Butt A M, Colquhoun K, Berry M
Sherrington School of Physiology, U.M.D.S., Guy's Hospital, London.
Glia. 1994 Apr;10(4):315-22. doi: 10.1002/glia.440100410.
Astrocytes and oligodendrocytes in the isolated intact mature rat optic nerve have been computer imaged in three dimensions by laser scanning confocal microscopy of single cells, dye-filled with lysinated rhodamine dextran (LRD). Our results illustrate the first application of these techniques to an intact CNS white matter tract and provide comparative data for previous studies on neonatal rat optic nerve (Butt and Ransom: Glia 2:470-475, 1989; Butt and Ransom: J Comp Neurol 338:141-158, 1993). The combined use of intracellular injection of LRD and confocal imaging significantly improves the resolution of glial cell structure, particularly that of mature astrocytes, for a number of reasons. 1) Single mature dye-filled glia can be imaged, because LRD does not pass through gap junctions. 2) The entire process field of astrocytes can be visualized in a single two-dimensional image. 3) Cell images can be rotated through 360 degrees in all planes to provide a new perspective of glial cell structure in the intact tissue. 4) Reconstruction of optical sections, within a narrow focal plane, provides a high definition and resolution of the finer details of glial morphology. Using these techniques, three astrocyte subclasses were distinguished on morphological criteria. It is the conclusion of this study that the majority of these forms represent a single population of fibrous astrocytes which are well-suited to perform the multiple functions attributed to astrocytes in the CNS. The morphology of mature myelin-forming oligodendrocytes was also described.(ABSTRACT TRUNCATED AT 250 WORDS)
通过对用赖氨酸化罗丹明葡聚糖(LRD)填充染料的单细胞进行激光扫描共聚焦显微镜检查,对分离的完整成熟大鼠视神经中的星形胶质细胞和少突胶质细胞进行了三维计算机成像。我们的结果说明了这些技术在完整的中枢神经系统白质束中的首次应用,并为先前关于新生大鼠视神经的研究提供了比较数据(巴特和兰塞姆:《胶质细胞》2:470 - 475,1989;巴特和兰塞姆:《比较神经学杂志》338:141 - 158,1993)。出于多种原因,细胞内注射LRD和共聚焦成像的联合使用显著提高了胶质细胞结构的分辨率,特别是成熟星形胶质细胞的分辨率。1)由于LRD不会通过缝隙连接,单个成熟的充满染料的胶质细胞可以成像。2)星形胶质细胞的整个过程场可以在单个二维图像中可视化。3)细胞图像可以在所有平面上旋转360度,以提供完整组织中胶质细胞结构的新视角。4)在狭窄焦平面内重建光学切片,可提供胶质细胞形态更精细细节的高清晰度和分辨率。利用这些技术,根据形态学标准区分出了三个星形胶质细胞亚类。本研究的结论是,这些形式中的大多数代表了单一的纤维性星形胶质细胞群体,它们非常适合执行中枢神经系统中赋予星形胶质细胞的多种功能。还描述了成熟的形成髓鞘的少突胶质细胞的形态。(摘要截断于250字)