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首页> 外文期刊>The journal of gene medicine >Replication-deficient vaccinia virus gene therapy vector: evaluation of exogenous gene expression mediated by PUV-inactivated virus in glioma cells
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Replication-deficient vaccinia virus gene therapy vector: evaluation of exogenous gene expression mediated by PUV-inactivated virus in glioma cells

机译:复制缺陷型痘苗病毒基因治疗载体:评估胶质瘤细胞中PUV灭活病毒介导的外源基因表达

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Background Mild psoralen and UV (PUV) treatments inactivate viral DNA replication, but the virus retains its ability to infect cells. Thus, PUV treatment of vaccinia virus (VV) vectors may increase the safety of gene delivery and extend the duration of gene expression. Although the first studies on PUV-inactivated VV (PUV-VV) for the delivery of suicide or cytokine genes to cancer cells were promising, the efficiency and kinetics of exogenous gene expression have not been fully evaluated. Furthermore, these studies should be extended to other gene therapy strategies, e.g. tumor suppressor genes. Methods We constructed VV recombinants carrying the luciferase (luc) gene, or the tumor suppressor p53 gene, to analyze exogenous gene expression after PUV treatment. Apoptosis induction and antitumor effects were examined in glioma cell culture and in an animal model, respectively. Results PUV-VV induced efficient PE/L-driven expression of luc and p53 exogenous genes in infected cells. A surprising prolonged p53 protein production was measured in glioma cells infected with PUV-VV expressing p53 (VV-TK-53) on Days 5-7 post-infection, reaching a maximallevel of 9 μg/ml. VV-TK-53 induced apoptosis in 88% and 77.6% of infected C6 and 9L glioma cells, respectively. In contrast, 80% of cells infected with the PUV-inactivated control virus remained viable. Finally, ex vivo infection of C6 glioma cells with PUV-inactivated VV-TK-53 significantly reduced subsequent tumor growth in nude mice. Conclusions Replication-deficient PUV-VV is safe and very efficient in prologed foreign gene expression. Therefore PUV-VVs are recommended as vectors for applications in cancer gene therapy and recombinant vaccine development.
机译:背景轻度补骨脂素和紫外线(PUV)处理可灭活病毒DNA复制,但该病毒保留了其感染细胞的能力。因此,痘苗病毒(VV)载体的PUV处理可以增加基因传递的安全性并延长基因表达的持续时间。尽管有关将自杀或细胞因子基因传递给癌细胞的PUV灭活VV(PUV-VV)的第一个研究是有希望的,但尚未全面评估外源基因表达的效率和动力学。此外,这些研究应扩展到其他基因治疗策略,例如肿瘤抑制基因。方法我们构建了携带荧光素酶(luc)基因或抑癌p53基因的VV重组体,以分析PUV处理后外源基因的表达。分别在神经胶质瘤细胞培养物中和动物模型中检查了凋亡诱导作用和抗肿瘤作用。结果PUV-VV在感染细胞中诱导了luc和p53外源基因在PE / L驱动下的有效表达。在感染后第5-7天,在感染了表达p53(VV-TK-53)的PUV-VV的神经胶质瘤细胞中检测到令人惊讶的延长的p53蛋白生成,最高水平为9μg/ ml。 VV-TK-53分别在感染的C6和9L胶质瘤细胞中诱导了88%和77.6%的凋亡。相反,感染PUV灭活的对照病毒的细胞中80%仍保持活力。最后,用PUV灭活的VV-TK-53对C6胶质瘤细胞进行离体感染显着降低了裸鼠随后的肿瘤生长。结论复制缺陷型PUV-VV在异源基因表达中是安全且非常有效的。因此,推荐将PUV-VV用作载体,用于癌症基因治疗和重组疫苗开发。

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