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首页> 外文期刊>Clinical chemistry and laboratory medicine: CCLM >Antioxidant and oligonutrient status, distribution of amino acids, muscle damage, inflammation, and evaluation of renal function in elite rugby players
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Antioxidant and oligonutrient status, distribution of amino acids, muscle damage, inflammation, and evaluation of renal function in elite rugby players

机译:精英橄榄球运动员的抗氧化剂和低营养素状态,氨基酸分布,肌肉损伤,炎症和肾功能评估

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Background: Our study investigated the biochemical and anthropometric characteristics in elite athletes of rugby union based in the south of France during the different periods of the competition to identify metabolic and biochemical adaptations to particular lifestyle conditions. Methods: Participants included 35 players in 2008 and 43 players in 2009. Biochemical variables [creatinine, uric acid, creatine kinase (CK), alanine aminotransferase, aspartate aminotransferase, C-reactive protein] were evaluated. Specific protein levels (albumin, acid α-glycoprotein, prealbumin), vitamins (A, E, C), antioxidant enzymes [glutathione peroxidase (GPx), superoxide dismutase (SOD)], oligoelements (Zn, Se, Cu, erythrocyte magnesium), homocysteine (Hcy), carnitine and the distribution of amino acids were specifically determined for our study during a pre-competition period (September 2008 and 2009). Results: Globally, no deficit was observed for vitamins, oligonutrients and amino acids levels. The high SOD and GPx activities in rugby players suggest a presence of oxidative stress of exercise. The evaluation of renal function should be used with caution because of the interaction between creatinine and lean body mass. In addition, a profound effect of intense exercise on the CK values was reported to establish specific reference values for athletes. The analysis of the biological variation allows optimization of the interpretation of the changes from an increased or decreased baseline value from a season to the other one. Conclusions: The conclusions of present study were: 1) the necessity of rugby-specific reference intervals for CK and creatinine parameters; 2) the use of enzymatic creatinine for Modification of Diet in Renal Disease (MDRD) and CKDEPI, or cystatin C to improve glomerular filtration rate estimation; 3) to take into account the oxidative stress testifying of a bad recovery; and 4) better to take care the nutritional status of the players by adapting needs and amino acids supplementations but also to consider a follow-up of oxidative stress and antioxidants according our results.
机译:背景:我们的研究调查了法国南部橄榄球联合会的精英运动员在比赛的不同时期的生化和人体测量学特征,以确定代谢和生化适应特定生活方式的条件。方法:参与者包括2008年的35名参与者和2009年的43名参与者。评估了其生化变量[肌酐,尿酸,肌酸激酶(CK),丙氨酸转氨酶,天冬氨酸转氨酶,C反应蛋白]。特定蛋白质水平(白蛋白,酸性α-糖蛋白,白蛋白),维生素(A,E,C),抗氧化酶[谷胱甘肽过氧化物酶(GPx),超氧化物歧化酶(SOD)],寡元素(锌,硒,铜,红细胞镁) ,高半胱氨酸(Hcy),肉碱和氨基酸的分布是专门为我们的研究在竞争前期(2008年9月和2009年)确定的。结果:在全球范围内,未观察到维生素,低营养素和氨基酸水平的不足。橄榄球运动员的高SOD和GPx活性表明运动中存在氧化应激。由于肌酐和瘦体重之间的相互作用,应谨慎使用肾功能评估。另外,据报道,剧烈运动对CK值具有深远的影响,可为运动员建立具体的参考值。对生物变异的分析可以优化从一个季节到另一个季节从基线值的增加或减少的变化的解释。结论:本研究的结论是:1)CK和肌酐参数必须有橄榄球特异性参考区间。 2)使用酶性肌酐改变肾脏疾病饮食(MDRD)和CKDEPI或胱抑素C以改善肾小球滤过率的估计; 3)考虑到证明恢复不良的氧化应激;和4)通过适应需求和氨基酸补充来更好地照顾运动员的营养状况,而且还要根据我们的结果考虑对氧化应激和抗氧化剂进行跟进。

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