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Charcot-Marie-Tooth 病动物模型中的运动轴突发芽和神经肌肉接头丧失。

Motor axonal sprouting and neuromuscular junction loss in an animal model of Charcot-Marie-Tooth disease.

机构信息

Department of Medicine/Unit of Anatomy, Faculty of Science, University of Fribourg, Fribourg, Switzerland.

出版信息

J Neuropathol Exp Neurol. 2010 Mar;69(3):281-93. doi: 10.1097/NEN.0b013e3181d1e60f.

DOI:10.1097/NEN.0b013e3181d1e60f
PMID:20142762
Abstract

Muscle weakness in Charcot-Marie-Tooth Type 1A disease (CMT1A) caused by mutations in peripheral myelin protein 22 (PMP22) has been attributed to an axonopathy that results in denervation and muscle atrophy. The underlying pathophysiological mechanisms involved are not understood. We investigated motor performance, neuromuscular junctions (NMJs), physiological parameters, and muscle morphometry of PMP22 transgenic mice. Neuromuscular junctions were progressively lost in hindlimb muscles of PMP22 transgenic mice, but their motor performance did not completely deteriorate during the observation period. There was considerable variability, including in laterality, in deficits among the animals. Cross-sectional areas and mean fiber size measurements indicated variable myofiber atrophy in hindlimb muscles. There was substantial concomitant axonal sprouting, and loss of neuromuscular junctions was inversely correlated with the accumulated length of axonal branches. Synaptic transmission studied in isolated nerve/muscle preparations indicated variable partial muscle denervation. Acetylcholine sensitivity was higher in the mutant muscles, and maximum tetanic force evoked by direct or indirect stimulation, specific force, and wet weights were markedly reduced in some mutant muscles. In summary, there is partial muscle denervation, and axons may retain some regenerative capacity but fail to reinnervate muscles in PMP22 transgenic mice.

摘要

Charcot-Marie-Tooth 型 1A 病(CMT1A)由周围髓鞘蛋白 22(PMP22)突变引起的肌肉无力归因于轴突变性,导致去神经支配和肌肉萎缩。涉及的潜在病理生理机制尚不清楚。我们研究了 PMP22 转基因小鼠的运动表现、神经肌肉接头(NMJ)、生理参数和肌肉形态计量学。PMP22 转基因小鼠的后肢肌肉中神经肌肉接头逐渐丧失,但在观察期间其运动性能并未完全恶化。动物之间存在相当大的变异性,包括偏侧性和缺陷程度。横截面积和平均纤维大小测量表明后肢肌肉的肌纤维萎缩程度不同。存在大量伴随的轴突发芽,神经肌肉接头的丢失与轴突分支的累积长度呈负相关。在分离的神经/肌肉制剂中研究的突触传递表明部分肌肉去神经支配存在变异性。在突变肌肉中乙酰胆碱敏感性更高,直接或间接刺激引起的最大强直力、比力和湿重在一些突变肌肉中明显降低。总之,在 PMP22 转基因小鼠中存在部分肌肉去神经支配,轴突可能保留一些再生能力,但未能重新支配肌肉。

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