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Antitumor effects of a dual-specific lentiviral vector carrying the Escherichia coli purine nucleoside phosphorylase gene

机译:携带大肠杆菌嘌呤核苷磷酸化酶基因的双特异性慢病毒载体的抗肿瘤作用

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摘要

The Escherichia coli purine nucleoside phosphorylase/Fludarabine phosphate (ePNP/Fludara) suicide system has several drawbacks, such as side-effects and the low efficiency of ePNP expression. In this study, we evaluated the antitumor effects of the dual-specific 8HSEs-hTERTp-ePNP/Fludara suicide system under hyperthermia in vitro and in vivo. Luciferase activities from the 8HSEs-hTERT and CMV promoters were compared using the dual luciferase assay in SW480 (high hTERT expression) and MKN74 cells (hTERT-negative) in the presence and absence of hyperthermia. Then, we investigated the effects of overexpressing the suicide gene ePNP using 8HSEs-hTERT-driven lentiviral vectors with Fludara on in vitro cell viability, side-effects, apoptosis, cycle distribution, colony formation and in vivo xenograft tumor growth. At 43°C, luciferase activity from the 8HSEs-hTERT promoter was significantly increased in SW480 cells, but not in MKN74 cells. Importantly, luciferase activities from the 8HSEs-hTERT promoter were much higher than from the CMV promoter in hTERT-expressing SW480 cells under heated conditions. The in vitro quantitative analysis showed a 4-fold higher ePNP protein expression from the 8HSEs-hTERT promoter at 43°C than at 37°C in SW480 cells and the ePNP mRNA expression in SW480 cells at 43°C was also higher than at 37°C. Conversely, ePNP mRNA and protein expression were low, almost absent, in hTERT-negative MKN74 cells with or without hyperthermia. After Fludara addition, cell cytotoxicity assays showed that the significant inhibitory effect of the 8HSEs-hTERTp-ePNP on SW480 cells was dose- and time-dependent with hyperthermia. The 8HSEs-hTERTp-ePNP/Fludara suicide system significantly inhibited SW480 cell viability, colony formation, cell cycle progression and induced apoptosis in vitro, but also induced significant bystander effects, especially under the heated conditions. At the protein level, the suicide system significantly promoted Bax, caspase-3 and p53 expression and suppressed Bcl-2 expression. In sections from mouse xenografts, TUNEL assays showed that the suicide system reduced xenograft growth and induced SW480 apoptosis. These results indicated that the combinatorial cancer- and heat-specific promoter system has great potential for improving the efficacy of cancer treatment with hyperthermia. The 8HSEs-hTERTp-ePNP/Fludara system may serve as a powerful strategy for cancer gene therapy combined with hyperthermia.
机译:大肠杆菌嘌呤核苷磷酸化酶/氟达拉滨磷酸酯(ePNP / Fludara)自杀系统有几个缺点,例如副作用和ePNP表达效率低。在这项研究中,我们评估了在体外和体内在高温下双重特异性8HSEs-hTERTp-ePNP / Fludara自杀系统的抗肿瘤作用。在有和没有热疗的情况下,在SW480(高hTERT表达)和MKN74细胞(hTERT阴性)中使用双重荧光素酶测定法比较了8HSEs-hTERT和CMV启动子的荧光素酶活性。然后,我们研究了使用带有Fludara的8HSEs-hTERT驱动的慢病毒载体过表达自杀基因ePNP对体外细胞生存力,副作用,凋亡,周期分布,集落形成和体内异种移植肿瘤生长的影响。在43°C,来自8HSEs-hTERT启动子的萤光素酶活性在SW480细胞中显着增加,而在MKN74细胞中则没有。重要的是,在加热条件下,在表达hTERT的SW480细胞中,来自8HSEs-hTERT启动子的荧光素酶活性远高于来自CMV启动子的荧光素酶活性。体外定量分析显示,在43°C下,来自8HSEs-hTERT启动子的ePNP蛋白表达在SW480细胞中比在37°C高出4倍,在43°C,SW480细胞中的ePNP mRNA表达也比在37°C高。 ℃。相反,在有或没有热疗的hTERT阴性MKN74细胞中,ePNP mRNA和蛋白表达较低,几乎不存在。加入Fludara后,细胞的细胞毒性分析表明,8HSEs-hTERTp-ePNP对SW480细胞的显着抑制作用是剂量依赖性和时间依赖性的。 8HSEs-hTERTp-ePNP / Fludara自杀系统在体外显着抑制SW480细胞的活力,集落形成,细胞周期进程并诱导细胞凋亡,但也诱导了显着的旁观者效应,尤其是在加热条件下。在蛋白质水平上,自杀系统显着促进了Bax,caspase-3和p53的表达,并抑制了Bcl-2的表达。在小鼠异种移植的切片中,TUNEL分析表明自杀系统降低了异种移植的生长并诱导SW480细胞凋亡。这些结果表明组合的癌症和热特异性启动子系统具有提高热疗癌症治疗功效的巨大潜力。 8HSEs-hTERTp-ePNP / Fludara系统可作为结合热疗的癌症基因治疗的有力策略。

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