沃勒氏变性早期有髓神经纤维中的离子移位。

W Schlote, H Wolburg, M F Wendt-Gallitelli
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引用次数: 10

摘要

采用x射线显微分析方法测定了Na、K、Cl、Ca扩散离子在挤压后18 h和36 h大鼠坐骨神经轴突及对照神经中的分布和相对质量分数。研究是在冷冻干燥的超薄切片中进行的,这些超薄切片是在液化丙烷中休克冷冻的神经。挤压后18 h,与对照神经相比,未发现明显的离子变化。在常规处理神经的电子显微镜下,未见超微结构改变。压碎后36 h,发现两种类型的离子失衡,第一种是轴突内K降低,Na略有升高,第二种是轴突内Na和Cl同时升高,在部分纤维中还伴有Ca的积累。这两种类型的离子失衡可能代表了常规加工神经在电子显微镜下与轴质早期结构改变相对应的轴膜渗透性改变的两个阶段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ionic shifts in myelinated nerve fibers during early stages of Wallerian degeneration.

The distribution and relative mass fraction of the diffusible ions Na, K, Cl and Ca were determined by X-ray microanalysis in the axons of rat sciatic nerve 18 h and 36 h after crush and in control nerves. The investigations were performed in freeze-dried ultrathin cryosections after shock freezing of the nerves in liquified propane. 18 h after crush, no definite alteration of the ions were found compared to the control nerves. In electron micrographs of routinely processed nerves, no ultrastructural changes were seen. 36 h after crush, two types of ionic imbalance were found, the first characterized by decreased K and slightly increased Na in the axon, the second by concurrently increasing axonal Na and Cl, accompanied, in some fibers, by accumulating Ca. These types of ionic imbalance presumably represent two stages of axolemmal permeability alteration corresponding to early structural changes of axoplasm in electron micrographs of routinely processed nerves at that time.

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