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谷胱甘肽系统对营养不良小鼠(mdx)肌肉急性氧化应激的动态反应。

Dynamic responses of the glutathione system to acute oxidative stress in dystrophic mouse (mdx) muscles.

作者信息

Dudley Roy W R, Khairallah Maya, Mohammed Shawn, Lands Larry, Des Rosiers Christine, Petrof Basil J

机构信息

Meakins-Christie Laboratories, McGill University, Montreal, Quebec, Canada.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2006 Sep;291(3):R704-10. doi: 10.1152/ajpregu.00031.2006. Epub 2006 Apr 13.

Abstract

The precise mechanisms underlying skeletal muscle damage in Duchenne muscular dystrophy (DMD) remain ill-defined. Functional ischemia during muscle activation, with subsequent reperfusion during rest, has been documented. Therefore, one possibility is the presence of increased oxidative stress. We applied a model of acute hindlimb ischemia/reperfusion (I/R) in mdx mice (genetic homolog of DMD) to evaluate dynamic in vivo responses of dystrophic muscles to this form of oxidative stress. Before the application of I/R, mdx muscles showed: 1) decreased levels of total glutathione (GSH) with an increased oxidized (GSSG)-to-reduced (GSH) glutathione ratio; 2) greater activity of the GSH-metabolizing enzymes glutathione peroxidase (GPx) and glutathione reductase; and 3) lower activity levels of NADP-linked isocitrate dehydrogenase (ICDH) and aconitase, two metabolic enzymes that are sensitive to inactivation by oxidative stress and also implicated in GSH regeneration. Interestingly, nondystrophic muscles subjected to I/R exhibited similar changes in total glutathione, GSSG/GSH, GPx, ICDH, and aconitase. In contrast, all of the above remained stable in mdx muscles subjected to I/R. Taken together, these results suggest that mdx muscles are chronically subjected to increased oxidative stress, leading to adaptive changes that attempt to protect (although only in part) the dystrophic muscles from acute I/R-induced oxidative stress. In addition, mdx muscles show significant impairment of the redox-sensitive metabolic enzymes ICDH and aconitase, which may further contribute to contractile dysfunction in dystrophic muscles.

摘要

杜兴氏肌肉营养不良症(DMD)中骨骼肌损伤的精确机制仍不明确。肌肉激活过程中的功能性缺血,以及随后休息时的再灌注,已有文献记载。因此,一种可能性是存在氧化应激增加的情况。我们在mdx小鼠(DMD的基因同源物)中应用急性后肢缺血/再灌注(I/R)模型,以评估营养不良肌肉对这种氧化应激形式的动态体内反应。在施加I/R之前,mdx肌肉表现出:1)总谷胱甘肽(GSH)水平降低,氧化型(GSSG)与还原型(GSH)谷胱甘肽的比率增加;2)谷胱甘肽代谢酶谷胱甘肽过氧化物酶(GPx)和谷胱甘肽还原酶的活性更高;3)NADP连接的异柠檬酸脱氢酶(ICDH)和乌头酸酶的活性水平较低,这两种代谢酶对氧化应激失活敏感,也与GSH再生有关。有趣的是,遭受I/R的非营养不良肌肉在总谷胱甘肽、GSSG/GSH、GPx、ICDH和乌头酸酶方面表现出类似的变化。相比之下,上述所有指标在遭受I/R的mdx肌肉中保持稳定。综上所述,这些结果表明mdx肌肉长期受到氧化应激增加的影响,导致适应性变化,试图(尽管只是部分地)保护营养不良肌肉免受急性I/R诱导的氧化应激。此外,mdx肌肉显示出对氧化还原敏感的代谢酶ICDH和乌头酸酶有明显损伤,这可能进一步导致营养不良肌肉的收缩功能障碍。

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