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衰老(11 - 26个月)大鼠比目鱼肌神经肌肉接头持续重组的超微结构证据。

Ultrastructural evidence of continued reorganization at the aging (11-26 months) rat soleus neuromuscular junction.

作者信息

Cardasis C A

出版信息

Anat Rec. 1983 Nov;207(3):399-415. doi: 10.1002/ar.1092070303.

Abstract

Ultrastructural remodeling, with evidence of focal deafferentation and reinnervation, occurs within normal young adult rat soleus neuromuscular junctions (Cardasis and Padykula, 1981). This may be related to normal variations in function. Recognition of this plasticity provides a basis for analysis of aging changes in junctional ultrastructure. Thirty soleus junctions were studied between 11 and 26 months of life. In these junctions, compared to younger ones (3-5 months) synaptic sites with the conventional ultrastructure become increasingly sparse. There is an increase in extent and frequency of exposed junctional folds, of intervention of Schwann cell cytoplasm between axon and junctional folds, and of numbers of lysosomes in all cytoplasmic profiles. Often primary clefts are shallow or missing, and secondary folds are widened and contain collagen. Features limited largely to these older junctions include highly pleomorphic myonuclei, deeply invaginated by myofibrils, and an increase in cellular profiles between basal lamina and sarcolemma. The identity of these profiles is unknown. At other locations within many of the same endplates, small intact terminals are associated with larger expanses of junctional folds, and several small terminals occur within the same primary cleft. Such terminals frequently contain dense-cored vesicles. These observations suggest continuation of some terminal axonal regeneration. Thus, the ultrastructure of these aging neuromuscular junctions reveals the same degenerative and regenerative events suggested by the ultrastructure of younger junctions, but suggests a shift in the balance between them.

摘要

在正常成年幼鼠比目鱼肌神经肌肉接头处会发生超微结构重塑,有局灶性传入神经阻滞和再支配的证据(卡达西斯和帕迪库拉,1981年)。这可能与功能的正常变化有关。认识到这种可塑性为分析接头超微结构的衰老变化提供了基础。研究了11至26个月龄之间的30个比目鱼肌接头。与较年轻的接头(3至5个月)相比,这些接头中具有传统超微结构的突触位点变得越来越稀少。暴露的接头褶皱的范围和频率增加,雪旺细胞胞质在轴突和接头褶皱之间的介入增加,并且所有细胞质区域中的溶酶体数量增加。通常,初级裂隙浅或缺失,次级褶皱增宽并含有胶原蛋白。主要局限于这些较老接头的特征包括高度多形性的肌核,被肌原纤维深深凹陷,以及基膜和肌膜之间的细胞轮廓增加。这些轮廓的身份尚不清楚。在许多相同终板的其他位置,小的完整终末与更大范围的接头褶皱相关联,并且在同一初级裂隙内有几个小终末。这些终末经常含有有致密核心的囊泡。这些观察结果表明一些终末轴突再生仍在继续。因此,这些衰老神经肌肉接头的超微结构揭示了较年轻接头超微结构所显示的相同的退行性和再生性事件,但表明它们之间的平衡发生了变化。

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