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膳食硝酸盐补充对超最大强度间歇运动耐受性的影响。

Effect of dietary nitrate supplementation on tolerance to supramaximal intensity intermittent exercise.

作者信息

Aucouturier Julien, Boissière Julien, Pawlak-Chaouch Mehdi, Cuvelier Grégory, Gamelin François-Xavier

机构信息

Université Droit et Santé Lille 2, EA7369 Unité de Recherche Pluridisciplinaire Sport, Santé, Société (URePSSS), Equipe "Activité Physique, Muscle, Santé", Faculté des Sciences du Sport et de l'Education Physique, 59790 Ronchin, France.

Université Droit et Santé Lille 2, EA7369 Unité de Recherche Pluridisciplinaire Sport, Santé, Société (URePSSS), Equipe "Activité Physique, Muscle, Santé", Faculté des Sciences du Sport et de l'Education Physique, 59790 Ronchin, France.

出版信息

Nitric Oxide. 2015 Sep 15;49:16-25. doi: 10.1016/j.niox.2015.05.004. Epub 2015 May 29.

Abstract

Dietary nitrate (NO3(-)) supplementation has been shown to increase exercise tolerance and improve oxidative efficiency during aerobic exercise in healthy subjects. We tested the hypothesis that a 3-day supplementation in beetroot juice (BJ) rich in NO3(-) would improve the tolerance to supramaximal intensity intermittent exercise consisting of 15-s exercise periods at 170% of the maximal aerobic power interspersed with 30-s passive recovery periods. The number of repetitions completed before reaching volitional exhaustion was significantly higher in the BJ than in the placebo condition (26.1 ± 10.7 versus 21.8 ± 8.0 respectively, P < 0.05). In contrast to previous findings during exercise performed at intensity below the peak oxygen uptake (VO2peak), oxygen uptake (VO2) was unaffected (BJ: 2735 ± 345 mL kg(-1) min(-1) vs. placebo: 2787 ± 346 mL kg(-1) min(-1), NS). However, the Area Under the Curve for microvascular total hemoglobin (AUC-THb) in the vastus lateralis muscle assessed by near infrared spectroscopy during 3 time-matched repetitions was significantly increased with NO3(-) supplementation (BJ: 9662 ± 1228 a.u. vs. placebo:8178 ± 1589 a.u.; P < 0.05). Thus, increased NO3(-) (BJ: 421.5 ± 107.4 μM vs placebo:39.4 ± 18.0 μM) and NO2(-) (BJ: 441 ± 184 nM vs placebo: 212 ± 119 nM) plasma levels (P < 0.001 for both) are associated with improved muscle microvascular Red Blood Cell (RBC) concentration and O2 delivery during intense exercise, despite no effect on resting femoral artery blood flow, and vascular conductance. Maximal voluntary force during an isometric leg extensor exercise, and blood lactate levels were also unaffected by NO3(-) supplementation. To conclude, dietary NO3(-) supplementation enhances tolerance to exercise at supramaximal intensity, with increased microvascular total RBC concentration in the working muscle, in the absence of effect on contractile function and resting hemodynamic parameters.

摘要

膳食硝酸盐(NO3(-))补充已被证明可提高健康受试者有氧运动期间的运动耐力并改善氧化效率。我们检验了以下假设:连续3天补充富含NO3(-)的甜菜根汁(BJ)可提高对由15秒运动期(强度为最大有氧功率的170%)与30秒被动恢复期交替组成的超最大强度间歇运动的耐受性。在达到自愿性疲劳前完成的重复次数,BJ组显著高于安慰剂组(分别为26.1±10.7次和21.8±8.0次,P<0.05)。与先前在低于峰值摄氧量(VO2peak)强度下运动时的研究结果不同,摄氧量(VO2)未受影响(BJ组:2735±345 mL·kg(-1)·min(-1) 对比安慰剂组:2787±346 mL·kg(-1)·min(-1),无显著性差异)。然而,在3次时间匹配的重复运动期间,通过近红外光谱法评估的股外侧肌微血管总血红蛋白曲线下面积(AUC-THb)在补充NO3(-)后显著增加(BJ组:9662±1228任意单位 对比安慰剂组:8178±1589任意单位;P<0.05)。因此,血浆中NO3(-)(BJ组:421.5±107.4 μM 对比安慰剂组:39.4±18.0 μM)和NO2(-)(BJ组:441±184 nM 对比安慰剂组:212±119 nM)水平升高(两者P<0.001)与高强度运动期间肌肉微血管红细胞(RBC)浓度和氧气输送改善相关,尽管对静息股动脉血流量和血管传导无影响。等长腿部伸展运动期间的最大随意力量和血乳酸水平也不受NO3(-)补充的影响。总之,膳食补充NO3(-)可增强对超最大强度运动的耐受性,同时工作肌肉中的微血管总RBC浓度增加,且对收缩功能和静息血流动力学参数无影响。

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