Key result
Sprint interval training with concurrent beetroot juice supplementation improved V̇o2peak and time to task failure to a greater extent than training alone or with potassium nitrate (P < 0.05).
Why the study?
Does concurrent dietary nitrate supplementation (beetroot juice or potassium nitrate) improve physiological and performance adaptations to 4-week sprint interval training in recreationally active subjects?
RCT (n=30)
Does concurrent dietary nitrate supplementation (beetroot juice or potassium nitrate) improve physiological and performance adaptations to 4-week sprint interval training in recreationally active subjects?
p-value: p=< 0.05
Supplementation with nitrate-rich beetroot juice, but not potassium nitrate, enhances physiological and performance adaptations to 4-week sprint interval training compared to training alone.
Beetroot juice may enhance sprint interval training adaptations; hypothesis-generating for nitrate source effects before practice change.
The physiological and exercise performance adaptations to sprint interval training (SIT) may be modified by dietary nitrate ([Formula: see text]) supplementation. However, it is possible that different types of [Formula: see text] supplementation evoke divergent physiological and performance adaptations to SIT. The purpose of this study was to compare the effects of 4-wk SIT with and without concurrent dietary [Formula: see text] supplementation administered as either [Formula: see text]-rich beetroot juice (BR) or potassium [Formula: see text] (KNO3). Thirty recreationally active subjects completed a battery of exercise tests before and after a 4-wk intervention in which they were allocated to one of three groups: 1) SIT undertaken without dietary [Formula: see text] supplementation (SIT); 2) SIT accompanied by concurrent BR supplementation (SIT + BR); or 3) SIT accompanied by concurrent KNO3 supplementation (SIT + KNO3). During severe-intensity exercise, V̇o2peak and time to task failure were improved to a greater extent with SIT + BR than SIT and SIT + KNO3 ( P < 0.05). There was also a greater reduction in the accumulation of muscle lactate at 3 min of severe-intensity exercise in SIT + BR compared with SIT + KNO3 ( P < 0.05). Plasma [Formula: see text] concentration fell to a greater extent during severe-intensity exercise in SIT + BR compared with SIT and SIT + KNO3 ( P < 0.05). There were no differences between groups in the reduction in the muscle phosphocreatine recovery time constant from pre- to postintervention ( P > 0.05). These findings indicate that 4-wk SIT with concurrent BR supplementation results in greater exercise capacity adaptations compared with SIT alone and SIT with concurrent KNO3 supplementation. This may be the result of greater NO-mediated signaling in SIT + BR compared with SIT + KNO3. NEW & NOTEWORTHY We compared the influence of different forms of dietary nitrate supplementation on the physiological and performance adaptations to sprint interval training (SIT). Compared with SIT alone, supplementation with nitrate-rich beetroot juice, but not potassium [Formula: see text], enhanced some physiological adaptations to training.
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Thompson et al. (2018) conducted an RCT in Recreationally active (n=30). Nitrate-rich beetroot juice (BR) vs. Sprint interval training (SIT) alone or SIT + potassium nitrate (KNO3) was evaluated on V̇o2peak and time to task failure during severe-intensity exercise (p=< 0.05). Sprint interval training with concurrent beetroot juice supplementation improved V̇o2peak and time to task failure to a greater extent than training alone or with potassium nitrate (P < 0.05).
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