The effects of an acute "train-low" nutritional protocol on markers of recovery optimization in endurance-trained male athletes
(Die Auswirkungen eines akuten "Train-Low"-Ernährungsprotokolls auf Marker der Erholungsoptimierung bei ausdauertrainierten männlichen Athleten)
Purpose:
This study aimed to determine the effects of an acute "train-low" nutritional protocol on markers of recovery optimization compared to standard recovery nutrition protocol.
Methods:
After completing a 2-hour high-intensity interval running protocol, 8 male endurance athletes consumed a standard dairy milk recovery beverage (CHO; 1.2 g/kg body mass [BM] of carbohydrate and 0.4 g/kg BM of protein) and a low-carbohydrate (L-CHO; isovolumetric with 0.35 g/kg BM of carbohydrate and 0.5 g/kg BM of protein) dairy milk beverage in a double-blind randomized crossover design. Venous blood and breath samples, nude BM, body water, and gastrointestinal symptom measurements were collected preexercise and during recovery. Muscle biopsy was performed at 0 hour and 2 hours of recovery. Participants returned to the laboratory the following morning to measure energy substrate oxidation and perform a 1-hour distance test.
Results:
The exercise protocol resulted in depletion of muscle glycogen stores (250 mmol/kg dry weight) and mild body-water losses (BM loss = 1.8%). Neither recovery beverage replenished muscle glycogen stores (279 mmol/kg dry weight) or prevented a decrease in bacterially stimulated neutrophil function (-21%). Both recovery beverages increased phosphorylation of mTORSer2448 (main effect of time = P < .001) and returned hydration status to baseline. A greater fold increase in p-GSK-3ßSer9/total-GSK-3ß occurred on CHO (P = .012). Blood glucose (P = .005) and insulin (P = .012) responses were significantly greater on CHO (618 mmol/L per 2 h and 3507 µIU/mL per 2 h, respectively) compared to L-CHO (559 mmol/L per 2 h and 1147 µIU/mL per 2 h, respectively). Rates of total fat oxidation were greater on CHO, but performance was not affected.
Conclusion:
A lower-carbohydrate recovery beverage consumed after exercise in a "train-low" nutritional protocol does not negatively impact recovery optimization outcomes.
© Copyright 2021 International Journal of Sports Physiology and Performance. Alle Rechte vorbehalten.
| Schlagworte: | |
|---|---|
| Notationen: | Biowissenschaften und Sportmedizin Ausdauersportarten |
| Tagging: | Glykogen |
| Veröffentlicht in: | International Journal of Sports Physiology and Performance |
| Sprache: | Englisch |
| Veröffentlicht: |
2021
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| Online-Zugang: | https://doi.org/10.1123/ijspp.2020-0847 |
| Jahrgang: | 16 |
| Heft: | 12 |
| Seiten: | 1764-1776 |
| Dokumentenarten: | Artikel |
| Level: | hoch |