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血管周围星形胶质鞘为脑微血管提供完整的覆盖:电子显微镜三维重建。

The perivascular astroglial sheath provides a complete covering of the brain microvessels: an electron microscopic 3D reconstruction.

机构信息

Centre for Molecular Biology and Neuroscience, Department of Anatomy, Institute of Basic Medical Sciences, University of Oslo, N-0317 Oslo, Norway.

出版信息

Glia. 2010 Jul;58(9):1094-103. doi: 10.1002/glia.20990.

Abstract

The unravelling of the polarized distribution of AQP4 in perivascular astrocytic endfeet has revitalized the interest in the role of astrocytes in controlling water and ion exchange at the brain-blood interface. The importance of the endfeet is based on the premise that they constitute a complete coverage of the vessel wall. Despite a number of studies based on different microscopic techniques this question has yet to be resolved. We have made an electron microscopic 3D reconstruction of perivascular endfeet in CA1 (stratum moleculare) of rat hippocampus. The endfeet interdigitate and overlap, leaving no slits between them. Only in a few sites do processes--tentatively classified as processes of microglia--extend through the perivascular glial sheath to establish direct contact with the endothelial basal lamina. In contrast to the endfoot covering of the endothelial tube, the endfoot covering of the pericyte is incomplete, allowing neuropil elements to touch the basal lamina that enwraps this type of cell. The 3D reconstruction also revealed large bundles of mitochondria in the endfoot processes that came in close apposition to the perivascular endfoot membrane. Our data support the idea that in pathophysiological conditions, the perivascular astrocytic covering may control the exchange of water and solutes between blood and brain and that free diffusion is limited to narrow clefts between overlapping endfeet.

摘要

水通道蛋白 4(AQP4)在血管周星形细胞足突的极化分布的解开,重新激发了人们对星形细胞在控制血脑界面水和离子交换中的作用的兴趣。足突的重要性基于这样一个前提,即它们构成了血管壁的完整覆盖。尽管有许多基于不同显微镜技术的研究,但这个问题尚未得到解决。我们对大鼠海马 CA1(分子层)的血管周足突进行了电子显微镜 3D 重建。足突相互交错和重叠,彼此之间没有缝隙。只有在少数部位,过程——暂定为小胶质细胞的过程——穿过血管周围的神经胶质鞘,与内皮基膜直接接触。与内皮管的足突覆盖物相反,周细胞的足突覆盖物是不完整的,允许神经突起与包裹这种细胞的基膜接触。3D 重建还揭示了足突过程中的大量线粒体束,它们与血管周足突膜紧密相邻。我们的数据支持这样一种观点,即在病理生理条件下,血管周星形细胞覆盖物可能控制着血液和大脑之间水和溶质的交换,并且自由扩散仅限于重叠足突之间的狭窄裂隙。

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