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Impaired muscle spindle function in murine models of muscular dystrophy

机译:肌肉营养不良鼠模型的肌肉主轴功能受损

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Key points Muscular dystrophy patients suffer from progressive degeneration of skeletal muscle fibres, sudden spontaneous falls, balance problems, as well as gait and posture abnormalities. Dystrophin‐ and dysferlin‐deficient mice, models for different types of muscular dystrophy with different aetiology and molecular basis, were characterized to investigate if muscle spindle structure and function are impaired. The number and morphology of muscle spindles were unaltered in both dystrophic mouse lines but muscle spindle resting discharge and their responses to stretch were altered. In dystrophin‐deficient muscle spindles, the expression of the paralogue utrophin was substantially upregulated, potentially compensating for the dystrophin deficiency. The results suggest that muscle spindles might contribute to the motor problems observed in patients with muscular dystrophy. Abstract Muscular dystrophies comprise a heterogeneous group of hereditary diseases characterized by progressive degeneration of extrafusal muscle fibres as well as unstable gait and frequent falls. To investigate if muscle spindle function is impaired, we analysed their number, morphology and function in wildtype mice and in murine model systems for two distinct types of muscular dystrophy with very different disease aetiology, i.e. dystrophin‐ and dysferlin‐deficient mice. The total number and the overall structure of muscle spindles in soleus muscles of both dystrophic mouse mutants appeared unchanged. Immunohistochemical analyses of wildtype muscle spindles revealed a concentration of dystrophin and β‐dystroglycan in intrafusal fibres outside the region of contact with the sensory neuron. While utrophin was absent from the central part of intrafusal fibres of wildtype mice, it was substantially upregulated in dystrophin‐deficient mice. Single‐unit extracellular recordings of sensory afferents from muscle spindles of the extensor digitorum longus muscle revealed that muscle spindles from both dystrophic mouse strains have an increased resting discharge and a higher action potential firing rate during sinusoidal vibrations, particularly at low frequencies. The response to ramp‐and‐hold stretches appeared unaltered compared to the respective wildtype mice. We observed no exacerbated functional changes in dystrophin and dysferlin double mutant mice compared to the single mutant animals. These results show alterations in muscle spindle afferent responses in both dystrophic mouse lines, which might cause an increased muscle tone, and might contribute to the unstable gait and frequent falls observed in patients with muscular dystrophy.
机译:关键点肌营养不良患者患有骨骼肌纤维的进步变性,突然自发下降,平衡问题,以及步态和姿势异常。营养不良素和缺陷型小鼠,不同类型肌营养不良的模型具有不同的疾病和分子的基础,以研究肌肉主轴结构和功能是否受到损害。肌肉纺锤体的数量和形态在营养不良小鼠线上没有干扰,但肌肉主轴休息放电及其对拉伸的反应被改变。在缺乏术缺乏的肌肉纺织中,蛋白酶蛋白酶患者的表达基本上上调,可能补偿营养不良蛋白缺乏。结果表明,肌肉主轴可能有助于肌营养不良患者观察到的运动问题。摘要肌营养不良药物包括一种异质的遗传性疾病,其特征在于预肌肌纤维的渐变性,并且不稳定的步态和频繁的落下。为了调查肌肉主轴功能是否受损,我们在野生型小鼠和鼠模型系统中分析了它们的数量,形态和功能,用于两种不同类型的肌营养不良,具有非常不同的疾病性病学,即营养不良蛋白和缺陷型小鼠。两种营养不良小鼠突变体的肌肉肌肉中肌肉纺锤的总数和整体结构出现不变。野生型肌肉主轴的免疫组织化学分析显示出在与感官神经元接触区域外的肠出纤维中肌营养不良蛋白和β-制霉甘油蛋白的浓度。虽然尿道蛋白缺乏野生型小鼠的中枢纤维,但它在缺乏缺乏症小鼠中基本上上调。来自延伸位数肌肌肌肌肉的单位细胞外记录延伸肌肌肌肉的血管显示,营养不良小鼠菌株的肌肉纺锤体在正弦振动期间具有增加的静止排放和较高的动作潜在烧制率,特别是在低频下。与相应的野生型小鼠相比,对斜坡和保持延伸的响应出现不妨碍。与单一突变动物相比,我们观察到Dystophin蛋白和Dysferlin双突变小鼠没有加剧功能变化。这些结果表明,肌营养小鼠系中肌肉主轴传入反应的改变,这可能导致肌肉调增加,并且可能导致肌营养不良患者观察到的不稳定步态和频繁的瀑布。

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