Pre-Exercise Carbohydrate Or Protein Ingestion Influences Substrate Oxidation But Not Performance Or Hunger Compared With Cycling In The Fasted State

NUTRIENTS(2021)

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摘要
Nutritional intake can influence exercise metabolism and performance, but there is a lack of research comparing protein-rich pre-exercise meals with endurance exercise performed both in the fasted state and following a carbohydrate-rich breakfast. The purpose of this study was to determine the effects of three pre-exercise nutrition strategies on metabolism and exercise capacity during cycling. On three occasions, seventeen trained male cyclists (VO2peak 62.2 +/- 5.8 mL center dot kg(-1)center dot min(-1), 31.2 +/- 12.4 years, 74.8 +/- 9.6 kg) performed twenty minutes of submaximal cycling (4 x 5 min stages at 60%, 80%, and 100% of ventilatory threshold (VT), and 20% of the difference between power at the VT and peak power), followed by 3 x 3 min intervals at 80% peak aerobic power and 3 x 3 min intervals at maximal effort, 30 min after consuming a carbohydrate-rich meal (CARB; 1 g/kg CHO), a protein-rich meal (PROTEIN; 0.45 g/kg protein + 0.24 g/kg fat), or water (FASTED), in a randomized and counter-balanced order. Fat oxidation was lower for CARB compared with FASTED at and below the VT, and compared with PROTEIN at 60% VT. There were no differences between trials for average power during high-intensity intervals (367 +/- 51 W, p = 0.516). Oxidative stress (F-2-Isoprostanes), perceived exertion, and hunger were not different between trials. Overall, exercising in the overnight-fasted state increased fat oxidation during submaximal exercise compared with exercise following a CHO-rich breakfast, and pre-exercise protein ingestion allowed similarly high levels of fat oxidation. There were no differences in perceived exertion, hunger, or performance, and we provide novel data showing no influence of pre-exercise nutrition ingestion on exercise-induced oxidative stress.
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关键词
nutrition, exercise, fat oxidation, oxidative stress, isoprostanes
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