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首页> 外文期刊>Journal of Huazhong University of Science and Technology >Inhibitory Effect of Coxsackie Adenovirus Receptor on Invasion and Metastasis Phenotype of Ovarian Cancer Cell Line SKOV3
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Inhibitory Effect of Coxsackie Adenovirus Receptor on Invasion and Metastasis Phenotype of Ovarian Cancer Cell Line SKOV3

机译:柯萨奇腺病毒受体对卵巢癌细胞SKOV3侵袭和转移表型的抑制作用。

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Full-length coxsackie adenovirus receptor (CAR) eukaryotic expression plasmid was transfected into an ovarian cell line, SKOV3, and its effect on the change of malignant metastasis phenotype was explored. CAR mRNA and protein expression levels among 4 ovarian cancer cell lines (A2780, SKOV3, SW626, CAOV3) and the positive control 293 (a transformed human embryo kidney cell line) was detected by using semi-quantitative RT-RCR and Western blot and compared. CAR-negative SKOV3 was transfected with the eukaryotic expression plasmid containing a full-length CAR cDNA and mock-vector respectively. The positive clones were screened by G418. The biological behavior changes of positive transfected cells were gauged by colony formation in soft agar assay and cell adhesion assay. Among the cell lines, there were obviously different CAR expression levels. CAR could not be detected in SKOV3. In transfected cell group, CAR expression was enhanced obviously as compared with non-transfected or mock-transfected groups. Cell adhesion in the transfected group was promoted. The number of colony formation was reduced significantly in transfected groups (25. 32 + 8. 91) as compared with that in non-transfected group (88. 75 + 13. 98) and mock-transfected group (82. 53±19. 37). Among the 4 ovarian cancer cell lines, CAR expression level was variable. Exogenous CAR expression had a potential role in inhibiting the malignant metastasis phenotype of ovary cancer cells.
机译:将全长柯萨奇腺病毒受体(CAR)真核表达质粒转染到卵巢细胞系SKOV3中,探讨其对恶性转移表型变化的影响。使用半定量RT-RCR和Western blot检测4种卵巢癌细胞系(A2780,SKOV3,SW626,CAOV3)和阳性对照293(转化的人类胚胎肾细胞系)中的CAR mRNA和蛋白质表达水平并进行比较。用分别含有全长CAR cDNA和模拟载体的真核表达质粒转染CAR阴性的SKOV3。通过G418筛选阳性克隆。通过在软琼脂试验和细胞粘附试验中的菌落形成来测量阳性转染细胞的生物学行为变化。在细胞系中,CAR表达水平明显不同。在SKOV3中未检测到CAR。与未转染或模拟转染组相比,转染细胞组CAR表达明显增强。转染组的细胞粘附得到促进。与未转染组(88. 75 + 13. 98)和模拟转染组(82. 53±19)相比,转染组(25. 32 + 8. 91)的菌落形成数量明显减少。 37)。在这4种卵巢癌细胞系中,CAR表达水平是可变的。外源CAR表达在抑制卵巢癌细胞恶性转移表型中具有潜在作用。

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