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紫外线照射后径向生长阶段黑色素瘤细胞系中的基因组不稳定性

Genomic instability in radial growth phase melanoma cell lines after ultraviolet irradiation.

作者信息

Hussein M R, Haemel A K, Sudilovsky O, Wood G S

机构信息

Department of Pathology, Faculty of Medicine, Assuit University, Assuit, Egypt.

出版信息

J Clin Pathol. 2005 Apr;58(4):389-96. doi: 10.1136/jcp.2004.021519.

Abstract

BACKGROUND/AIMS: Although ultraviolet (UV) irradiation, apoptosis, and genomic instability are all potentially involved in the pathogenesis of melanoma, in vitro studies investigating these changes in the radial growth phase of this neoplasm are still lacking; therefore, this study was designed to investigate these changes.

METHOD

An in vitro system consisting of three radial growth phase Wistar melanoma cell lines (WM35, WM3211, and WM1650) was established. Cells were UV irradiated (10 mJ/cm2 for UVB and 6 J/cm2 for UVA), harvested after UV exposure, and evaluated for viability and apoptosis using Trypan blue and terminal deoxynucleotidyl transferase mediated dUTP digoxigenin nick end labelling assays, respectively. Polymerase chain reaction based microsatellite assays were used to examine the cell lines for the presence of microsatellite instability (MSI) using 21 markers at the 1p, 2p, 3p, 4q, 9p, and 17p regions.

RESULTS

Exposure to UV initiated progressive cell death associated with pronounced apoptosis, with UVA having a greater effect than UVB. MSI was found in UVB (WM35 and WM3211) and UVA (WM35) irradiated cell lines at 1p, 9p, and 17p, but not in non-irradiated cells. The prevalence of MSI was higher after UVB irradiation (14%) than UVA irradiation (4.7%), and was most frequently found at D1S233.

CONCLUSIONS

The ability of erythemogenic UV irradiation to induce both apoptosis and MSI in radial growth phase melanoma cells is suggestive of its role in melanoma pathogenesis. This instability may reflect a hypermutability state, oxidative stress induced DNA damage, replication infidelity, or a combination of these factors.

摘要

背景/目的:尽管紫外线(UV)照射、细胞凋亡和基因组不稳定都可能参与黑色素瘤的发病机制,但仍缺乏对该肿瘤径向生长期这些变化的体外研究;因此,本研究旨在调查这些变化。

方法

建立了一个由三种径向生长期Wistar黑色素瘤细胞系(WM35、WM3211和WM1650)组成的体外系统。细胞接受紫外线照射(UVB为10 mJ/cm²,UVA为6 J/cm²),照射后收获细胞,分别使用台盼蓝和末端脱氧核苷酸转移酶介导的dUTP地高辛标记法评估细胞活力和凋亡情况。基于聚合酶链反应的微卫星分析用于使用位于1p、2p、3p、4q、9p和17p区域的21个标记物检测细胞系中微卫星不稳定性(MSI)的存在。

结果

紫外线照射引发了与明显凋亡相关的进行性细胞死亡,UVA的作用比UVB更大。在UVB(WM35和WM3211)和UVA(WM35)照射的细胞系中,在1p、9p和17p处发现了MSI,但在未照射的细胞中未发现。UVB照射后MSI的发生率(14%)高于UVA照射后(4.7%),且最常见于D1S233。

结论

致红斑紫外线照射在径向生长期黑色素瘤细胞中诱导凋亡和MSI的能力提示了其在黑色素瘤发病机制中的作用。这种不稳定性可能反映了一种高突变状态、氧化应激诱导的DNA损伤、复制错误或这些因素的组合。

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