Lin Rong-kai, Huang Zong-hai, Su Guo-qiang, Ke Zhi-yong, Chen Jian-xiong, Zhou Jin-jie
Department of General Surgery, Zhujiang Hospital, Southern Medical University, Guangzhou 510282, China.
Di Yi Jun Yi Da Xue Xue Bao. 2005 May;25(5):524-7.
To observe the selective killing effect of adenovirus (Ad)-mediated double suicide gene driven by kinase domain-containing receptor(KDR) promoter on human colorectal cancer LoVo cells and human umbilical vein endothelial ECV304 cells.
The plasmid pAdEasy-KDR-CDglyTK was transfected into 293 packaging cells for amplification of the infectious Ad and used to infect the KDR-producing cells (ECV304 and LoVo) and the KDR-nonproducing cells (LS174T) respectively. The three cells were treated with the prodrugs 5-flurocytosine (5-FC) and ganciclovir (GCV) at different concentrations after infection. The killing effects of the fusion gene system on the cells were evaluated. The distribution of cell cycle was detected by flow cytometry.
The infection rates of the recombinant Ad were similar among the 3 cells, gradually increasing with the increment of multiplicity of infection (MOI) and reaching 100% with the MOI of 200. The LoVo cells and ECV304 cells infected with Ad-KDR-CDglyTK were highly sensitive to both of the prodrugs (P>0.1), whereas the infected LS174T cells failed to exhibit similar sensitivity (P<0.001). The killing effect of CD/TK fusion gene on the target cells was much stronger than that of either suicide gene (P<0.001). The cell cycle of LoVo cells was arrested at G1 phase.
The CD/TK fusion gene system driven by KDR promoter can selectively kill KDR-expressing human colorectal cancer LoVo cells and endothelial cells.
观察由含激酶结构域受体(KDR)启动子驱动的腺病毒(Ad)介导的双自杀基因对人结直肠癌LoVo细胞和人脐静脉内皮ECV304细胞的选择性杀伤作用。
将质粒pAdEasy-KDR-CDglyTK转染至293包装细胞以扩增感染性Ad,并分别用于感染产生KDR的细胞(ECV304和LoVo)和不产生KDR的细胞(LS174T)。感染后,用不同浓度的前体药物5-氟胞嘧啶(5-FC)和更昔洛韦(GCV)处理这三种细胞。评估融合基因系统对细胞的杀伤作用。通过流式细胞术检测细胞周期分布。
重组Ad在这3种细胞中的感染率相似,随感染复数(MOI)增加而逐渐升高,MOI为200时达到100%。感染Ad-KDR-CDglyTK的LoVo细胞和ECV304细胞对两种前体药物均高度敏感(P>0.1),而感染的LS174T细胞未表现出类似的敏感性(P<0.001)。CD/TK融合基因对靶细胞的杀伤作用比任一自杀基因都强得多(P<0.001)。LoVo细胞的细胞周期停滞在G1期。
由KDR启动子驱动的CD/TK融合基因系统可选择性杀伤表达KDR的人结直肠癌LoVo细胞和内皮细胞。