Fasted Sprint Interval Training Results in Some Beneficial Skeletal Muscle Metabolic, but Similar Metabolomic and Performance Adaptations Compared With Carbohydrate-Fed Training in Recreationally Active Male.

IF 3 3区 医学 Q2 NUTRITION & DIETETICS International journal of sport nutrition and exercise metabolism Pub Date : 2023-03-01 DOI:10.1123/ijsnem.2022-0142
Tom P Aird, Andrew J Farquharson, Kate M Bermingham, Aifric O'Sullivan, Janice E Drew, Brian P Carson
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Abstract

Endurance training in fasted conditions (FAST) induces favorable skeletal muscle metabolic adaptations compared with carbohydrate feeding (CHO), manifesting in improved exercise performance over time. Sprint interval training (SIT) is a potent metabolic stimulus, however nutritional strategies to optimize adaptations to SIT are poorly characterized. Here we investigated the efficacy of FAST versus CHO SIT (4-6 × 30-s Wingate sprints interspersed with 4-min rest) on muscle metabolic, serum metabolome and exercise performance adaptations in a double-blind parallel group design in recreationally active males. Following acute SIT, we observed exercise-induced increases in pan-acetylation and several genes associated with mitochondrial biogenesis, fatty acid oxidation, and NAD+-biosynthesis, along with favorable regulation of PDK4 (p = .004), NAMPT (p = .0013), and NNMT (p = .001) in FAST. Following 3 weeks of SIT, NRF2 (p = .029) was favorably regulated in FAST, with augmented pan-acetylation in CHO but not FAST (p = .033). SIT induced increases in maximal citrate synthase activity were evident with no effect of nutrition, while 3-hydroxyacyl-CoA dehydrogenase activity did not change. Despite no difference in the overall serum metabolome, training-induced changes in C3:1 (p = .013) and C4:1 (p = .010) which increased in FAST, and C16:1 (p = .046) and glutamine (p = .021) which increased in CHO, were different between groups. Training-induced increases in anaerobic (p = .898) and aerobic power (p = .249) were not influenced by nutrition. These findings suggest some beneficial muscle metabolic adaptations are evident in FAST versus CHO SIT following acute exercise and 3 weeks of SIT. However, this stimulus did not manifest in differential exercise performance adaptations.

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在娱乐性运动的男性中,禁食冲刺间歇训练可以产生一些有益的骨骼肌代谢,但与碳水化合物喂养训练相比,代谢组学和性能适应相似。
与碳水化合物喂养(CHO)相比,禁食条件下的耐力训练(FAST)诱导了良好的骨骼肌代谢适应,随着时间的推移表现出更好的运动表现。冲刺间歇训练(SIT)是一种有效的代谢刺激,然而,优化适应SIT的营养策略尚不清楚。本研究采用双盲平行组设计,研究了FAST与CHO SIT (4-6 × 30秒温盖特冲刺,中间穿插4分钟休息)对娱乐性运动男性肌肉代谢、血清代谢组和运动表现适应性的影响。急性SIT后,我们观察到运动诱导的泛乙酰化和与线粒体生物发生、脂肪酸氧化和NAD+生物合成相关的几个基因的增加,以及对FAST中PDK4 (p = 0.004)、NAMPT (p = 0.0013)和NNMT (p = 0.001)的有利调节。SIT治疗3周后,NRF2 (p = 0.029)在FAST中得到良好调节,CHO中泛乙酰化增强,但FAST中没有(p = 0.033)。在不受营养影响的情况下,SIT诱导的最大柠檬酸合成酶活性明显增加,而3-羟基酰基辅酶a脱氢酶活性没有变化。尽管总体血清代谢组无差异,但训练诱导的C3:1 (p = 0.013)和C4:1 (p = 0.010)在FAST中升高,以及C16:1 (p = 0.046)和谷氨酰胺(p = 0.021)在CHO中升高,在两组之间存在差异。训练引起的无氧能力(p = 0.898)和有氧能力(p = 0.249)的增加不受营养的影响。这些发现表明,在急性运动和3周的SIT后,FAST与CHO SIT中明显存在一些有益的肌肉代谢适应。然而,这种刺激并没有在不同的运动表现适应中表现出来。
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来源期刊
CiteScore
5.00
自引率
8.00%
发文量
50
审稿时长
6-12 weeks
期刊介绍: The International Journal of Sport Nutrition and Exercise Metabolism (IJSNEM) publishes original scientific investigations and scholarly reviews offering new insights into sport nutrition and exercise metabolism, as well as articles focusing on the application of the principles of biochemistry, physiology, and nutrition to sport and exercise. The journal also offers editorials, digests of related articles from other fields, research notes, and reviews of books, videos, and other media releases. To subscribe to either the print or e-version of IJSNEM, press the Subscribe or Renew button at the top of your screen.
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