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Time to fatigue is increased in mouse muscle at 37 degrees C; the role of iron and reactive oxygen species.

机译:在37摄氏度时,小鼠肌肉的疲劳时间会增加;铁和活性氧的作用。

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Studies exploring the rate of fatigue in isolated muscle at 37 degrees C have produced mixed results. In the present study, muscle fibre bundles from the mouse foot were used to study the effect of temperature on the rate of muscle fatigue. Provided iron was excluded from the solutions, time to fatigue at 37 degrees C was increased compared to 22 degrees C (125 +/- 8% of 22 degrees C fatigue time). In contrast, when iron was present (approximately 1 microM), fatigue was accelerated (68 +/- 10%). Iron can increase reactive oxygen species (ROS), which are believed to accelerate fatigue. The addition of 25-100 microM H(2)O(2) at 22 degrees C reduced time to fatigue to 80-20% of the control, respectively. Iron was added to cultured primary skeletal muscle cells to determine if iron could increase ROS production. Neither iron entry nor ROS production were detected in non-contracting muscle cells. The addition of 8-hydroxyquinoline, which facilitates iron entry, to iron-ascorbic acid solutions caused a rapid rise in intracellular iron and ROS. Our results indicate that time to fatigue in vitro is increased at 37 degrees C relative to 22 degrees C, but the addition of ROS can accelerate fatigue. An increase in muscle iron can accelerate ROS production, which may be important during or following exercise and in haemochromatosis, disuse atrophy and sarcopenia.
机译:探索37℃下离体肌肉疲劳率的研究产生了混合结果。在本研究中,来自小鼠脚的肌纤维束用于研究温度对肌肉疲劳率的影响。如果从溶液中排除铁,则与22摄氏度(22摄氏度的疲劳时间的125 +/- 8%)相比,在37摄氏度下的疲劳时间会增加。相反,当存在铁时(大约1 microM),疲劳加速(68 +/- 10%)。铁会增加活性氧(ROS),据信这会加速疲劳。在22摄氏度下添加25-100 microM H(2)O(2)可以将疲劳时间缩短至对照组的80-20%。将铁添加到培养的骨骼肌细胞中,以确定铁是否可以增加ROS的产生。在未收缩的肌肉细胞中均未检测到铁进入和ROS产生。向抗坏血酸铁溶液中添加有助于铁进入的8-羟基喹啉会导致细胞内铁和ROS迅速增加。我们的结果表明,在37摄氏度下相对于22摄氏度,体外疲劳时间增加了,但是添加ROS可以加速疲劳。肌肉铁的增加可以加速ROS的产生,这可能在运动中或运动后以及血色素沉着症,废用性萎缩和肌肉减少症中很重要。

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