首页> 外文期刊>American Journal of Pathology: Official Publication of the American Association of Pathologists >mdx(cv) mice manifest more severe muscle dysfunction and diaphragm force deficits than do mdx Mice.
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mdx(cv) mice manifest more severe muscle dysfunction and diaphragm force deficits than do mdx Mice.

机译:mdx(cv)小鼠表现出比mdx小鼠更严重的肌肉功能障碍和横膈膜力缺陷。

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摘要

Duchenne muscular dystrophy (DMD) is characterized by progressive skeletal muscle dysfunction leading to premature death by the third decade of life. The mdx mouse, the most widely used animal model of DMD, has been extremely useful to study disease mechanisms and to screen new therapeutics. However, unlike patients with DMD, mdx mice have a very mild motor function deficit, posing significant limitations for its use as a platform to assess the impact of treatments on motor function. It has been suggested that an mdx variant, the mdx(5cv) mouse, might be more severely affected. Here, we compared the motor activity, histopathology, and individual muscle force measurements of mdx and mdx(cv) mice. Our study revealed that mdx(cv) mice showed more severe exercise-induced fatigue, Rotarod performance deficits, and gait anomalies than mdx mice and that these deficits began at a younger age. Muscle force studies showed more severe strength deficits in the diaphragm of mdx(cv) mice compared to mdx mice, but similar force generation in the extensor digitorum longus. Muscle histology was similar between the two strains. Differences in genetic background (genetic modifiers) probably account for these functional differences between mdx strains. Overall, our findings indicate that the mdx and mdx(cv) mouse models of DMD are not interchangeable and identify the mdx(cv) mouse as a valuable platform for preclinical studies that require assessment of muscle function in live animals.
机译:杜氏肌营养不良症 (DMD) 的特征是进行性骨骼肌功能障碍,导致在生命的第三个十年过早死亡。mdx小鼠是DMD使用最广泛的动物模型,对于研究疾病机制和筛选新疗法非常有用。然而,与DMD患者不同,mdx小鼠具有非常轻微的运动功能缺陷,这对其用作评估治疗对运动功能影响的平台造成了重大限制。有人认为,mdx变体mdx(5cv)鼠标可能会受到更严重的影响。在这里,我们比较了 mdx 和 mdx(cv) 小鼠的运动活动、组织病理学和个体肌肉力量测量值。我们的研究表明,与mdx小鼠相比,mdx(cv)小鼠表现出更严重的运动引起的疲劳,Rotarod表现缺陷和步态异常,并且这些缺陷从年轻时就开始了。肌肉力量研究表明,与 mdx 小鼠相比,mdx(cv) 小鼠横膈膜的力量缺陷更严重,但趾长伸肌产生相似的力量。两种菌株的肌肉组织学相似。遗传背景(遗传修饰剂)的差异可能是mdx菌株之间这些功能差异的原因。总体而言,我们的研究结果表明,DMD的mdx和mdx(cv)小鼠模型不可互换,并将mdx(cv)小鼠确定为需要评估活体动物肌肉功能的临床前研究的宝贵平台。

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