癌症研究
效应器
嵌合抗原受体
细胞
受体
细胞生长
免疫疗法
生物
信号转导
免疫学
T细胞
细胞生物学
体内
肺癌
抗原
癌症免疫疗法
旁观者效应
癌症
肺
免疫系统
癌细胞
持久性(不连续性)
小分子
医学
渗透(HVAC)
化学
封锁
获得性免疫系统
作者
Lei Y,Diyuan Qin,Yan He,Pei Shu,Benxia Zhang,Yue Chen,Ning Liu,Xia He,Yu-gu Zhang,Meng-yao Chang,Xiaoyu Li,Fuchun Guo,Liang-liang Bai,Mingyang Feng,Fujue Wang,Yu Gao,Bo Zhu,Zhongjun Li,Dan Li,Yongsheng Wang
出处
期刊:Cancer Research
[American Association for Cancer Research]
日期:2026-07-23
标识
DOI:10.1158/0008-5472.can-25-5261
摘要
Limited intratumoral persistence and insufficient proliferative capacity severely restrict the efficacy of chimeric antigen receptor (CAR)-T cell therapies in solid tumors. Here, we demonstrated that DLL3-targeting CAR-T cells co-expressing a CD56 chimeric switch receptor (CSR) and incorporating parallel 4-1BB costimulatory signaling (DBBζ.CBB) effectively address these limitations. In preclinical small cell lung cancer (SCLC) models, DBBζ.CBB exhibited sustained tumor infiltration, prolonged persistence, and superior antitumor activity. Mechanistically, parallel 4-1BB signaling dynamically programed CAR-T cell fate by promoting early expansion and memory maintenance, driving a highly proliferative effector state at the intermediate stage, and delaying terminal exhaustion at the later stage, thereby sustaining in vivo persistence and enabling durable antitumor responses. Building upon the intratumoral T-cell pool established by DBBζ.CBB, subsequent DLL3 trispecific T-cell engager (TriTCE) administration synergistically enhanced tumor eradication by further boosting CD8+ T cell infiltration and overall activation while mitigating exhaustion and terminal differentiation. Collectively, these findings establish a clinically translatable combinatorial framework to enhance the efficacy and durability of CAR-T therapy in solid tumors.
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