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蟾蜍脑侧脑室室管膜上巨噬细胞的扫描电镜和透射电镜研究

Scanning and transmission electron microscopic study of the supraependymal macrophages in the lateral ventricles of the toad brain.

作者信息

McKenna O C, Chairetakis J S

出版信息

Cell Tissue Res. 1980;207(2):321-9. doi: 10.1007/BF00237815.

Abstract

Transmission and scanning electron microscopy of the lateral ventricles of the toad brain revealed the presence of supraependymal cells that have the features of macrophages. Based solely on their surface morphology three different cell forms could be identified. The most frequently observed cells are flat and multipolar, and have a smooth or ruffled surface. The second type is spherical with a ruffled surface and occurs either singly, in which case it lacks processes, or in clusters from which processes radiate. The third type has surface blebs and numerous thin, smooth processes. However, when specimens that had been examined in the scanning electron microscope are viewed in the transmission electron microscope, all cells appear to belong to a single cell type. All cells viewed closely resemble macrophages in that they contain nuclei with clumped chromaffin, single cisternae of rough endoplasmic reticulum, numerous dense bodies, and many Golgi complexes. In addition, when horseradish peroxidase (HRP) was perfused into the ventricles, reaction product was found a short time thereafter within cytoplasmic vacuoles, and after a longer period within dense bodies. Because of their ultrastructural resemblance to macrophages and their capacity to ingest HRP, we suggest that these cells function as phagocytes and, as such, act to remove foreign materials from the cerbrospinal fluid.

摘要

对蟾蜍脑侧脑室进行透射电子显微镜和扫描电子显微镜观察,发现存在具有巨噬细胞特征的室管膜上细胞。仅根据其表面形态,可识别出三种不同的细胞形态。最常观察到的细胞是扁平的多极细胞,表面光滑或有褶皱。第二种类型是表面有褶皱的球形细胞,单个出现时没有突起,或成簇出现且有放射状突起。第三种类型有表面泡和许多薄而光滑的突起。然而,当在扫描电子显微镜下观察的标本在透射电子显微镜下观察时,所有细胞似乎都属于单一细胞类型。仔细观察所有细胞,它们都非常类似于巨噬细胞,因为它们含有核内嗜铬质聚集的细胞核、单个糙面内质网池、许多致密体和许多高尔基体复合体。此外,当将辣根过氧化物酶(HRP)注入脑室时,短时间后在细胞质空泡内发现反应产物,较长时间后在致密体内发现。由于它们在超微结构上与巨噬细胞相似,并且具有摄取HRP的能力,我们认为这些细胞起着吞噬细胞的作用,因此可从脑脊液中清除异物。

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