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Independent and Combined Effects of All-Out Sprint and Low-Intensity Continuous Exercise on Plasma Oxidative Stress Biomarkers in Trained Judokas

机译:全力冲刺和低强度连续运动对受训柔道运动员血浆氧化应激生物标志物的独立和联合作用

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摘要

The purpose of this study was to assess oxidative stress biomarkers prior to and following different forms of exercise. Ten elite male judokas (age: 18.1 ± 1.7 years, athletic experience: 6 years with a training frequency of 6 Judo-sessions/week) performed three cycle ergometry sessions comprising a 30 s Wingate test (MAX), 30 min at 60% maximal-aerobic-power-output (LOW) or these two exercise protocols combined (COMBINED) in a repeated-measures design. Venous blood-samples were collected before, and 0(P0), 5(P5), 10(P10) and 20(P20) min after each exercise protocol and assessed for malondialdehyde concentration ([MDA]), glutathione peroxidase (GPX), superoxide dismutase (SOD) and glutathione reductase (GR) content, and total-antioxidant-status (TAS). Plasma [MDA] was found to be increased above baseline at P0 and P5 in the MAX, LOW and COMBINED conditions (p < 0.05), but was greater at P10 and P20 in the LOW condition compared to MAX and COMBINED conditions (p < 0.05). Blood GPX and SOD content increased above baseline at P0 in MAX and COMBINED and at P5 in LOW (p < 0.05), with GR content being similar between groups at P0 and P5 (p > 0.05). 20 min post-exercise, GPX, SOD, GR content and TAS were lower in the MAX compared to the LOW and COMBINED conditions (p < 0.05). In conclusion, the findings from this study reveal that redox-related biomarkers exhibited divergent response dynamics following different forms of exercise, which might have implications for understanding the mechanisms of exercise-induced skeletal muscle fatigue and adaptive remodeling.
机译:这项研究的目的是评估不同形式的运动之前和之后的氧化应激生物标志物。十名精英男性柔道运动员(年龄:18.1±1.7岁,运动经验:6年,每周训练频率为6次柔道训练)进行了三个周期的测功,包括30 s Wingate测试(MAX),最长30分钟,最大60% -有氧运动输出(LOW)或这两种锻炼方案在重复测量设计中组合在一起(COMBINED)。在每次运动方案之前,之后0(P0),5(P5),10(P10)和20(P20)分钟收集静脉血样,并评估丙二醛浓度([MDA]),谷胱甘肽过氧化物酶(GPX),超氧化物歧化酶(SOD)和谷胱甘肽还原酶(GR)含量以及总抗氧化剂状态(TAS)。在MAX,LOW和COMBINED条件下,血浆[MDA]在P0和P5处高于基线(p <0.05),但在LOW,P10和P20 LOW条件下与MAX和COMBINED条件下相比,血浆[MDA]高于基线(p <0.05) )。血液中GPX和SOD含量在MAX和COMBINED的P0处以及在LOW的P5处均高于基线(p <0.05),而在P0和P5时两组之间的GR含量相似(p> 0.05)。运动后20分钟,MAX的GPX,SOD,GR含量和TAS低于LOW和COMBINED条件(p <0.05)。总之,这项研究的结果表明,氧化还原相关的生物标志物在不同形式的运动后表现出不同的反应动力学,这可能对理解运动引起的骨骼肌疲劳和适应性重塑的机制有影响。

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