O'Hara C M, Egar M W, Chernoff E A
Department of Biology, Indiana University-Purdue University, Indianapolis 46202-5132.
Dev Dyn. 1992 Feb;193(2):103-15. doi: 10.1002/aja.1001930202.
Changes in intermediate filament content and extracellular matrix material showed that the injury response of ependymal cells in lesioned axolotl spinal cord involves an epithelial-to-mesenchymal transformation, and that fibrous astrocytes are excluded from the remodeling lesion site. Antibody localization was used to visualize cytokeratin-, vimentin-, and glial fibrillary acidic protein- (GFAP-) containing intermediate filaments, as well as the adhesive glycoprotein fibronectin. In normal axolotl spinal cord cytokeratins were found near the apical surface of the ependymal cells. Transmission electron microscopic examination suggested that these cytokeratins were in tonofilaments. Cytokeratin expression was lost and vimentin production was initiated in ependymal cells 2-3 weeks following spinal cord injury. There was a period of approximately 1-2 weeks when cytokeratins and vimentin were co-expressed in vivo. This co-expression was maintained in vitro by culture on a fibronectin-coated substratum. As the central canal reformed, vimentin expression was lost. Ependymal cells lacked GFAP intermediate filaments, but GFAP was present in fibrous astrocytes of the neuropil and white matter. Following injury, GFAP localization showed that fibrous astrocytes disappeared from the remodeling lesion site and reappeared only after the ependymal epithelium reformed and newly myelinated axons were found. Fibronectin expression closely followed the expression of vimentin during mesenchymal ependymal cell outgrowth. These results suggest that the ependymal cell outgrowth requires changes in cell shape followed by changes in production of extracellular matrix.
中间丝含量和细胞外基质物质的变化表明,受损蝾螈脊髓室管膜细胞的损伤反应涉及上皮-间充质转化,并且纤维性星形胶质细胞被排除在重塑损伤部位之外。抗体定位用于可视化含有细胞角蛋白、波形蛋白和胶质纤维酸性蛋白(GFAP)的中间丝,以及黏附糖蛋白纤连蛋白。在正常蝾螈脊髓中,细胞角蛋白存在于室管膜细胞的顶端表面附近。透射电子显微镜检查表明这些细胞角蛋白存在于张力丝中。脊髓损伤后2-3周,室管膜细胞中细胞角蛋白表达丧失,波形蛋白产生开始。在体内有大约1-2周的时间细胞角蛋白和波形蛋白共同表达。通过在纤连蛋白包被的基质上培养,这种共同表达在体外得以维持。随着中央管重塑,波形蛋白表达丧失。室管膜细胞缺乏GFAP中间丝,但GFAP存在于神经毡和白质的纤维性星形胶质细胞中。损伤后,GFAP定位显示纤维性星形胶质细胞从重塑损伤部位消失,仅在室管膜上皮重塑且发现新的有髓轴突后才重新出现。在间充质室管膜细胞生长过程中,纤连蛋白表达与波形蛋白表达密切相关。这些结果表明,室管膜细胞生长需要细胞形状改变,随后是细胞外基质产生的变化。