首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Neuroblastic Differentiation Potential of the Human Retinoblastoma Cell Lines Y-79 and WERI-Rb1 Maintained in an Organ Culture System
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Neuroblastic Differentiation Potential of the Human Retinoblastoma Cell Lines Y-79 and WERI-Rb1 Maintained in an Organ Culture System

机译:维持在器官培养系统中的人类视网膜母细胞瘤细胞系Y-79和WERI-Rb1的神经母细胞分化潜能

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摘要

The differentiation potential of the human retinoblastoma cell lines Y-79 and WERI-Rb 1 was evaluated in vitro for up to 120 days in a matrix system and in rotary suspension for 30 days. Matrix cultures were grown with 10% fetal calf serum (FCS), with and without differentiation-promoting agents. The latter were applied for a total of 5-45 days (usually 30 days) and included 7S nerve growth factor, dibutyryl cyclic AMP, sodium butyrate, retinoic acid, hydrocortisone, and ascorbic acid. Fully defined, serum-free medium and medium containing 5 or 15% FCS were also used for matrix cultures, and medium with 5 or 10% FCS for suspension cultures. By immunoperoxidase (performed on matrix cultures, both untreated and treated for 30 days with differentiation-promoting agents), the cells of both line were positive for neuron-specific enolase (NSE), microtubule-associated protein 2 (MAP2), class III β-tubulin (human hβ4) isotype, and synaptophysin. In addition, the WERI-Rb1 cells expressed 200 kd neurofilament protein (NFP-H) and retinal S-antigen. Both lines were invariably negative for glial fibrillary acidic (GFA) protein, myelin-associated glycoprotein, myelin basic protein, the epitope recognized by the Leu-7 monoclonal antibody, opsin, and hydroxyindole-0-methyltransferase. In the Y-79 line the presence of NSE and the absence of NF proteins-H, M and -L, of GFA protein, and of retinal S-antigen were confirmed biochemically. No differentiated features were found by electron microscopy in either line. Thus, in the matrix system employed, both lines exhibited solely a potential for neuroblastic differentiation, which was more advanced in the WERI-Rb1 line, as reflected by the antigenic expression of NFP-H and of retinal S-antigen.
机译:在体外,在基质系统中长达120天,在旋转悬浮液中30天,评估了人类视网膜母细胞瘤细胞系Y-79和WERI-Rb 1的分化潜能。基质培养物在有或没有分化促进剂的情况下,用10%胎牛血清(FCS)生长。后者总共使用了5-45天(通常是30天),其中包括7S神经生长因子,二丁酰环AMP,丁酸钠,视黄酸,氢化可的松和抗坏血酸。完全定义的无血清培养基和含有5%或15%FCS的培养基也用于基质培养,而含有5%或10%FCS的培养基用于悬浮培养。通过免疫过氧化物酶(在基质培养物中进行,未处理和用分化促进剂处理30天),两个系的细胞均为神经元特异性烯醇化酶(NSE),微管相关蛋白2(MAP2),III类β阳性-微管蛋白(人hβ4)同种型和突触素。此外,WERI-Rb1细胞表达200 kd神经丝蛋白(NFP-H)和视网膜S抗原。两种品系对于神经胶质原纤维酸性(GFA)蛋白,髓磷脂相关糖蛋白,髓磷脂碱性蛋白,Leu-7单克隆抗体识别的表位,视蛋白和羟吲哚-0-甲基转移酶均阴性。在Y-79品系中,通过生物化学方法证实了NSE的存在和NF蛋白H,M和-L,GFA蛋白以及视网膜S抗原的存在。通过电子显微镜在任何一条线中均未发现区别特征。因此,在所用的基质系统中,如NFP-H和视网膜S抗原的抗原性表达所反映的,两条细胞系仅表现出神经母细胞分化的潜能,在WERI-Rb1细胞系中更为明显。

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