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小鼠肌肉萎缩和恢复过程中氧化应激严重程度及抗氧化潜力的变化。

Changes in oxidative stress severity and antioxidant potential during muscle atrophy and reloading in mice.

作者信息

Katsuta Wakana, Aihara Masahiro, Hirose Noboru, Saito Fumiaki, Hagiwara Hiroki

机构信息

Division of Biosciences, Graduate School of Science and Engineering, Teikyo University of Science: 2525 Yatsuzawa, Uenohara, Yamanashi 409-0193, Japan.

Department of Rehabilitation, National Center of Neurology and Psychiatry, Japan.

出版信息

J Phys Ther Sci. 2018 Jan;30(1):42-46. doi: 10.1589/jpts.30.42. Epub 2018 Jan 27.

Abstract

[Purpose] Changes in oxidative stress severity and antioxidant potential are routinely used as oxidative stress markers. While several studies have reported the relationship between these markers and exercise, little is known about the dynamic nature of these markers during muscle atrophy and reloading. Therefore, we examined changes in oxidative stress severity and antioxidant potential during muscle atrophy and reloading. [Subjects and Methods] Muscle atrophy was induced in mice by casting the limb for 2 weeks. Mice were then subjected to reloading for 2 weeks. The severity of oxidative stress (hydroperoxide) and antioxidant potential (degree of reduction) were quantified. [Results] Muscle atrophy was induced by cast immobilization. The muscle mass of mice recovered to similar levels as the control group following 2 weeks of reloading. The degree of oxidative stress was within the normal range throughout the experimental period. The antioxidant potential decreased to the clinical borderline level 2 weeks after immobilization, further decreased after 1 day of reloading, and then recovered to within the normal range. [Conclusion] Performing d-ROMs and BAP tests may contribute to the understanding to atrophic process of skeletal muscle in clinical practice of physical therapy.

摘要

[目的]氧化应激严重程度和抗氧化潜力的变化通常用作氧化应激标志物。虽然有几项研究报告了这些标志物与运动之间的关系,但对于肌肉萎缩和再负荷过程中这些标志物的动态性质知之甚少。因此,我们研究了肌肉萎缩和再负荷过程中氧化应激严重程度和抗氧化潜力的变化。[对象与方法]通过对小鼠肢体进行2周的石膏固定诱导肌肉萎缩。然后对小鼠进行2周的再负荷。对氧化应激(氢过氧化物)的严重程度和抗氧化潜力(还原程度)进行量化。[结果]通过石膏固定诱导肌肉萎缩。再负荷2周后,小鼠的肌肉质量恢复到与对照组相似的水平。在整个实验期间,氧化应激程度在正常范围内。抗氧化潜力在固定后2周降至临床临界水平,再负荷1天后进一步下降,然后恢复到正常范围内。[结论]进行d-ROMs和BAP测试可能有助于在物理治疗的临床实践中理解骨骼肌的萎缩过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b03d/5788772/d2d31bae16d6/jpts-30-042-g001.jpg

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