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蝗虫中枢神经系统中神经胶质细胞及其连接的胚胎发育

Embryonic development of glial cells and their junctions in the locust central nervous system.

作者信息

Swales L S, Lane N J

出版信息

J Neurosci. 1985 Jan;5(1):117-27. doi: 10.1523/JNEUROSCI.05-01-00117.1985.

Abstract

The embryonic development of the specialized glial cells that form the perineurial blood-brain barrier in the locust CNS has been studied by freeze-fracture and tracer uptake. These cells migrate to form bracelet cell arrangements around the nervous tissues between day 4 to day 10 of embryonic differentiation which lasts 14 days in toto. A number of different kinds of intercellular junction form between the bracelet cells from day 8 to day 13 of development. These include gap junctions with features characteristic of arthropods, which seem to assemble by lateral migration of 13-nm E face intramembranous particles (IMPs), which ultimately cluster to form a large number of mature plaques of varying diameters. Less numerous are tight junctions which serve to restrict entry of exogenous molecules, including lanthanum and cationic ferritin, thereby forming the blood-brain barrier; these appear to assemble by migration of individual 8- to 10-nm P face IMPs into ridges which are found between the overlapping fingers of the perineurial bracelet cell processes. Septate junctions also mature at this stage in embryonic development by apparent assembly of IMPs into characteristic aligned rows; these may serve to slow down the entry of positively charged molecules as well as being adhesive, although anionic ferritin may leak into the CNS even after septate and tight junction formation. The observed changes in cellular associations and the formation of the blood-brain barrier coincide with the onset of mature neuronal electrical properties and spontaneous synaptic input.

摘要

通过冷冻断裂和示踪剂摄取研究了在蝗虫中枢神经系统中形成神经束膜血脑屏障的特化神经胶质细胞的胚胎发育。这些细胞在胚胎分化的第4天到第10天迁移,在神经组织周围形成环状细胞排列,胚胎分化总共持续14天。在发育的第8天到第13天,环状细胞之间形成了许多不同类型的细胞间连接。这些连接包括具有节肢动物特征的间隙连接,它们似乎是由13纳米E面膜内颗粒(IMPs)侧向迁移组装而成,最终聚集形成大量直径各异的成熟斑块。数量较少的是紧密连接,其作用是限制包括镧和阳离子铁蛋白在内的外源分子进入,从而形成血脑屏障;它们似乎是由单个8到10纳米P面IMPs迁移到神经束膜环状细胞突起重叠指状结构之间的嵴中组装而成。在胚胎发育的这个阶段,分隔连接也通过IMPs明显组装成特征性的对齐行而成熟;这些连接可能有助于减缓带正电荷分子的进入,同时具有黏附作用,尽管即使在分隔连接和紧密连接形成后,阴离子铁蛋白仍可能渗入中枢神经系统。观察到的细胞关联变化和血脑屏障的形成与成熟神经元电特性和自发突触输入的开始相一致。

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