Tart Cherry Juice on Fat Metabolism, Exercise Performance, and Recovery

This study evaluates the effects of tart cherry juice consumption on endurance exercise performance, fat metabolism during exercise, blood pressure, and recovery from exercise as assessed by muscle pain, muscle strength and electrical properties of muscle. Comparisons will be made to Gatorade consumption. Participants include those who are moderately active and have experience with cycling.

Aperçu de l'étude

Statut

Complété

Les conditions

Intervention / Traitement

Description détaillée

Tart cherries are rich in bioactive components (i.e. flavonoids) that have anti-inflammatory and anti-oxidant properties. Inflammation and lipid peroxidation causes damage of skeletal muscle membranes during intense exercise. The damage of muscle increases the amount of time for muscle to recover from intense exercise, and can cause muscle strength to be reduced for days. When tart cherries in a concentrated form (i.e. as juice or powder) are consumed in the days leading up to intense exercise, there is a protective effect against inflammation, and lipid peroxidation . This theoretically prevents damage to the lipid component of muscle fibre membranes and helps to preserve muscle function - when muscle is damaged by intense exercise (i.e. either repetitive aerobic activity or high-force muscle contraction), consumption of cherry juice enhances the rate of muscle strength recovery following exercise compared to when a placebo (i.e. non-cherry) beverage is consumed . Muscle damage may be protected by cherry juice consumption; however, all studies evaluating the protective effect of cherries have assessed muscle damage by measuring muscle proteins in the blood. This rather indirect measure of muscle damage is highly variable and not always an accurate assessment of muscle damage; this may be why some studies indicate a reduction in markers of muscle damage with cherry juice consumption while others do not.

A more direct assessment of muscle damage can be obtained by applying electrical stimulation at different frequencies to a muscle before and after intense exercise and assessing the reduction in force output in response to low-frequency and high-frequency stimulation. After intense exercise, the force output at low frequencies of stimulation is often reduced, while the force output at high frequencies is maintained; a phenomenon termed "low frequency fatigue". When muscle is stimulated to contract (either voluntarily by the nervous system or involuntarily through electrical stimulation) calcium is released inside muscle. This calcium release leads to muscle contraction. When muscle undergoes intense exercise, there is damage to muscle membranes, including membranes inside muscle that are responsible for calcium release. This causes a lower amount of calcium to be released with each muscle contraction. Normally, if high frequencies of electrical stimulation are applied to muscle, a very large amount of calcium is released inside muscle - an amount which is "more than enough" to cause a high amount of muscle contraction and high force output. If muscle fibre membranes responsible for release of calcium are damaged, a lower amount of calcium is released, but because "more than enough" calcium is usually released with high frequency stimulation, the lower amount of calcium released with muscle damage is still enough to cause high force of muscle contraction. The force response to low frequencies of stimulation; however, is dramatically reduced when muscle is damaged - usually only a small amount of calcium is released when low frequencies of stimulation are delivered to muscle. Following muscle damage, the smaller amount of calcium released causes lower force production at low stimulation frequency. Low force production at low stimulation frequencies, with a relatively maintained force production at high stimulation frequencies therefore indicates that muscle damage has occurred. This lower muscle force capability at low frequencies of stimulation has dramatic effects on endurance performance because typical endurance performance relies on repeated low-force muscle contractions, as opposed to the few high-force contractions that might be required in other sports (i.e. short sprinting events or field events such as shot put).

The study we are proposing will use this measurement (i.e. ratio of low frequency force to high frequency force output) as a more direct measure of muscle damage. We predict that if cherry juice is consumed in the days leading up to a bout of muscle-damaging endurance exercise, muscle damage will be lower (as indicated by a faster recovery of low-frequency fatigue following the bout of exercise) than when a comparison-drink (i.e. Gatorade) is consumed.

Type d'étude

Interventionnel

Inscription (Réel)

13

Phase

  • N'est pas applicable

Contacts et emplacements

Cette section fournit les coordonnées de ceux qui mènent l'étude et des informations sur le lieu où cette étude est menée.

Lieux d'étude

    • Saskatchewan
      • Saskatoon, Saskatchewan, Canada, S7N 5B2
        • College of Kinesiology, University of Saskatchewan

Critères de participation

Les chercheurs recherchent des personnes qui correspondent à une certaine description, appelée critères d'éligibilité. Certains exemples de ces critères sont l'état de santé général d'une personne ou des traitements antérieurs.

