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Bystander effect-mediated gene therapy of gliomas using genetically engineered neural stem cells

机译:基因工程神经干细胞的旁观者效应介导的神经胶质瘤基因治疗

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Since neural stem cells (NSCs) have the ability to migrate toward a tumor mass, genetically engineered NSCs were used for the treatment of gliomas. We first evaluated the "bystander effect" between NSCs transduced with the herpes simplex virus-thymidine kinase (HSVtk) gene (NSCtk) and C6 rat glioma cells under both in vitro and in vivo conditions. A potent bystander effect was observed in co-culture experiments of NSCtk and C6 cells. In the intracranial co-implantation experiments in athymic nude mice and Sprague–Dawley rats, the animals co-implanted with NSCtk and C6 cells and treated with ganciclovir (GCV) showed no intracranial tumors and survived more than 100 days, while those treated with physiological saline (PS) died of tumor progression. We next injected NSCtk cells into the pre-existing C6 tumor in rats and treated them with GCV or PS. The tumor volume was serially measured by magnetic resonance imaging. The tumor disappeared in six out of nine rats in the NSCtk/GCV group, while all the rats treated with PS died of tumor progression by day 21. The results indicate the feasibility of a novel gene therapy strategy for gliomas through a bystander effect generated by intratumoral injection of NSCtk cells and systemic GCV administration.
机译:由于神经干细胞(NSC)具有向肿瘤块迁移的能力,因此将基因工程NSC用于神经胶质瘤的治疗。我们首先评估了在体外和体内条件下,单纯疱疹病毒胸苷激酶(HSVtk)基因(NSCtk)和C6大鼠神经胶质瘤细胞转导的NSC之间的“旁观者效应”。在NSCtk和C6细胞的共培养实验中观察到了有效的旁观者效应。在无胸腺裸鼠和Sprague-Dawley大鼠的颅内共植入实验中,与NSCtk和C6细胞共植入并用更昔洛韦(GCV)治疗的动物没有颅内肿瘤,并且存活了100天以上,而经过生理处理的动物生理盐水(PS)因肿瘤进展而死亡。接下来,我们将NSCtk细胞注射到预先存在的大鼠C6肿瘤中,并用GCV或PS处理它们。通过磁共振成像连续测量肿瘤体积。在NSCtk / GCV组的9只大鼠中,有6只肿瘤消失,而所有接受PS治疗的大鼠在第21天都死于肿瘤进展。结果表明,通过产生旁观者效应,针对神经胶质瘤的新型基因治疗策略是可行的。肿瘤内注射NSCtk细胞和全身性GCV给药。

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