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Kinase domain insert containing receptor promotor controlled suicide gene system kills human umbilical vein endothelial cells

机译:含有受体启动子控制的自杀基因系统的激酶结构域插入片段杀死人的脐静脉内皮细胞

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AIM: To evaluate the killing effect of double suicide gene mediated by adenovirus and regulated under kinase domain insert containing receptor (KDR) promoter on human umbilical vein endothelial cells. METHODS: By PCR technology, human KDR promoter gene, Escherichia coli (E. coli) cytosine deaminase (CD) gene and the herpes simple virus-thymidine kinase (TK) gene were cloned. Plasmid pKDR-CDglyTK was constructed with them. Then, a recombinant adenoviral plasmid pAdKDR-CDglyTK was constructed in a "two-step transformation protocol". The newly constructed plasmids were transfected to 293 packaging cells to grow adenoviruses, which were further propagated and purified. Human umbilical vein endothelial cells (HUVEC) were infected with a different multiplicity of infection (MOI) of resultant recombinant adenovirus, the infection rate was measured with the aid of (GFP) expression. Infected cells were cultured in culture media containing different concentrations of (GCV) and/or 5-(FC), and the killing effects were measured. RESULTS: Recombinant adenoviruses AdKDR-CDglyTK were successfully constructed, and they infected HUVEC cells efficiently. Our data indicated that the infection rate was relevant to MOI of recombinant adenoviruses. HUVEC cells infected with AdKDR-CDglyTK were highly sensitive to the prodrugs, their survival rate correlated to both the concentration of the prodrugs and the MOI of recombinant adenoviruses. Our data also indicated that the two prodrugs used in combination were much more effective on killing transgeneic cells than GCV or 5-FC used alone. CONCLUSION: Prodrug/KDR-CDglyTK system is effective on killing HUVEC cells, its killing effect correlates to the concentration of prodrugs and recombinant adenovirus' MOI. Combined use of the two prodrugs confers better killing effects on transgeneic cells.
机译:目的:研究腺病毒介导的双自杀基因在含受体(KDR)启动子的激酶结构域插入蛋白的调控下对人脐静脉内皮细胞的杀伤作用。方法:采用PCR技术,克隆人KDR启动子基因,大肠杆菌胞嘧啶脱氨酶(CD)基因和单纯疱疹病毒胸苷激酶(TK)基因。用它们构建质粒pKDR-CDglyTK。然后,以“两步转化方案”构建重组腺病毒质粒pAdKDR-CDglyTK。将新构建的质粒转染到293包装细胞中以生长腺病毒,然后进一步繁殖和纯化。用所得重组腺病毒的不同感染复数(MOI)感染人脐静脉内皮细胞(HUVEC),借助(GFP)表达测定感染率。将感染的细胞在含有不同浓度(GCV)和/或5-(FC)的培养基中培养,并测量杀伤作用。结果:重组腺病毒AdKDR-CDglyTK成功构建,能有效感染HUVEC细胞。我们的数据表明感染率与重组腺病毒的MOI有关。用AdKDR-CDglyTK感染的HUVEC细胞对前药高度敏感,其存活率与前药浓度和重组腺病毒的MOI均相关。我们的数据还表明,组合使用的两种前药比单独使用的GCV或5-FC更有效地杀死转基因细胞。结论:前药/ KDR-CDglyTK系统可有效杀伤HUVEC细胞,其杀伤作用与前药浓度和重组腺病毒MOI有关。两种前药的联合使用可赋予转基因细胞更好的杀伤作用。

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