Nakamura Masaki, Iwahashi Makoto, Nakamori Mikihito, Ueda Kentaro, Matsuura Ichiro, Noguchi Kohei, Yamaue Hiroki
Second Department of Surgery, Wakayama Medical University, School of Medicine, Wakayama 641-8510, Japan.
Clin Cancer Res. 2002 Aug;8(8):2742-9.
Recently, several studies have shown that vaccine therapy using dendritic cells (DCs) genetically engineered to express a surrogate tumor antigen can effectively induce antitumor immunity. In this study, murine bone marrow DCs were adenovirally transduced with murine endogenous tumor antigen gp70 expressed in CT26 cells and granulocyte macrophage colony-stimulating factor (GM-CSF), and we examined whether antigen-specific CTL responses and therapeutic immunity could be induced in mice immunized with those genetically modified DCs. The cytotoxic activity against CT26 in mice immunized with gp70-transduced DCs was significantly higher than that in control (P < 0.01) and was enhanced by GM-CSF-cotransduction (P < 0.001). GM-CSF gene transfer into DCs expressing tumor-associated antigen enhances CC chemokine receptor 7 expression on DCs, leading to improved migratory capacity of DCs to draining lymph nodes. Consequently, an effective antitumor immune response would be induced. Vaccination using gp70-transduced DCs provided remarkable therapeutic efficacy in s.c. models. Moreover, it could be sufficiently augmented by GM-CSF-cotransduction of DCs. These results support that vaccination therapy using DCs simultaneously transduced with tumor-associated antigen can elicit potent CTL response, and GM-CSF-cotransduction of DCs could optimize therapeutic response. Further investigation is needed to optimize this vaccine therapy to achieve the obvious benefit in clinical application.
最近,多项研究表明,使用经过基因工程改造以表达替代肿瘤抗原的树突状细胞(DCs)进行疫苗治疗可有效诱导抗肿瘤免疫。在本研究中,用在CT26细胞中表达的小鼠内源性肿瘤抗原gp70和粒细胞巨噬细胞集落刺激因子(GM-CSF)通过腺病毒转导小鼠骨髓DCs,并且我们检查了在用那些基因修饰的DCs免疫的小鼠中是否可以诱导抗原特异性CTL反应和治疗性免疫。用gp70转导的DCs免疫的小鼠对CT26的细胞毒性活性显著高于对照组(P <0.01),并且通过GM-CSF共转导而增强(P <0.001)。将GM-CSF基因转移到表达肿瘤相关抗原的DCs中可增强DCs上CC趋化因子受体7的表达,从而提高DCs向引流淋巴结的迁移能力。因此,将诱导有效的抗肿瘤免疫反应。使用gp70转导的DCs进行疫苗接种在皮下模型中提供了显著的治疗效果。此外,通过DCs的GM-CSF共转导可以充分增强它。这些结果支持使用与肿瘤相关抗原同时转导的DCs进行疫苗接种治疗可引发有效的CTL反应,并且DCs的GM-CSF共转导可优化治疗反应。需要进一步研究以优化这种疫苗治疗,以便在临床应用中获得明显益处。