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Observation of Surface Structure of Retinoblastoma Cell Line

Observation of Surface Structure of Retinoblastoma Cell Line
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摘要 Objective: We study the adhesion moleclues on the surface of SO-Rb50 retinoblastoma cell line.Motheds : The distribution of proteoglycans in the retinoblastoma SO-Rb50 cell line was analyzed by histochem-electron microscopy, using Colloidal Iron in combination with a series of enzyme digestions. In addition, immunohistochemistry was performed using a panel of specific antibodies including neuron specific enolase(NSE) ,glial fibrillary acidic protein(GFAP) , S-100 protein, fibronectin, laminin, and collagen IV.Results: Immunohistochemical stains showed the most marked cytoplasmic reactivity of SO-Rb50 cells with anti-NSE and anti-S100. The cells member and surface was postive with anti-NSE. No reactivity was noted with antibodies against laminin, GFAP, and collagen IV. After incubated with colloidal iron solution, three types of colloidal iron-positive stained material could be distinguished based on difiierencens in shape, size, electron density: (1) electron dense particles, (2) the larger colloidal Objective: We study the adhesion moleclues on the surface of SO-Rb50 retinoblastoma cell line. Motheds : The distribution of proteoglycans in the retinoblastoma SO-Rb50 cell line was analyzed by histochem-electron microscopy, using Colloidal Iron in combination with a series of enzyme digestions. In addition, immunohistochemistry was performed using a panel of specific antibodies including neuron specific enolase(NSE) ,glial fibrillary acidic protein(GFAP) , S-100 protein, fibronectin, laminin, and collagen IV. Results: Immunohistochemical stains showed the most marked cytoplasmic reactivity of SO-Rb50 cells with anti-NSE and anti-S100. The cells member and surface was postive with anti-NSE. No reactivity was noted with antibodies against laminin, GFAP, and collagen IV. After incubated with colloidal iron solution, three types of colloidal iron-positive stained material could be distinguished based on difiierencens in shape, size, electron density: (1) electron dense particles, (2) the larger colloidal iron-positive filaments, (3) the smaller colloidal iron-positive filaments, which were observed present on the tumor cells surface and in the extracellular matrix. Conclusion: We think that the cell surface proteoglycans is the main component of adhesion molecules of retinoblastoma, which may play a central role in mediating tumor cell adhesion to extracellular matrix and adjacent host cell. Eye Science 1997; 13 :133 - 136.
出处 《眼科学报》 1997年第3期133-136,140,共5页 Eye Science
基金 This paper was supported by part of National Science Foundation of Nature Science Foundation of the Ministry of Public Health,China(No.39400144)
关键词 蛋白多糖 眼癌 癌细胞 表面结构 retinoblastoma culture proteoglycan adhesion
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