Greco O, Joiner M C, Doleh A, Powell A D, Hillman G G, Scott S D
Department of Radiation Oncology, Wayne State University and Karmanos Cancer Institute, Hudson Webber CRC, Detroit, MI, USA.
Gene Ther. 2006 Feb;13(3):206-15. doi: 10.1038/sj.gt.3302640.
Although a significant negative prognostic factor, tumor hypoxia can be exploited for gene therapy. To maximize targeting within the tumor mass, we have developed synthetic gene promoters containing hypoxia-responsive elements (HREs) from the erythropoietin (Epo) gene as well as radiation-responsive CArG elements from the early growth response (Egr) 1 gene. Furthermore, to achieve high and sustained expression of the suicide gene herpes simplex virus thymidine kinase (HSVtk), our gene therapy vectors contain an expression amplification system, or 'molecular switch', based on Cre/loxP recombination. In human glioma and breast adenocarcinoma cells exposed to hypoxia and/or radiation, the HRE/CArG promoter rapidly activated Cre recombinase expression leading to selective and sustained HSVtk synthesis. Killing of transfected tumor cells was measured after incubation with the prodrug ganciclovir (GCV; converted by HSVtk into a cytotoxin). In vitro, higher and more selective GCV-mediated toxicity was achieved with the switch vectors, when compared with the same inducible promoters driving HSVtk expression directly. In tumor xenografts implanted in nude mice, the HRE/CArG-switch induced significant growth delay and tumor eradication. In conclusion, hypoxia- and radiation-activated 'molecular switch' vectors represent a promising strategy for both targeted and effective gene therapy of solid tumors.
尽管肿瘤缺氧是一个重要的不良预后因素,但可将其用于基因治疗。为了在肿瘤块内实现最大程度的靶向作用,我们开发了合成基因启动子,其包含来自促红细胞生成素(Epo)基因的缺氧反应元件(HREs)以及来自早期生长反应(Egr)1基因的辐射反应性CArG元件。此外,为了实现自杀基因单纯疱疹病毒胸苷激酶(HSVtk)的高表达和持续表达,我们的基因治疗载体包含一个基于Cre/loxP重组的表达扩增系统,即“分子开关”。在暴露于缺氧和/或辐射的人胶质瘤和乳腺腺癌细胞中,HRE/CArG启动子迅速激活Cre重组酶表达,导致选择性和持续的HSVtk合成。在用前药更昔洛韦(GCV;由HSVtk转化为细胞毒素)孵育后,测量转染肿瘤细胞的杀伤情况。在体外,与直接驱动HSVtk表达的相同诱导型启动子相比,开关载体实现了更高且更具选择性的GCV介导的毒性。在植入裸鼠的肿瘤异种移植模型中,HRE/CArG开关诱导了显著的生长延迟并根除了肿瘤。总之,缺氧和辐射激活的“分子开关”载体代表了一种针对实体瘤进行靶向和有效基因治疗的有前景的策略。