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着色性干皮病成纤维细胞系中的自发体外恶性转化

Spontaneous in vitro malignant transformation in a xeroderma pigmentosum fibroblast line.

作者信息

Thielmann H W, Fischer E, Dzarlieva R T, Komitowski D, Popanda O, Edler L

出版信息

Int J Cancer. 1983 Jun 15;31(6):687-700. doi: 10.1002/ijc.2910310603.

Abstract

This paper deals with a spontaneous malignant transformation in one of our XP fibroblast lines. This cell line, designated XP29MA, was derived from a 14-year-old boy who did not show skin tumors or precancerous alterations either at the time of clinical examination or when the biopsy was taken. We have compared the following features in both the malignant and the benign cell line from which the malignant line developed: tumor formation in nude mice, repair capacity, cytogenetic status, light and electron microscopic characteristics. The benign cell line XP29MA had a doubling time of 4.3 d, did not form tumors in nude mice, showed a very low repair capacity (as determined by colony-forming ability, unscheduled DNA synthesis and alkaline elution) but exhibited a normal cytogenetic and ultrastructural status. In contrast, the transformed cell line XP29MAmal grew three times faster, formed colonies in methyl cellulose, gave rise to fibrosarcomas in nude mice, showed a drastically higher repair capacity, and was characterized by an extreme genetic imbalance, resulting from numerical and structural chromosome alterations of Nos. 1, 3, 4, 8, 12, 16, 17, 18, 20 and 21. Ultrastructural examination revealed fusiform and polygonal cells, the latter exhibiting large indented nuclei, vesicular dilatations of the endoplasmatic reticulum and numerous lysosomes. The higher repair capacity in XP29MAmal cells is tentatively explained in terms of reversion, enhancement of post-replication repair and/or expression of SOS-type functions.

摘要

本文探讨了我们的一个着色性干皮病成纤维细胞系中的自发恶性转化。这个细胞系命名为XP29MA,源自一名14岁男孩,在临床检查时以及活检时均未表现出皮肤肿瘤或癌前病变。我们比较了恶性细胞系及其衍生而来的良性细胞系的以下特征:裸鼠体内的肿瘤形成、修复能力、细胞遗传学状态、光镜和电镜特征。良性细胞系XP29MA的倍增时间为4.3天,在裸鼠体内不形成肿瘤,修复能力非常低(通过集落形成能力、非预定DNA合成和碱性洗脱测定),但细胞遗传学和超微结构状态正常。相比之下,转化后的细胞系XP29MAmal生长速度快三倍,能在甲基纤维素中形成集落,在裸鼠体内引发纤维肉瘤,修复能力显著更高,其特征是由于1、3、4、8、12、16、17、18、20和21号染色体的数目和结构改变导致的极端遗传失衡。超微结构检查显示有梭形和多边形细胞,后者细胞核有大的凹陷,内质网呈泡状扩张,并有大量溶酶体。XP29MAmal细胞较高的修复能力初步解释为回复突变、复制后修复增强和/或SOS型功能的表达。

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