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首页> 外文期刊>Muscle and Nerve >Exercise training enhances the skeletal muscle response to radiation-induced oxidative stress.
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Exercise training enhances the skeletal muscle response to radiation-induced oxidative stress.

机译:运动训练可增强骨骼肌对辐射诱发的氧化应激的反应。

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摘要

Overproduction of reactive oxygen species (ROS) can damage cellular macromolecules and lead to cellular dysfunction or death. Exercise training induces beneficial adaptations in skeletal muscle that may reduce cellular damage from exposure to ROS. To determine the response of exercise-conditioned muscle to acute increases in ROS, four groups of mice were used: non-trained (NT, n = 12); NT + high-dose radiation (HDR, n = 3); exercise-trained (EX, n = 13, 3 days/week for 10 weeks, 10 m/min to 18 m/min); and EX + HDR (n = 3/group). Quadriceps muscle was harvested 3-5 days following the last exercise bout in the training program for measurement of antioxidant enzyme and metabolic enzyme activity. Total superoxide dismutase (41%), and manganese sodium oxide dismutase (51%) activities were significantly increased in radiation-challenged EX mice as compared with unchallenged EX mice (all P
机译:活性氧(ROS)的过量产生会损坏细胞大分子并导致细胞功能障碍或死亡。运动训练在骨骼肌中引起有益的适应,这可能减少暴露于ROS引起的细胞损伤。为了确定运动条件下的肌肉对ROS急性增加的反应,使用了四组小鼠:未经训练的小鼠(NT,n = 12); NT +大剂量辐射(HDR,n = 3);运动训练(EX,n = 13,13/3天/周,持续10周,10 m / min至18 m / min);和EX + HDR(n = 3 /组)。在训练程序中的最后一次运动之后的3-5天收获股四头肌,以测量抗氧化酶和代谢酶的活性。与未挑战的EX小鼠相比,辐射挑战的EX小鼠的总超氧化物歧化酶(41%)和锰氧化钠歧化酶(51%)活性显着增加(所有P

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