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人神经母细胞瘤连续细胞系SK-N-SH、SK-N-BE(2)和SK-N-MC的精细结构

The fine structure of continuous human neuroblastoma lines SK-N-SH, SK-N-BE(2), and SK-N-MC.

作者信息

Barnes E N, Biedler J L, Spengler B A, Lyser K M

出版信息

In Vitro. 1981 Jul;17(7):619-31. doi: 10.1007/BF02618461.

Abstract

Cell cultures of the continuous human neuroblastoma lines SK-N-SH, SK-N-BS(2), and SK-N-MC at exponential and stationary growth phase have been examined by electron microscopy. At the level of fine structure these cells did not show typical neuronal differentiation such as extensive granular endoplasmic reticulum or neurites with microtubules and neurofilaments. Instead they were characterized by abundant free ribosomes, moderate Golgi complexes, and usually scant granular endoplasmic reticulum, features similar to the fine structure of early normal embryonic autonomic neurons. However, in several respects appearance of differentiated features of the neuroblastoma cells did not follow the pattern observed for normal neurons, suggesting noncoordinate expression of neuronal phenotypic properties. First, an occasional neuroblastoma cell had as extensive granular endoplasmic reticulum as would be found at later stages in normal developing neurons. Second, the cellular processes of these neuroblastoma cells did not have the fine structure of developing or mature axons in vivo. Third, few dense core vesicles were found in SK-N-SH and SK-N-BE(2), though these organelles are numerous in early normal adrenergic neurons and the adrenergic character of these two lines is apparent from other studies that have demonstrated expression of neurotransmitter synthesizing enzymes (SK-N-MC is cholinergic). The fine structural characterization of these continuous human neuroblastoma cell lines will allow this parameter to be utilized with other approaches in future experimental studies.

摘要

已通过电子显微镜检查了处于指数生长期和稳定生长期的人神经母细胞瘤连续细胞系SK-N-SH、SK-N-BS(2)和SK-N-MC的细胞培养物。在精细结构水平上,这些细胞未显示出典型的神经元分化特征,如广泛的颗粒内质网或带有微管和神经丝的神经突。相反,它们的特征是有丰富的游离核糖体、适度的高尔基体复合物,且通常颗粒内质网较少,这些特征类似于早期正常胚胎自主神经元的精细结构。然而,在几个方面,神经母细胞瘤细胞分化特征的出现并不遵循正常神经元所观察到的模式,这表明神经元表型特性的表达不协调。首先,偶尔有神经母细胞瘤细胞具有与正常发育后期神经元中发现的一样广泛的颗粒内质网。其次,这些神经母细胞瘤细胞的细胞突起在体内不具有发育中或成熟轴突的精细结构。第三,在SK-N-SH和SK-N-BE(2)中发现的致密核心囊泡很少,尽管这些细胞器在早期正常肾上腺素能神经元中大量存在,并且从其他已证明神经递质合成酶表达的研究中可以明显看出这两个细胞系的肾上腺素能特性(SK-N-MC是胆碱能的)。这些连续的人神经母细胞瘤细胞系的精细结构特征将使该参数在未来的实验研究中与其他方法一起得到应用。

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