CD8型
CD40
胶质瘤
免疫疗法
交叉展示
免疫
癌症研究
生物
抗原
封锁
胶质母细胞瘤
T细胞
医学
抗原呈递
细胞毒性T细胞
免疫系统
免疫学
受体
内科学
生物化学
体外
作者
Catalina Lee-Chang,Jason Miska,David Hou,Aida Rashidi,Peng Zhang,Rachel A. Burga,Ignacio Jusué-Torres,Ting Xiao,Víctor A. Arrieta,Daniel Y. Zhang,Aurora Lopez‐Rosas,Yu Han,Adam M. Sonabend,Craig Horbinski,Roger Stupp,Irina V. Balyasnikova,Maciej S. Lesniak
摘要
Immunotherapy has revolutionized the treatment of many tumors. However, most glioblastoma (GBM) patients have not, so far, benefited from such successes. With the goal of exploring ways to boost anti-GBM immunity, we developed a B cell–based vaccine (BVax) that consists of 4-1BBL+ B cells activated with CD40 agonism and IFNγ stimulation. BVax migrates to key secondary lymphoid organs and is proficient at antigen cross-presentation, which promotes both the survival and the functionality of CD8+ T cells. A combination of radiation, BVax, and PD-L1 blockade conferred tumor eradication in 80% of treated tumor-bearing animals. This treatment elicited immunological memory that prevented the growth of new tumors upon subsequent reinjection in cured mice. GBM patient–derived BVax was successful in activating autologous CD8+ T cells; these T cells showed a strong ability to kill autologous glioma cells. Our study provides an efficient alternative to current immunotherapeutic approaches that can be readily translated to the clinic.
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