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有机锗GeM10对黑色素瘤细胞增殖及其与内皮细胞粘连的影响
引用本文:陈静宏,杨占田,张健,陈高平,王万卷.有机锗GeM10对黑色素瘤细胞增殖及其与内皮细胞粘连的影响[J].陕西医学杂志,2005,34(2):131-134.
作者姓名:陈静宏  杨占田  张健  陈高平  王万卷
作者单位:1. 西安交通大学医学院地方病研究所,西安,710061
2. 西安交通大学医学院病理教研室
3. 西安交通大学第二医院皮肤科
基金项目:国家自然科学基金资助项目 (项目号 2 91 70 2 2 6)
摘    要:目的 :探讨锗 Ge M1 0对黑色素瘤细胞增殖的作用 ,及其对高转移性黑色素瘤细胞与内皮细胞粘连的影响。方法 :用 3H- Td R掺入实验检测了 Ge M1 0对 A375黑色素瘤细胞增殖的影响 ;用细胞粘连抑制实验测定了 Ge M1 0对内皮细胞和 A375黑色素瘤细粘连的影响。结果 :Ge M1 0能抑制 A375黑色素瘤细胞 DNA合成 ,浓度为 1 80~ 30 0 μg/ml时抑制率最大 ,可达 73% ,作用时间 2 4 h各浓度 Ge M1 0抑制效果最强。Ge M1 0能部分阻断由L PS和 TNF刺激的内皮细胞和 A375的粘连 ,和对照组比较有显著性差异。结论 :Ge M1 0抗癌活性不仅表现在对肿瘤细胞的直接抑制增殖作用 ,而且可以抑制高转移性黑色素瘤细胞与内皮细胞粘连 ,从而抑制转移瘤形成

关 键 词:黑色素瘤  实验性/药物作用  细胞粘附/药物作用  

Effects of GeM10 on growth of A375 melanoma and adhesion of human melanoma cells to vascular endothelium
Medical College of Xi''an Jiaotong University.Effects of GeM10 on growth of A375 melanoma and adhesion of human melanoma cells to vascular endothelium[J].Shaanxi Medical Journal,2005,34(2):131-134.
Authors:Medical College of Xi'an Jiaotong University
Affiliation:Xi'an 710061
Abstract:Objective: To investigate the anti-tumor effects of GeM10 on the inhibiting tumor growth and blocking tumor-endothelium adhesion. Methods:Anti-tumor cytostatics by 3H-TdR in incorporation test and blocking test of adhesion between endothelial and A375 melanoma cell line were studied. Results :GeM10 could significantly inhibit the 3H-TdR incorporation of A375 melanoma cells, over 70% inhibitory rate could be achieved at the concentration ranging from 180μg/ml to 300μg/ml GeM10, the optional inhibitory dose was 180μg/ml GeM10, and the peak inhibitory rate was at 24 hours. GeM10 could partly block the adhesion between endothelium and A357 melanoma (P<0.05), which might explain why GeM10 could prevent tumor metastasis in the animal model. Conclusion :The GeM10 could not only directly inhibit the tumor growth but prevent tumor metastasis as well. These findings further indicate that the GeM10 may have promise as an anti-tumor drug for clinical use.
Keywords:Melanoma  experimental/drug effects  Cell adhesion/drug effects  Gremanium
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