激光对细胞粘附的影响及其对HeLa S3与人二倍体细胞相互关系的影响。

V F Dima, D Petraşincu, S V Dima, I N Mihăilescu, M Stirbeţ, A Popa
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引用次数: 0

摘要

采用体外细胞侵袭模型研究了氮激光照射(337.1 nm)后HeLa S3肿瘤细胞与人成纤维细胞的相互作用。为了定量和形态学评价氮激光辐射对肿瘤粘附成纤维细胞单层的作用,我们使用:a) 3h -胸腺嘧啶标记HeLa S3肿瘤细胞;B)通过相衬和扫描电子显微镜进行形态学改变研究。研究结果强调了以下几个方面:在非辐照细胞培养中,我们注意到三个相互作用阶段:粘附、肿瘤扩散和移位,并伴有成纤维细胞的破坏;另一方面,我们发现激光照射的肿瘤细胞与未照射的人成纤维细胞的粘附减少。2. 不同激光强度(如0.2 kJ/m2—48.1%)照射后,未照射的肿瘤细胞粘附于成纤维细胞单层的比例显著增加;0.8 kJ/m2—63.8%,1.6 kJ/m2—79.5%)。这一现象证明辐照影响与肿瘤黏附率密切相关。3.肿瘤细胞与成纤维细胞的数值比值在肿瘤黏附和侵袭过程中的重要性(如:比例为1:10的肿瘤黏附达到8.1%;在1:5 - 25.9%;1:1—59.4%,2:1—83.9%)。4. 在暴露于高和非常高的激光影响(1.6- 6.4千焦/平方米)后,两种细胞类型都有明显的细胞毒性作用。我们的研究结果强调了近紫外激光照射对某些肿瘤粘附和侵袭机制的影响,并证明了表现出不同生命潜力的细胞群之间的相互关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Laser effects on cellular adhesion and influence on the interrelation between HeLa S3 and human diploid cells.

The interactions between HeLa S3 tumoral cells and human fibroblasts after nitrogen-laser irradiation (337.1 nm) have been studied by using an in vitro cell invasion model. For the quantitative and morphological evaluation of nitrogen-laser radiation action upon tumoral adhesion to the fibroblast monostrate, we used: a) 3H-thymidine labelling of HeLa S3 tumoral cells; b) morphological modifications studies by phase contrast and scanning electron microscopy. The results emphasized the following aspects: 1. In non-irradiated cell cultures we noticed three interaction stages: adhesion, tumoral spreading and displacement with fibroblasts destruction; on the other side, we found a reduced adhesion to non-irradiated human fibroblasts of laser irradiated tumoral cells. 2. Significant percent increasing of non-irradiated tumoral cells adhesion to fibroblast monostrate, irradiated with various laser fluences (e.g. 0.2 kJ/m2--48.1%; 0.8 kJ/m2--63.8% and for 1.6 kJ/m2--79.5%). This phenomenon evidenced the close interrelation between irradiation fluences and tumoral adhesion rates. 3. The importance of numerical ratio between tumoral cells and fibroblasts in tumoral adhesion and invasion processes (e.g. ratio 1:10 tumoral adhesion reached 8.1%; in 1:5--25.9%; in 1:1--59.4% and for 2:1--83.9%). 4. Marked cytotoxic effects for both cell types after exposure to high and very high laser fluences (1.6--6.4 kJ/m2). Our results emphasize near UV-laser irradiation effects upon some of tumoral adhesion and invasion mechanisms and demonstrate the interrelations between cell populations manifesting a different vital potential.

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