Kato Hiroyuki, Suzuki Hiromi, Inoue Yoshiko, Takimoto Tetsuya, Suzuki Katsuya, Kobayashi Hisamine
Frontier Research Laboratories, Institute for Innovation, Ajinomoto Co., Inc, Kawasaki, Kanagawa Japan.
Springerplus. 2016 Aug 9;5(1):1299. doi: 10.1186/s40064-016-2736-x. eCollection 2016.
Strenuous exercise following overnight fasting increases fat oxidation during exercise, which can modulate training adaptation. However, such exercise induces muscle protein catabolism by decreasing blood insulin concentrations and increasing amino acid oxidation during the exercise. Leucine-enriched essential amino acids (LEAAs) enhance muscle protein synthesis (MPS) at rest and after exercise. However, it remains to be clarified if the co-ingestion of carbohydrate with LEAAs induces an additional increase in MPS, particularly in a hypoinsulinemic state induced by strenuous exercise. Eight-week-old male Sprague-Dawley rats were made to perform strenuous jump exercise (height 35 cm, 200 jumps, 3-s intervals), after which they ingested distilled water and 1 g/kg LEAAs with or without 1 g/kg of glucose. The fractional synthesis rate was determined by measuring the incorporation of l-[ring-(2)H5]-phenylalanine into skeletal muscle protein. Immediately after the exercise, plasma insulin concentration was significantly lower than that at the basal level. Co-ingestion of glucose with LEAAs alleviated the reduction in plasma insulin concentration, while LEAA ingestion alone did not. LEAA administration with or without glucose led to a higher MPS compared with water administration (P < 0.05). However, the co-ingestion of glucose with LEAAs did not induce further increases in MPS compared with LEAA ingestion alone. Thus, the co-ingestion of glucose with LEAAs does not additionally increase MPS under a strenuous exercise-induced hypoinsulinemic state when glucose is co-ingested with a dose of LEAAs that maximally stimulates MPS.
过夜禁食后进行剧烈运动会增加运动期间的脂肪氧化,这可能会调节训练适应性。然而,这种运动会通过降低血液胰岛素浓度和增加运动期间的氨基酸氧化来诱导肌肉蛋白分解代谢。富含亮氨酸的必需氨基酸(LEAAs)可增强静息时和运动后的肌肉蛋白合成(MPS)。然而,LEAAs与碳水化合物同时摄入是否会额外增加MPS,尤其是在剧烈运动诱导的低胰岛素血症状态下,仍有待阐明。对8周龄雄性Sprague-Dawley大鼠进行剧烈跳跃运动(高度35厘米,200次跳跃,间隔3秒),之后它们摄入蒸馏水以及含或不含1克/千克葡萄糖的1克/千克LEAAs。通过测量l-[环-(2)H5]-苯丙氨酸掺入骨骼肌蛋白的情况来确定蛋白质合成率。运动后即刻,血浆胰岛素浓度显著低于基础水平。LEAAs与葡萄糖同时摄入可缓解血浆胰岛素浓度的降低,而单独摄入LEAAs则不能。与摄入水相比,无论是否添加葡萄糖,给予LEAAs均导致更高的MPS(P < 0.05)。然而,与单独摄入LEAAs相比,LEAAs与葡萄糖同时摄入并未进一步增加MPS。因此,当葡萄糖与最大程度刺激MPS的一定剂量LEAAs同时摄入时,在剧烈运动诱导的低胰岛素血症状态下,LEAAs与葡萄糖同时摄入并不会额外增加MPS。