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Resistance training and L-arginine supplementation are determinant in genomic stability, cardiac contractility and muscle mass development in rats

机译:抵抗力训练和L-精氨酸补充是决定大鼠基因组稳定性,心脏收缩力和肌肉质量发展的因素

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摘要

L-arginine supplementation has been related to increased maximum strength and improvement of hemodynamic parameters in several diseases. The aim of our study was to evaluate the effect of L-arginine supplementation and resistance training on muscle mass, hemodynamic function and DNA damage in healthy rats subjected to a low-arginine concentration diet. Twenty three Wistar rats (290-320g) were divided into 4 groups: Sedentary (SED-Arg, n = 6), Sedentary+Arg (SED+Arg, n = 6), Resistance Training (RT-Arg, n = 5), Resistance Training+Arg (RT+Arg, n = 6). Trained animals performed resistance training protocol in a squat apparatus adapted for rats (4 sets of 10–12 repetitions, 90s of interval, 4x/week, 65–75% of One Maximum Repetition, for 8 weeks). Comet assay was performed to measure DNA damage in leukocytes. The resistance training induced higher muscle mass in trained groups. The L-arginine supplementation increased both gastrocnemius and left ventricle to body mass ratio and increased left ventricle contractility without changing hemodynamic variables. The SED+Arg group showed higher concentration of extracellular heat shock protein 72 (eHSP72) and total testosterone, as well as lower uric acid concentration in blood versus SED-Arg group. The administration of isolated L-arginine supplementation and its association with resistance training promoted less damage in leukocytes DNA. In conclusion, the L-arginine supplementation showed synergistic effect with resistance training regarding leukocyte genomic stability in a low-L-arginine diet scenario.
机译:L-精氨酸的补充与几种疾病中最大强度的增加和血液动力学参数的改善有关。我们研究的目的是评估低精氨酸浓度饮食对健康大鼠补充L-精氨酸和抵抗训练对肌肉质量,血液动力学功能和DNA损伤的影响。将23只Wistar大鼠(290-320g)分为4组:久坐(SED-Arg,n = 6),久坐+ Arg(SED + Arg,n = 6),阻力训练(RT-Arg,n = 5) ,抵抗训练+精氨酸(RT + Arg,n = 6)。受过训练的动物在适合大鼠的深蹲装置中进行了阻力训练协议(4组,每组10-12次重复,间隔90s,4x /周,一次最大重复的65-75%,共8周)。进行彗星测定以测量白细胞中的DNA损伤。阻力训练在训练组中诱发更高的肌肉质量。 L-精氨酸补充剂增加了腓肠肌和左心室与体重的比例,并增加了左心室的收缩性,而没有改变血液动力学变量。与SED-Arg组相比,SED + Arg组的细胞外热休克蛋白72(eHSP72)和总睾丸激素浓度更高,血液中的尿酸浓度更低。分离的L-精氨酸补充剂的施用及其与抗性训练的联系促进了白细胞DNA损伤的减少。总之,在低L-精氨酸饮食的情况下,L-精氨酸补充剂与抗性训练在白细胞基因组稳定性方面显示出协同作用。

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