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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Citrulline malate supplementation increases muscle efficiency in rat skeletal muscle.
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Citrulline malate supplementation increases muscle efficiency in rat skeletal muscle.

机译:苹果酸瓜氨酸补充剂可增加大鼠骨骼肌的肌肉效率。

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摘要

Citrulline malate (CM; CAS 54940-97-5, Stimol(R)) is known to limit the deleterious effect of asthenic state on muscle function, but its effect under healthy condition remains poorly documented. The aim of this longitudinal double-blind study was to investigate the effect of oral ingestion of CM on muscle mechanical performance and bioenergetics in normal rat. Gastrocnemius muscle function was investigated strictly non-invasively using nuclear magnetic resonance techniques. A standardized rest-stimulation- (5.7 min of repeated isometric contractions electrically induced by transcutaneous stimulation at a frequency of 3.3 Hz) recovery-protocol was performed twice, i.e., before (t(0)-24 h) and after (t(0)+48 h) CM (3 g/kg/day) or vehicle treatment. CM supplementation did not affect PCr/ATP ratio, [PCr], [Pi], [ATP] and intracellular pH at rest. During the stimulation period, it lead to a 23% enhancement of specific force production that was associated to significant decrease in both PCr (28%) and oxidative (32%) costs of contraction, but had no effect on the time-courses of phosphorylated compounds and intracellular pH. Furthermore, both the rate of PCr resynthesis during the post-stimulation period (VPCr(rec)) and the oxidative ATP synthesis capacity (Q(max)) remained unaffected by CM treatment. These data demonstrate that CM supplementation under healthy condition has an ergogenic effect associated to an improvement of muscular contraction efficiency.
机译:已知苹果酸瓜氨酸(CM; CAS 54940-97-5,Stimol)限制了软弱状态对肌肉功能的有害作用,但是在健康条件下其作用的文献报道仍然很少。这项纵向双盲研究的目的是研究口服CM摄入对正常大鼠肌肉机械性能和生物能的影响。使用核磁共振技术严格无创地检查腓肠肌的功能。进行两次标准化的静息刺激((经3.3 Hz频率经皮刺激电诱导的5.7分钟重复等距收缩)恢复协议,即,在(t(0)-24 h)之前和之后(t(0 )+48小时)CM(3 g / kg /天)或载体处理。补充CM不影响PCr / ATP比,[PCr],[Pi],[ATP]和静止时的细胞内pH。在刺激期间,它导致比力产生增加23%,这与收缩率PCr(28%)和氧化性(32%)显着降低有关,但对磷酸化的时间过程没有影响化合物和细胞内pH。此外,在刺激后阶段PCr的再合成速率(VPCr(rec))和氧化ATP合成能力(Q(max))均不受CM处理的影响。这些数据表明,在健康条件下补充CM具有与改善肌肉收缩效率相关的人体工程学作用。

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