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酮酯摄入改变职业运动员的代谢和模拟橄榄球表现。

Ketone Monoester Ingestion Alters Metabolism and Simulated Rugby Performance in Professional Players.

机构信息

Department for Health, University of Bath, Bath,United Kingdom.

Centre for Nutrition, Exercise and Metabolism, University of Bath, Bath,United Kingdom.

出版信息

Int J Sport Nutr Exerc Metab. 2022 Apr 29;32(5):334-341. doi: 10.1123/ijsnem.2021-0346. Print 2022 Sep 1.

Abstract

Ketone ingestion can alter metabolism but effects on exercise performance are unclear, particularly with regard to the impact on intermittent-intensity exercise and team-sport performance. Nine professional male rugby union players each completed two trials in a double-blind, randomized, crossover design. Participants ingested either 90 ± 9 g carbohydrate (CHO; 9% solution) or an energy matched solution containing 20 ± 2 g CHO (3% solution) and 590 mg/kg body mass β-hydroxybutyrate monoester (CHO + BHB-ME) before and during a simulated rugby union-specific match-play protocol, including repeated high-intensity, sprint and power-based performance tests. Mean time to complete the sustained high-intensity performance tests was reduced by 0.33 ± 0.41 s (2.1%) with CHO + BHB-ME (15.53 ± 0.52 s) compared with CHO (15.86 ± 0.80 s) placebo (p = .04). Mean time to complete the sprint and power-based performance tests were not different between trials. CHO + BHB-ME resulted in blood BHB concentrations that remained >2 mmol/L during exercise (p < .001). Serum lactate and glycerol concentrations were lower after CHO + BHB-ME than CHO (p < .05). Coingestion of a BHB-ME with CHO can alter fuel metabolism (attenuate circulating lactate and glycerol concentrations) and may improve high-intensity running performance during a simulated rugby match-play protocol, without improving shorter duration sprint and power-based efforts.

摘要

酮体摄入可以改变代谢,但对运动表现的影响尚不清楚,特别是对间歇性高强度运动和团队运动表现的影响。9 名职业男性橄榄球联盟运动员在双盲、随机、交叉设计中每人完成了两次试验。参与者在模拟橄榄球联盟特定比赛协议之前和期间摄入 90 ± 9 g 碳水化合物(CHO;9%溶液)或能量匹配的溶液,其中含有 20 ± 2 g CHO(3%溶液)和 590 mg/kg 体重 β-羟基丁酸单酯(CHO + BHB-ME)。重复高强度、冲刺和基于力量的性能测试。与 CHO 安慰剂(15.86 ± 0.80 s)相比,CHO + BHB-ME(15.53 ± 0.52 s)可使持续高强度性能测试的完成时间平均缩短 0.33 ± 0.41 s(2.1%)(p =.04)。试验之间冲刺和基于力量的性能测试的完成时间没有差异。CHO + BHB-ME 导致运动期间血液 BHB 浓度保持在 >2 mmol/L (p <.001)。CHO + BHB-ME 后血清乳酸和甘油浓度低于 CHO(p <.05)。CHO 与 BHB-ME 共摄入可以改变燃料代谢(降低循环乳酸和甘油浓度),并可能改善模拟橄榄球比赛协议期间的高强度跑步表现,而不会改善更短持续时间的冲刺和基于力量的努力。

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