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患有遗传性感觉轴索性神经病的谷氨酸脱羧酶突变小鼠运动神经末梢的进行性退化。

Progressive degeneration of motor nerve terminals in GAD mutant mouse with hereditary sensory axonopathy.

作者信息

Miura H, Oda K, Endo C, Yamazaki K, Shibasaki H, Kikuchi T

机构信息

Division of Degenerative Disease, National Institute of Neuroscience, NCNP, Tokyo, Japan.

出版信息

Neuropathol Appl Neurobiol. 1993 Feb;19(1):41-51. doi: 10.1111/j.1365-2990.1993.tb00403.x.

Abstract

The evolution of motor nerve degeneration was examined in gracile axonal dystrophy (GAD) mutant mice, which develop initial sensory ataxia and subsequent motor paresis. Using the anterior gracilis (AG) muscle, which is innervated at two discrete and well-separated endplate zones, we demonstrated that axonal degeneration occurred first at motor nerve terminals in the distal endplate zone, and then extended gradually from the distal to the more proximal parts of affected axons in the intra-muscular nerve trunk. In contrast to the degeneration in the distal zone, active degeneration was less marked in the proximal endplate zone and, furthermore, most terminal axons had begun to produce regenerating sprouts. Ventral horn cells were histologically normal, even at advanced stages. These results indicate that, as previously observed in sensory nerves, dying back degeneration progresses later in the lower motor neuron system, even within one muscle. The mechanism(s) influencing the activation of axonal regeneration are discussed. This mutant mouse will be a useful model for the study of regenerating phenomena in dying back degeneration of genetically compromised motor neurons, as well as for the study of the pathogenesis of hereditary sensory and motor neuropathies in man.

摘要

在薄束轴索性肌营养不良(GAD)突变小鼠中研究了运动神经变性的演变,这些小鼠最初出现感觉性共济失调,随后出现运动性轻瘫。利用由两个离散且相距较远的终板区支配的股薄肌前肌(AG),我们证明轴突变性首先发生在远端终板区的运动神经末梢,然后从受影响轴突在肌内神经干中的远端逐渐延伸至近端。与远端区的变性相反,近端终板区的活跃变性不太明显,此外,大多数终末轴突已开始产生再生芽。即使在晚期,腹角细胞在组织学上也是正常的。这些结果表明,正如先前在感觉神经中观察到的那样,逆行性变性在低位运动神经元系统中进展较晚,即使在一块肌肉内也是如此。讨论了影响轴突再生激活的机制。这种突变小鼠将成为研究遗传性受损运动神经元逆行性变性中的再生现象以及人类遗传性感觉和运动神经病发病机制的有用模型。

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