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多酚棉酚对肿瘤细胞系的放射增敏作用源于双链断裂修复的抑制,而非凋亡的增强。

Radiosensitization of tumour cell lines by the polyphenol Gossypol results from depressed double-strand break repair and not from enhanced apoptosis.

作者信息

Kasten-Pisula Ulla, Windhorst Sabine, Dahm-Daphi Jochen, Mayr Georg, Dikomey Ekkehard

机构信息

Laboratory of Radiobiology & Experimental Radiooncology, University Medical Center Hamburg-Eppendorf, Germany.

出版信息

Radiother Oncol. 2007 Jun;83(3):296-303. doi: 10.1016/j.radonc.2007.04.024. Epub 2007 May 22.

Abstract

PURPOSE

New drugs are needed to increase the efficiency of radiotherapy in order to improve the therapeutic outcome of tumour patients. In this respect, the polyphenol Gossypol might be of interest, because of its effect on apoptosis and DNA repair, which is either mediated directly or indirectly via the inositol phosphate metabolism. It was investigated, whether these effects result in enhanced radiosensitivity of tumour cells.

MATERIAL AND METHODS

Tumour cell lines investigated: A549, FaDu, H1299, MCF7 and Du145. Cell cycle distribution was determined by FACS analysis, apoptosis was measured by DAPI staining and caspase3/7 activity. Double-strand breaks (DSB) were investigated via gammaH2AX-foci and cell survival by colony formation assay. The level of inositol phosphates was determined by HPLC, protein expression by Western blot.

RESULTS

In A549 cells, Gossypol at concentrations 1microM strongly affects proliferation with only a modest arrest in the G1-phase, but with no increase in the fraction of apoptotic cells or the number of additional DSB. Additional DSB were only seen in FaDu cells, where Gossypol (2microM) was extremely toxic with a plating efficiency <0.002. When combined with irradiation, incubation with Gossypol (1-2microM) was found to result in an enhanced radiosensitivity with, however, a substantial variation. While there was a strong radiosensitization for FaDu and Du145 cells, there was an intermediate response for A549 cells, but almost no effect for H1299 and MCF7 cells. This sensitization was not caused from an elevated rate of apoptosis, but primarily resulted from reduced DSB repair capacity. The reduction in DSB repair could be ascribed neither to changes in the level of repair proteins relevant for non-homologous end-joining (Ku70, Ku80, DNA-PKcs) nor to changes in the level of higher phosphorylated inositols, whereby the latter were even found to be enhanced by Gossypol.

CONCLUSIONS

For some tumour cell lines treatment with low concentrations of Gossypol can be used to inhibit DSB repair capacity and with that to increase the cellular radiosensitivity.

摘要

目的

需要新型药物来提高放射治疗的效率,以改善肿瘤患者的治疗效果。在这方面,多酚棉酚可能值得关注,因为它对细胞凋亡和DNA修复有影响,这种影响是直接或间接通过肌醇磷酸代谢介导的。研究了这些作用是否会导致肿瘤细胞放射敏感性增强。

材料与方法

研究的肿瘤细胞系:A549、FaDu、H1299、MCF7和Du145。通过流式细胞术分析确定细胞周期分布,通过DAPI染色和caspase3/7活性检测细胞凋亡。通过γH2AX焦点研究双链断裂(DSB),通过集落形成试验检测细胞存活。通过高效液相色谱法测定肌醇磷酸水平,通过蛋白质印迹法测定蛋白质表达。

结果

在A549细胞中,1μM浓度的棉酚强烈影响细胞增殖,仅使G1期有适度停滞,但凋亡细胞比例或额外DSB数量没有增加。仅在FaDu细胞中观察到额外的DSB,其中棉酚(2μM)具有极高毒性,平板接种效率<0.002。当与辐射联合使用时,发现用棉酚(1 - 2μM)孵育会导致放射敏感性增强,但存在很大差异。虽然FaDu和Du145细胞有强烈的放射增敏作用,但A549细胞有中等反应,而H1299和MCF7细胞几乎没有影响。这种增敏作用不是由凋亡率升高引起的,而是主要由DSB修复能力降低导致的。DSB修复的降低既不能归因于与非同源末端连接相关的修复蛋白水平(Ku70、Ku80、DNA-PKcs)的变化,也不能归因于更高磷酸化肌醇水平的变化,甚至发现棉酚会使后者升高。

结论

对于某些肿瘤细胞系,用低浓度棉酚处理可用于抑制DSB修复能力,从而提高细胞放射敏感性。

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