首页> 外文期刊>Revista Brasileira de Medicina do Esporte >Efeitos da suplementa??o aguda de aspartato de arginina na fadiga muscular em voluntários treinados
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Efeitos da suplementa??o aguda de aspartato de arginina na fadiga muscular em voluntários treinados

机译:补充精氨酸天冬氨酸对训练有素的志愿者的肌肉疲劳的影响

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The physical activity influences specific mechanisms responsible by a reduction in the power production, and consequently on the fatigue. It has been proposed premises to improve the physical performance, and we observed that some studies have been focused on the reduction of the metabolites that decrease the fatigue on intense physical exercising, using aminoacids known for their properties to induce to metabolic changes, and among these, it is the arginine. The present study had the purpose to study the effects of the acute arginine aspartate supplement in trained healthy individuals submitted to an exhaustion protocol on ergonomic bicycle. Twelve 22.6 ± 3.5 years old trained individuals were used in the research. After taking a single dose of arginine aspartate or a placebo solution, they performed three 90 minute test on an ergonomic bicycle to which load increments were added up to reaching the exhaustion. The blood samples were obtained through biochemical analysis, such as: creatinine, urea, glycosis, and lactate. It was found no statistical differences upon the comparison of the Maximal Heart Rate, Maximal Time and Load, and also comparing to the previous and later results on the urea, creatinine and glycosis tests. The lactate concentrations (mmol/l) presented statistical differences compared to the pre-test values (Control: 2.2 ± 0.14; Arginine: 2.43 ± 0.23; Placebo: 2.26 ± 0.11) to the post-test values (Control 10.35 ± 0.57; Arginine: 12.07 ± 0.88; Placebo: 12.2 ± 0.96), p < 0.001. The main results found in this study indicate that the acute administration of the arginine aspartate did not show effective to increase the fatigue tolerance in the individuals evaluated and treated in the incremental test protocol up to the exhaustion. Thus, it can be concluded that the dosage used was not able to increase the muscular fatigue tolerance.
机译:身体活动会影响特定的机制,从而降低功率产生,进而降低疲劳。已经提出了改善身体机能的前提,并且我们观察到一些研究集中在减少代谢物上,这些代谢物减少剧烈运动后的疲劳,使用以其特性为人所知的氨基酸来诱导代谢变化,其中包括,它是精氨酸。本研究的目的是研究急性精氨酸天冬氨酸补充剂对人体工学自行车上的精疲力竭的健康个体的影响。在研究中使用了12位22.6±3.5岁受过训练的人员。服用单剂量的精氨酸天冬氨酸盐或安慰剂溶液后,他们在符合人体工学的自行车上进行了三个90分钟的测试,并在其中增加了负荷增量以达到疲劳状态。血液样本是通过生化分析获得的,例如:肌酐,尿素,糖酵解和乳酸。比较最大心率,最大时间和负荷,以及尿素,肌酐和糖酵解试验的前后结果,在统计上均无统计学差异。乳酸浓度(mmol / l)与测试前值(对照:2.2±0.14;精氨酸:2.43±0.23;安慰剂:2.26±0.11)相较于测试后值(对照10.35±0.57;精氨酸)具有统计学差异:12.07±0.88;安慰剂:12.2±0.96),p <0.001。在这项研究中发现的主要结果表明,精氨酸天冬氨酸的急性给药并未显示出有效的增加疲劳试验耐受性的能力,这些个体在递增试验方案中进行了评估和治疗,直至疲惫。因此,可以得出结论,所使用的剂量不能增加肌肉疲劳耐受性。

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