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首页> 外文期刊>American Journal of Physiology >Skeletal muscle weakness due to deficiency of CuZn-superoxide dismutase is associated with loss of functional innervation.
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Skeletal muscle weakness due to deficiency of CuZn-superoxide dismutase is associated with loss of functional innervation.

机译:由于Cuzn-超氧化物歧化酶的缺乏,骨骼肌弱点与功能性密封损失有关。

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摘要

An association between oxidative stress and muscle atrophy and weakness in vivo is supported by elevated oxidative damage and accelerated loss of muscle mass and force with aging in CuZn-superoxide dismutase-deficient (Sod1(-/-)) mice. The purpose was to determine the basis for low specific force (N/cm(2)) of gastrocnemius muscles in Sod1(-/-) mice and establish the extent to which structural and functional changes in muscles of Sod1(-/-) mice resemble those associated with normal aging. We tested the hypothesis that muscle weakness in Sod1(-/-) mice is due to functionally denervated fibers by comparing forces during nerve and direct muscle stimulation. No differences were observed for wild-type mice at any age in the forces generated in response to nerve and muscle stimulation. Nerve- and muscle-stimulated forces were also not different for 4-wk-old Sod1(-/-) mice, whereas, for 8- and 20-mo-old mice, forces during muscle stimulation were 16 and 30% greater, respectively, than those obtained using nerve stimulation. In addition to functional evidence of denervation with aging, fiber number was not different for Sod1(-/-) and wild-type mice at 4 wk, but 50% lower for Sod1(-/-) mice by 20 mo, and denervated motor end plates were prevalent in Sod1(-/-) mice at both 8 and 20 mo and in WT mice by 28 mo. The data suggest ongoing denervation in muscles of Sod1(-/-) mice that results in fiber loss and muscle atrophy. Moreover, the findings support using Sod1(-/-) mice to explore mechanistic links between oxidative stress and the progression of deficits in muscle structure and function.
机译:通过在CuzN-超氧化物歧化酶缺陷(SOD1( - / - ))小鼠(SOD1( - / - ))小鼠(SOD1( - / - ))小鼠中,通过升高的氧化损伤和肌肉质量损失和力量的加速损失来支持氧化应激和肌肉萎缩和虚弱的关系。目的是确定SOD1(/ - / - )小鼠腓肠肌肌肉(N / cm(2))的基础,并确定SOD1( - / - )小鼠肌肉结构和功能变化的程度类似于与正常老化相关的人。我们测试了SOD1( - / - )小鼠中的肌肉弱性是由于功能不良纤维,通过比较神经和直接肌肉刺激的力来源的纤维。对于响应神经和肌肉刺激而产生的力的任何年龄,野生型小鼠没有观察到差异。对于4 WK型SOD1( - / - )小鼠而言,神经和肌肉刺激的力也没有含量,而对于8-和20-Mo型小鼠,肌肉刺激期间的力分别为16%,30%而不是使用神经刺激获得的那些。除了用老化的去除功能证据外,SOD1( - / - )和4WK的野生型小鼠的纤维数对SOD1( - / - )小鼠的野生型小鼠没有不同,但是通过20Mo,以及去位的电动机降低50%在8和20mo和28μm中,在8和20mo和Wt小鼠中普遍存在SOD1( - / - )小鼠中普遍。该数据表明,在导致纤维损失和肌肉萎缩的SOD1(/ - / - )小鼠中持续的假期。此外,研究结果支持使用SOD1( - / - )小鼠探索氧化应力与肌肉结构和功能缺陷的进展之间的机械连接。

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