Tumour Virology Division F010, German Cancer Research Center (DKFZ), Heidelberg, Germany.
J Virol. 2012 Oct;86(19):10418-31. doi: 10.1128/JVI.00848-12. Epub 2012 Jul 11.
In this study, our goal was to generate a chimeric adenovirus-parvovirus (Ad-PV) vector that combines the high-titer and efficient gene transfer of adenovirus with the anticancer potential of rodent parvovirus. To this end, the entire oncolytic PV genome was inserted into a replication-defective E1- and E3-deleted Ad5 vector genome. As we found that parvoviral NS expression inhibited Ad-PV chimera production, we engineered the parvoviral P4 early promoter, which governs NS expression, by inserting into its sequence tetracycline operator elements. As a result of these modifications, P4-driven expression was blocked in the packaging T-REx-293 cells, which constitutively express the tetracycline repressor, allowing high-yield chimera production. The chimera effectively delivered the PV genome into cancer cells, from which fully infectious replication-competent parvovirus particles were generated. Remarkably, the Ad-PV chimera exerted stronger cytotoxic activities against various cancer cell lines, compared with the PV and Ad parental viruses, while being still innocuous to a panel of tested healthy primary human cells. This Ad-PV chimera represents a novel versatile anticancer agent which can be subjected to further genetic manipulations in order to reinforce its enhanced oncolytic capacity through arming with transgenes or retargeting into tumor cells.
在这项研究中,我们的目标是生成一种嵌合腺病毒-细小病毒(Ad-PV)载体,该载体结合了腺病毒的高滴度和高效基因转移能力以及啮齿动物细小病毒的抗癌潜力。为此,我们将整个溶瘤性 PV 基因组插入到复制缺陷型 E1 和 E3 缺失的 Ad5 载体基因组中。由于我们发现细小病毒 NS 表达抑制了 Ad-PV 嵌合体的产生,因此我们通过插入四环素操纵元件来修饰细小病毒 P4 早期启动子,该启动子控制 NS 表达。由于这些修饰,在包装 T-REx-293 细胞中,P4 驱动的表达被阻断,该细胞持续表达四环素抑制剂,从而允许高效价嵌合体的产生。嵌合体有效地将 PV 基因组递送到癌细胞中,从中产生了具有完全感染性的复制完整的细小病毒颗粒。值得注意的是,与 PV 和 Ad 亲本病毒相比,Ad-PV 嵌合体对各种癌细胞系表现出更强的细胞毒性活性,而对一系列测试的健康原代人类细胞仍然无害。这种 Ad-PV 嵌合体代表了一种新型多功能抗癌剂,可以进一步进行遗传操作,通过携带转基因或重新靶向肿瘤细胞来增强其增强的溶瘤能力。