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Microcirculatory effects of L-arginine during acute anaerobic exercise in healthy men: A pilot study

机译:L-精氨酸在健康男性急性无氧运动中的微循环作用:一项初步研究

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Background/Objective: We hypothesized that L-arginine supplementation increases sublingual capillary perfusion during acute anaerobic exercise. Methods: In a double-blind randomized study, 20 healthy men were randomly assigned to an L-arginine group or a placebo group. Both groups performed a standard 60-second duration BOSCO jumping test. Before the exercise, immediately after, and 30 minutes after exercise, systemic hemodynamic parameters were recorded. Sublingual evaluation of microcirculation using sidestream dark field (SDF) videomicroscopy was also carried out. Results: There were no differences in mean arterial blood pressure and cardiac output between the placebo and L-arginine groups immediately after exercise and at 30 minutes after exercise. Both groups had no changes in the microvascular flow index and proportion of perfused vessels of small vessels over the testing period. We observed significantly higher functional capillary density [14.1 (12.5 - 16.0) vs. 11.7 (10.9 - 12.9) 1/mm, p = 0.021] and total vessel density of small vessels [27.8 (24.4 - 29.2) vs. 23.0 (21.6 - 24.2) mm/mm^2, p = 0.041] in the L-arginine group compared with the placebo group immediately after exercise, but after 30 minutes these differences had disappeared. Conclusion: Our findings show that supplementation with L-arginine may cause additional effects on the acute anaerobic exercise-induced transient increase in capillary density in the sublingual mucosa of untrained men.
机译:背景/目的:我们假设补充L-精氨酸会增加急性无氧运动时舌下毛细血管的灌注。方法:在一项双盲随机研究中,将20名健康男性随机分为L-精氨酸组或安慰剂组。两组均进行了标准的60秒持续时间的BOSCO跳跃测试。运动前,运动后及运动后30分钟,均记录了全身血流动力学参数。还使用侧流暗场(SDF)显微镜对舌下微循环进行了评估。结果:运动后立即和运动后30分钟,安慰剂组和L-精氨酸组之间的平均动脉血压和心输出量无差异。在测试期间,两组的微血管流动指数和灌注小血管的比例均无变化。我们观察到功能性毛细血管密度[14.1(12.5-16.0)与11.7(10.9-12.9)1 / mm,p = 0.021]显着更高,而小血管的总血管密度[27.8(24.4-29.2)与23.0(21.6-运动后立即与安慰剂组相比,L-精氨酸组为24.2)mm / mm ^ 2,p = 0.041],但30分钟后这些差异消失了。结论:我们的研究结果表明,补充L-精氨酸可能对急性无氧运动引起的未经训练的男性舌下黏膜毛细血管密度的瞬时增加产生额外的影响。

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