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蛙视神经早期沃勒变性过程中的结旁和结间结构变化。

Nodal and paranodal structural changes in frog optic nerve during early Wallerian degeneration.

作者信息

Ishise J, Rosenbluth J

出版信息

J Neurocytol. 1986 Oct;15(5):657-70. doi: 10.1007/BF01611864.

Abstract

Ultrastructural changes in the nodal and paranodal regions of myelinated nerve fibres of frog optic nerves were studied during early stages of Wallerian degeneration. The earliest changes seen include retraction of paranodal loops of myelin from the axolemma and disconnection of paranodal myelin loops from myelin lamellae. These paranodal changes are asymmetric around the node and may be more advanced on either the proximal or distal side. Axoplasmic changes, including segregation of microtubules from neurofilaments, disorientation of microtubules and accumulation of abnormal organelles at nodes, appear shortly. In some axons the 'undercoating' along the widened nodal surfaces becomes patchy, and blebs appear in the nodal axolemma. In freeze-fracture replicas a mixture of particle clusters and particle-free areas appears in both E- and P-faces of the nodal axolemma. Blebs remain particle free. Initially, E-face particles remain segregated to the node and are present only at much lower concentrations in the demyelinated paranodal axolemma, suggesting that they are not freely mobile at this stage. Nodal E-face particles begin to decrease on day 5 associated with an increase in particles at the adjacent demyelinated paranode, and by day 11 the particle distribution is uniformly low over the entire extent of the nodal and demyelinated paranodal axolemma. If nodal E-face particles represent sodium channels, as has been proposed, the sequence of changes in Wallerian degeneration would be compatible with a gradual redistribution of nodal sodium channels into the demyelinated paranode.

摘要

在华勒氏变性早期,对青蛙视神经有髓神经纤维的结区和结旁区的超微结构变化进行了研究。最早观察到的变化包括髓鞘结旁环从轴膜退缩以及结旁髓鞘环与髓鞘板层断开连接。这些结旁变化在结周围是不对称的,可能在近端或远端更为明显。轴浆变化,包括微管与神经丝分离、微管排列紊乱以及结处异常细胞器的积累,很快就会出现。在一些轴突中,沿着增宽的结表面的“内膜”变得斑驳,结轴膜出现泡状突起。在冷冻蚀刻复制品中,结轴膜的E面和P面都出现了颗粒簇和无颗粒区域的混合。泡状突起保持无颗粒状态。最初,E面颗粒仍聚集在结处,仅以低得多的浓度存在于脱髓鞘的结旁轴膜中,这表明它们在这个阶段不是自由移动的。与相邻脱髓鞘结旁颗粒增加相关,结E面颗粒在第5天开始减少,到第11天,颗粒分布在整个结和脱髓鞘结旁轴膜范围内均匀降低。如果结E面颗粒如所提出的那样代表钠通道,那么华勒氏变性中的变化顺序将与结钠通道逐渐重新分布到脱髓鞘结旁区相一致。

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