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雏鹌鹑视网膜发育过程中阿米巴样小胶质细胞的切向迁移:迁移机制与迁移行为

Tangential migration of ameboid microglia in the developing quail retina: mechanism of migration and migratory behavior.

作者信息

Marín-Teva J L, Almendros A, Calvente R, Cuadros M A, Navascués J

机构信息

Departamento de Biología Celular, Facultad de Ciencias, Universidad de Granada, Spain.

出版信息

Glia. 1998 Jan;22(1):31-52. doi: 10.1002/(sici)1098-1136(199801)22:1<31::aid-glia4>3.0.co;2-b.

Abstract

Long distance migration of microglial precursors within the central nervous system is essential for microglial colonization of the nervous parenchyma. We studied morphological features of ameboid microglial cells migrating tangentially in the developing quail retina to shed light on the mechanism of migration and migratory behavior of microglial precursors. Many microglial precursors remained attached on retinal sheets containing the inner limiting membrane covered by a carpet of Müller cell endfeet. This demonstrates that most ameboid microglial cells migrate tangentially on Müller cell endfeet. Many of these cells showed a central-to-peripheral polarized morphology, with extensive lamellipodia spreading through grooves flanked by Müller cell radial processes, to which they were frequently anchored. Low protuberances from the vitreal face of microglial precursors were firmly attached to the subjacent basal lamina, which was accessible through gaps in the carpet of Müller cell endfeet. These results suggest a mechanism of migration involving polarized extension of lamellipodia at the leading edge of the cell, strong cell-to-substrate attachment, translocation of the cell body forward, and retraction of the rear of the cell. Other ameboid cells were multipolar, with lamellipodial projections radiating in all directions from the cell body, suggesting that microglial precursors explore the surrounding environment to orient their movement. Central-to-peripheral migration of microglial precursors in the retina does not follow a straight path; instead, these cells perform forward, backward, and sideways movements, as suggested by the occurrence of (a) V-shaped bipolar ameboid cells with their vertex pointing toward either the center or the periphery of the retina, and (b) threadlike processes projecting from either the periphery-facing edge or the center-facing edge of ameboid microglial cells.

摘要

小胶质细胞前体在中枢神经系统内的长距离迁移对于神经实质的小胶质细胞定植至关重要。我们研究了在发育中的鹌鹑视网膜中沿切线方向迁移的阿米巴样小胶质细胞的形态特征,以阐明小胶质细胞前体的迁移机制和迁移行为。许多小胶质细胞前体附着在含有由穆勒细胞终足毯覆盖的内界膜的视网膜片上。这表明大多数阿米巴样小胶质细胞在穆勒细胞终足上沿切线方向迁移。这些细胞中的许多呈现从中心到外周的极化形态,广泛的片状伪足通过穆勒细胞径向突起两侧的凹槽延伸,它们经常锚定在这些突起上。小胶质细胞前体玻璃体表面的低矮突起牢固地附着在下方的基膜上,该基膜可通过穆勒细胞终足毯中的间隙到达。这些结果提示了一种迁移机制,包括细胞前缘片状伪足的极化延伸、细胞与底物的牢固附着、细胞体向前移位以及细胞后部的回缩。其他阿米巴样细胞是多极的,片状伪足从细胞体向各个方向辐射,这表明小胶质细胞前体探索周围环境以确定其运动方向。视网膜中小胶质细胞前体从中心到外周的迁移并非沿直线进行;相反,这些细胞会进行向前、向后和侧向运动,这由以下情况表明:(a) V形双极阿米巴样细胞,其顶点指向视网膜的中心或外周;(b) 从阿米巴样小胶质细胞的外周面向边缘或中心面向边缘伸出的丝状突起。

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