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表面相关星形胶质细胞,而非终足,形成后梨状皮质的胶质界膜,具有空间分布的组织方式,而非域组织方式。

Surface-associated astrocytes, not endfeet, form the glia limitans in posterior piriform cortex and have a spatially distributed, not a domain, organization.

机构信息

Department of Anatomy and Neuroscience Training Program, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin 53706, USA.

出版信息

J Comp Neurol. 2011 Jul 1;519(10):1952-69. doi: 10.1002/cne.22615.

DOI:10.1002/cne.22615
PMID:21452238
Abstract

"Surface-associated astrocytes" (SAAs) in posterior piriform cortex (PPC) are unique by virtue of a direct apposition to the cortical surface and large-caliber processes that descend into layer I. In this study additional unique and functionally relevant features of SAAs in PPC of the rat were identified by light and electron microscopy. Examination of sections cut parallel to the surface of PPC and stained for glial fibrillar acidic protein revealed that, in addition to descending processes, SAAs give rise to an extensive matrix of "superficial processes." Electron microscopy revealed that these superficial processes, together with cell bodies, form a continuous sheet at the surface of PPC with features in common with the glia limitans that is formed by endfeet in other cortical areas. These include a glia limiting membrane with basal lamina and similar associated organelles, including a striking array of mitochondria. Of particular interest, SAAs lack the domain organization observed in neocortex and hippocampus. Rather, superficial processes overlap extensively with gap junctions between their proximal regions as well as between cell bodies. Study of the descending processes revealed thin extensions, many of which appose synaptic profiles. We conclude that SAAs provide a potential substrate for bidirectional signaling and transport between brain and the pial arteries and cerebrospinal fluid in the subarachnoid space. We postulate that the spatially distributed character of SAAs in PPC reflects and supports the spatially distributed circuitry and sensory representation that are also unique features of this area.

摘要

“皮层表面相关星形胶质细胞”(SAAs)位于后梨状皮层(PPC),因其直接与皮层表面毗邻以及深入到 I 层的大尺寸突起而独具特色。在这项研究中,我们通过光镜和电镜观察,发现了大鼠 PPC 中 SAAs 的其他独特的、与功能相关的特征。检查与 PPC 表面平行的切片并用胶质纤维酸性蛋白染色,结果表明,除了下行突起外,SAAs 还产生广泛的“浅层突起”基质。电镜显示,这些浅层突起与细胞体一起,在 PPC 的表面形成一个连续的薄片,具有与其他皮质区域的终足形成的胶质界膜共同的特征。这些特征包括具有基膜和类似相关细胞器的胶质界膜,包括排列整齐的线粒体。特别值得注意的是,SAAs 缺乏在新皮层和海马体中观察到的结构域组织。相反,浅层突起在其近端区域之间以及细胞体之间广泛重叠,形成缝隙连接。对下行突起的研究揭示了许多薄片延伸,其中许多与突触轮廓毗邻。我们得出结论,SAAs 为大脑与软脑膜动脉和蛛网膜下腔中的脑脊液之间的双向信号传递和运输提供了潜在的基质。我们推测,PPC 中 SAAs 的空间分布特征反映并支持了该区域特有的空间分布电路和感觉表现。

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