Critère d'éligibilité

Âges éligibles pour étudier

18 ans et plus (Adulte, Adulte plus âgé)

Accepte les volontaires sains

Oui

Sexes éligibles pour l'étude

Tout

La description

Inclusion Criteria:

  • experienced cyclist (i.e. bicycle exercise at a vigorous intensity on a regular basis)

Exclusion Criteria:

  • Allergies to cherries

Plan d'étude

Cette section fournit des détails sur le plan d'étude, y compris la façon dont l'étude est conçue et ce que l'étude mesure.

Comment l'étude est-elle conçue ?

Détails de conception

  • Objectif principal: Autre
  • Répartition: Randomisé
  • Modèle interventionnel: Affectation croisée
  • Masquage: Tripler

Armes et Interventions

Groupe de participants / Bras
Intervention / Traitement
Expérimental: Tart Cherry Juice
290 mL per day of Tart Cherry juice for 7 days
Beverage to be consumed
Comparateur actif: Gatorade
290 mL per day of Gatorade for 7 days
Beverage to be consumed

Que mesure l'étude ?

Principaux critères de jugement

Mesure des résultats
Description de la mesure
Délai
Time time performance
Délai: Day 5 of beverage consumption
Time to complete 10 km of cycling
Day 5 of beverage consumption

Mesures de résultats secondaires

Mesure des résultats
Description de la mesure
Délai
Fat oxidation
Délai: Day 5 of beverage consumption
Fat oxidation determined from gas analysis
Day 5 of beverage consumption
Carbohydrate oxidation
Délai: Day 5 of beverage consumption
Carbohydrate oxidation determined from gas analysis
Day 5 of beverage consumption
Blood pressure
Délai: Day 5 of beverage consumption
Blood pressure assessed by continuous blood pressure monitor
Day 5 of beverage consumption
Muscle pain
Délai: Change from baseline to before, and immediately, 24 hours, and 48 hours after exercise
Muscle pain determined by a visual analog scale (participant marks a scale from 0 to 100 mm. A score of 0 mm is "no pain". A score of 100 mm is maximal pain).
Change from baseline to before, and immediately, 24 hours, and 48 hours after exercise
Quadriceps strength
Délai: Change from baseline to before, and immediately, 24 hours, and 48 hours after exercise
Knee extensor strength determined by isometric contraction
Change from baseline to before, and immediately, 24 hours, and 48 hours after exercise
Low frequency fatigue
Délai: Change from baseline to before, immediately, 24 hours, and 48 hours after exercise
Measured by force production at low and high stimulation frequencies as an index of muscle damage
Change from baseline to before, immediately, 24 hours, and 48 hours after exercise

Collaborateurs et enquêteurs

C'est ici que vous trouverez les personnes et les organisations impliquées dans cette étude.

Dates d'enregistrement des études

Ces dates suivent la progression des dossiers d'étude et des soumissions de résultats sommaires à ClinicalTrials.gov. Les dossiers d'étude et les résultats rapportés sont examinés par la Bibliothèque nationale de médecine (NLM) pour s'assurer qu'ils répondent à des normes de contrôle de qualité spécifiques avant d'être publiés sur le site Web public.

Dates principales de l'étude

Début de l'étude (Réel)

1 octobre 2017

Achèvement primaire (Réel)

30 mars 2018

Achèvement de l'étude (Réel)

30 avril 2018

Dates d'inscription aux études

Première soumission

13 octobre 2017

Première soumission répondant aux critères de contrôle qualité

13 octobre 2017

Première publication (Réel)

18 octobre 2017

Mises à jour des dossiers d'étude

Dernière mise à jour publiée (Réel)

28 juin 2018

Dernière mise à jour soumise répondant aux critères de contrôle qualité

27 juin 2018

Dernière vérification

1 juin 2018

Plus d'information

Termes liés à cette étude

Autres numéros d'identification d'étude

  • 16-273

Plan pour les données individuelles des participants (IPD)

Prévoyez-vous de partager les données individuelles des participants (DPI) ?

NON

Informations sur les médicaments et les dispositifs, documents d'étude

Étudie un produit pharmaceutique réglementé par la FDA américaine

Non

Étudie un produit d'appareil réglementé par la FDA américaine

Non

Ces informations ont été extraites directement du site Web clinicaltrials.gov sans aucune modification. Si vous avez des demandes de modification, de suppression ou de mise à jour des détails de votre étude, veuillez contacter register@clinicaltrials.gov. Dès qu'un changement est mis en œuvre sur clinicaltrials.gov, il sera également mis à jour automatiquement sur notre site Web .

S'abonner