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首页> 外文期刊>Journal of Biomechanics >Measuring tendon properties in mdx mice: cell viability and viscoelastic characteristics.
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Measuring tendon properties in mdx mice: cell viability and viscoelastic characteristics.

机译:测量mdx小鼠的肌腱特性:细胞活力和粘弹性特征。

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Muscular dystrophy is a genetic disorder of skeletal muscle characterized by progressive muscle weakness. Here we assessed whether muscle wasting affects cell viability and mechanical properties of extensor digitorum longus (EDL) and of tibialis anterior (TA) tendons from mdx dystrophic mice compared to wild type (WT) mice. mdx mice represent the classical animal model for human Duchenne muscular dystrophy, and show several signs of the pathology, including a decrease in specific force and an increase of fibrotic index. Cell viability of tendons was evaluated by histological analysis, and viscoelastic properties have been assessed by a rapid measurement protocol that allowed us to compute, at the same time, tissue complex compliance for all the frequencies of interest. Confocal microscopy and mechanical properties measurements revealed that mdx tendons, compared to WT ones, have an increase in the number of dead cells and a significant reduction in tissue elasticity for all the frequencies that were tested. These findings indicate a reduced quality of the tissue. Moreover, mdx tendons have an increase in the viscous response, indicating that during dynamic loading, they dissipate more energy compared to WT. Our results demonstrate that muscular dystrophy involves not only muscle wasting, but also alteration in the viscoelastic properties of tendons, suggesting a paracrine effect of altered skeletal muscle on tendinous tissue.
机译:肌营养不良症是骨骼肌的一种遗传疾病,特征是进行性肌无力。在这里,我们评估了与野生型(WT)小鼠相比,肌肉消瘦是否会影响mdx营养不良小鼠的指伸肌(EDL)和胫前肌(TA)肌腱的细胞活力和机械性能。 mdx小鼠代表人类杜兴氏肌营养不良症的经典动物模型,并显示出几种病理迹象,包括比力降低和纤维化指数增加。通过组织学分析评估了肌腱的细胞生存力,并通过快速测量方案评估了粘弹性质,该方案允许我们同时计算所有感兴趣频率的组织复合物顺应性。共聚焦显微镜和力学性能测量表明,与WT相比,mdx肌腱在所有测试频率下的死细胞数量均增加,组织弹性显着降低。这些发现表明组织的质量降低。此外,mdx肌腱的粘性反应有所增加,表明在动态加载过程中,与WT相比,它们耗散了更多的能量。我们的研究结果表明,肌营养不良症不仅涉及肌肉消瘦,而且还涉及肌腱粘弹性的改变,表明骨骼肌改变对肌腱组织的旁分泌作用。

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