Matsumoto K, Mizuno M, Mizuno T, Dilling-Hansen B, Lahoz A, Bertelsen V, Münster H, Jordening H, Hamada K, Doi T
Saga Nutraceuticals Research Institute, Otsuka Pharmaceutical Co. Ltd., Yoshinogari, Kanzaki, Saga 842-0195, Japan.
Int J Sports Med. 2007 Jun;28(6):531-8. doi: 10.1055/s-2007-964940. Epub 2007 May 11.
This study aimed at evaluating the effect of a single oral intake of branched-chain amino acids (BCAA) with Arg on skeletal muscle protein metabolism during moderate exercise in young individuals. Eight healthy volunteers (4 males and 4 females, means +/- SEM, 26 +/- 1 yrs, 177.8 +/- 3.7 cm, 72.6 +/- 3.9 kg) were studied in a randomized double-blind placebo-controlled cross-over trial. The subjects performed 3 bouts of 20-min cycling exercise (5-min break between each bout) at 126 +/- 13 W corresponding to 50 % of the maximal work intensity. A single oral supplement of either a BCAA drink containing 2 g of BCAA and 0.5 g of Arg or an isocaloric placebo drink was given at 10 min of the 1st exercise bout. Both arterial and venous blood samples were simultaneously taken from the radial artery and the femoral vein, respectively. Blood flow in the femoral artery was determined using the ultrasound Doppler technique. The blood sampling and blood flow measurements were performed at rest, every 10 min during each exercise bout. Net balance of BCAA and Phe across the leg muscles were measured by the arteriovenous difference method. The BCAA ingestion resulted in increases in both the plasma BCAA concentration and BCAA uptake into the working leg. The Phe release from the leg during exercise significantly increased as compared to the basal level in the placebo trial (0.97 +/- 0.28 vs. 0.23 +/- 0.22 micromol/min, p < 0.05). In the BCAA trial, the cumulative Phe release from the leg during the 3rd exercise bout was significantly lower than that in the placebo trial (5.0 +/- 7.4 vs. 35.9 +/- 13.2 micromol/25 min, p < 0.05). These results suggest that endurance exercise at moderate intensity enhances proteolysis in working muscles, and a single oral intake of 2 g of BCAA with Arg at onset of exercise effectively suppresses exercise-induced skeletal muscle proteolysis.
本研究旨在评估年轻个体在中等强度运动期间单次口服支链氨基酸(BCAA)与精氨酸(Arg)对骨骼肌蛋白质代谢的影响。在一项随机双盲安慰剂对照交叉试验中,对8名健康志愿者(4名男性和4名女性,均值±标准误,26±1岁,身高177.8±3.7厘米,体重72.6±3.9千克)进行了研究。受试者以126±13瓦的功率进行3组20分钟的骑行运动(每组之间休息5分钟),该功率相当于最大工作强度的50%。在第一次运动组的第10分钟,给予单次口服补充剂,要么是含有2克BCAA和0.5克Arg的BCAA饮料,要么是等热量的安慰剂饮料。分别同时从桡动脉和股静脉采集动脉血和静脉血样本。使用超声多普勒技术测定股动脉中的血流量。在静息状态下以及每次运动组的每10分钟进行一次血液采样和血流量测量。通过动静脉差值法测量腿部肌肉中BCAA和苯丙氨酸(Phe)的净平衡。摄入BCAA导致血浆BCAA浓度升高以及工作腿部对BCAA的摄取增加。与安慰剂试验中的基础水平相比,运动期间腿部Phe的释放显著增加(0.97±0.28对0.23±0.22微摩尔/分钟,p<0.05)。在BCAA试验中,第三次运动组期间腿部累积Phe释放量显著低于安慰剂试验(5.0±7.4对35.9±13.2微摩尔/25分钟,p<0.05)。这些结果表明,中等强度的耐力运动可增强工作肌肉中的蛋白水解作用,并且在运动开始时单次口服2克BCAA与Arg可有效抑制运动诱导的骨骼肌蛋白水解。