封锁
间皮素
免疫疗法
免疫检查点
肿瘤微环境
过继性细胞移植
癌症免疫疗法
癌症研究
抗体
医学
生物
卵巢癌
细胞毒性T细胞
T细胞
癌症
细胞
癌细胞
免疫学
细胞生长
阻断抗体
卵巢肿瘤
CD28
免疫系统
受体
作者
Gabriel F. Alencar,Asmaa O. Mohamed,Madison G. Burnett,Samantha C. St. Jean,Anders R. Nelson,Yapeng Su,Valentin Voillet,Breanna M. Bates,Magdalia Rodgers Suarez,Susan L. Ruskin,Lam Trieu,Jennifer Lam,Stefan Bekiranov,Raphaël Gottardo,Philip D. Greenberg,Kristin G. Anderson
标识
DOI:10.1073/pnas.2419888122
摘要
The five-year survival rate for ovarian cancer patients remains below 50%, underscoring the need for innovative therapies. One promising approach involves engineering T cells to specifically target proteins uniquely overexpressed in tumors, thereby controlling tumor growth without toxicity to healthy tissues. Mesothelin (MSLN) contributes to the malignant and invasive phenotype in ovarian cancer and has limited expression in healthy cells, making it a candidate immunotherapy target. Our previous results in a mouse model of ovarian cancer demonstrated that T cells engineered to express a T cell receptor (TCR) targeting MSLN (TCRMSLN) mediated therapeutic activity, delaying tumor growth and prolonging mouse survival. However, inhibitory ligands expressed in the tumor microenvironment (TME) interacted with inhibitory receptors on activated T cells, suppressing antitumor function. We hypothesized combining engineered T cells with checkpoint blockade would enhance T cell function and improve therapeutic efficacy, but administration of monospecific antibodies targeting individual inhibitory pathways had no significant impact on T cell efficacy. By contrast, the combination of PD-1, Tim-3, and Lag-3 blockade with engineered T cells significantly improved T cell function and overall animal survival relative to treatment with antibody alone or TCRMSLN with singlet or doublet antibody combinations. Single-cell RNA sequencing revealed TCRMSLN T cells treated with the triplet antibody combination increased expression of genes involved in interferon responses and metabolic function, and reduced expression of genes associated with exhaustion. These results suggest that strategies to disrupt multiple inhibitory pathways simultaneously may be necessary for improved adoptive T cell therapy efficacy in patients.
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