首页> 美国卫生研究院文献>Journal of Applied Physiology >The passive mechanical properties of the extensor digitorum longus muscle are compromised in 2- to 20-mo-old mdx mice
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The passive mechanical properties of the extensor digitorum longus muscle are compromised in 2- to 20-mo-old mdx mice

机译:2至20个月大的mdx小鼠的指伸长肌的被动机械特性受到损害

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摘要

Muscle rigidity and myotendinous junction (MTJ) deficiency contribute to immobilization in Duchenne muscular dystrophy (DMD), a lethal disease caused by the absence of dystrophin. However, little is known about the muscle passive properties and MTJ strength in a diseased muscle. Here, we hypothesize that dystrophin-deficient muscle pathology renders skeletal muscle stiffer and MTJ weaker. To test our hypothesis, we examined the passive properties of an intact noncontracting muscle-tendon unit in mdx mice, a mouse model for DMD. The extensor digitorum longus (EDL) muscle-tendon preparations of 2-, 6-, 14-, and 20-mo-old mdx and normal control mice were strained stepwisely from 110% to 160% of the muscle optimal length. The stress-strain response and failure position were analyzed. In support of our hypothesis, the mdx EDL preparation consistently developed higher stress before muscle failure. Postfailure stresses decreased dramatically in mdx but not normal preparations. Further, mdx showed a significantly faster stress relaxation rate. Consistent with stress-strain assay results, we observed significantly higher fibrosis in mdx muscle. In 2- and 6-mo-old mdx and 20-mo-old BL10 mice failure occurred within the muscle (2- to 14-mo-old BL10 preparations did not fail). Interestingly, in ≥14-mo-old mdx mice the failure site shifted toward the MTJ. Electron microscopy revealed substantial MTJ degeneration in aged but not young mdx mice. In summary, our results suggest that the passive properties of the EDL muscle and the strength of MTJ are compromised in mdx in an age-dependent manner. These findings offer new insights in studying DMD pathogenesis and developing novel therapies.
机译:肌肉僵硬和肌腱接头(MTJ)缺乏导致固定在Duchenne肌营养不良症(DMD)中,这是一种由于缺乏肌营养不良蛋白而导致的致死性疾病。但是,关于患病肌肉的肌肉被动特性和MTJ强度知之甚少。在这里,我们假设肌营养不良蛋白缺乏症的肌肉病理使骨骼肌变硬而MTJ变弱。为了检验我们的假设,我们检查了mdx小鼠(DMD小鼠模型)中完整的非收缩性肌腱单位的被动特性。将2-,6-,14-和20-mo大小的mdx伸指肌伸肌(EDL)肌腱制剂和正常对照小鼠从肌肉最佳长度的110%逐步拉伸至160%。分析了应力应变响应和破坏位置。为了支持我们的假设,mdx EDL制剂在肌肉衰竭之前始终产生较高的压力。 mdx的失效后压力显着降低,但正常的准备却没有。此外,mdx显示出明显更快的应力松弛速率。与压力应变测定结果一致,我们观察到mdx肌肉纤维化明显更高。在2个月和6个月大的mdx和20个月大的BL10小鼠的肌肉中发生了衰竭(2个月到14个月大的BL10制剂没有失败)。有趣的是,在≥14个月大的mdx小鼠中,衰竭部位向MTJ转移。电子显微镜显示,在老年但年轻的mdx小鼠中MTJ发生了实质性的变性。总而言之,我们的研究结果表明,mdx中EDL肌肉的被动特性和MTJ的强度以年龄相关的方式受到损害。这些发现为研究DMD发病机理和开发新疗法提供了新见识。

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