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将经基因工程改造以分泌干扰素-α的树突状细胞递送至中枢神经系统肿瘤中可增强外周肿瘤细胞疫苗的疗效:对凋亡途径的依赖性。

Delivery of dendritic cells engineered to secrete IFN-alpha into central nervous system tumors enhances the efficacy of peripheral tumor cell vaccines: dependence on apoptotic pathways.

作者信息

Kuwashima Naruo, Nishimura Fumihiko, Eguchi Junichi, Sato Hidemitsu, Hatano Manabu, Tsugawa Takahiko, Sakaida Tsukasa, Dusak Jill E, Fellows-Mayle Wendy K, Papworth Glenn D, Watkins Simon C, Gambotto Andrea, Pollack Ian F, Storkus Walter J, Okada Hideho

机构信息

Department of Neurological Surgery, University of Pittsburgh School of Medicine, PA 15213, USA.

出版信息

J Immunol. 2005 Aug 15;175(4):2730-40. doi: 10.4049/jimmunol.175.4.2730.

Abstract

We tested whether modulation of the CNS-tumor microenvironment by delivery of IFN-alpha-transduced dendritic cells (DCs: DC-IFN-alpha) would enhance the therapeutic efficacy of peripheral vaccinations with cytokine-gene transduced tumor cells. Mice bearing intracranial GL261 glioma or MCA205 sarcoma received peripheral immunizations with corresponding irradiated tumor cells engineered to express IL-4 or GM-CSFs, respectively, as well as intratumoral delivery of DC-IFN-alpha. This regimen prolonged survival of the animals and induced tumor-specific CTLs that expressed TRAIL, which in concert with perforin and Fas ligand (FasL) was involved in the tumor-specific CTL activity of these cells. The in vivo antitumor activity associated with this approach was abrogated by administration of neutralizing mAbs against TRAIL or FasL and was not observed in perforin-/-, IFN-gamma-/-, or FasL-/- mice. Transduction of the tumor cells with antiapoptotic protein cellular FLIP rendered the gene-modified cells resistant to TRAIL- or FasL-mediated apoptosis and to CTL killing activity in vitro. Furthermore, the combination therapeutic regimen was ineffective in an intracranial cellular FLIP-transduced MCA205 brain tumor model. These results suggest that the combination of intratumoral delivery of DC-IFN-alpha and peripheral immunization with cytokine-gene transduced tumor cells may be an effective therapy for brain tumors that are sensitive to apoptotic signaling pathways.

摘要

我们测试了通过递送干扰素-α转导的树突状细胞(DC:DC-IFN-α)来调节中枢神经系统-肿瘤微环境是否会增强细胞因子基因转导的肿瘤细胞外周疫苗接种的治疗效果。携带颅内GL261胶质瘤或MCA205肉瘤的小鼠接受了外周免疫,分别用经基因工程改造以表达IL-4或GM-CSF的相应辐照肿瘤细胞,以及瘤内递送DC-IFN-α。该方案延长了动物的生存期,并诱导了表达TRAIL的肿瘤特异性CTL,TRAIL与穿孔素和Fas配体(FasL)协同作用参与了这些细胞的肿瘤特异性CTL活性。与该方法相关的体内抗肿瘤活性被给予抗TRAIL或FasL的中和单克隆抗体所消除,并且在穿孔素基因敲除、干扰素-γ基因敲除或FasL基因敲除的小鼠中未观察到。用抗凋亡蛋白细胞FLIP转导肿瘤细胞使基因修饰的细胞在体外对TRAIL或FasL介导的凋亡以及CTL杀伤活性具有抗性。此外,联合治疗方案在颅内细胞FLIP转导的MCA205脑肿瘤模型中无效。这些结果表明,瘤内递送DC-IFN-α与细胞因子基因转导的肿瘤细胞外周免疫相结合可能是对凋亡信号通路敏感的脑肿瘤的有效治疗方法。

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