提吉特
癌症研究
免疫检查点
免疫系统
癌症
医学
癌细胞
细胞毒性T细胞
癌症免疫疗法
细胞毒性
免疫学
免疫疗法
效应器
外周血单个核细胞
结直肠癌
无容量
封锁
生物
抗体依赖性细胞介导的细胞毒性
抗体
T细胞
肺癌
免疫
转录组
黑色素瘤
CD8型
易普利姆玛
作者
Vinicio A. Melo Gallegos,Shirley Greenwald,Ami Tamir,Lisa J. Jacob,Macarena González Corrales,Lior Tsveyer,Alexandra Aronin,Iris Pecker,Rinat Tabakman,Lucy Ghantous,Liat Tamir,Roy Kahn,Elina Zorde Khvalevsky,Amnon Peled,Ori Wald,Mark L. Tykocinski,Yaron Pereg,Ayelet Chajut,Edwin Bremer
标识
DOI:10.1158/1535-7163.mct-25-0102
摘要
Abstract PD-1 immune checkpoint inhibition (ICI) is ineffective in most cancer patients. However, combination therapy can improve response rates, with the checkpoint TIGIT being a particularly interesting candidate as it is expressed on tumor-infiltrating exhausted T and NK cells. TIGIT’s primary ligand, PVR, is overexpressed in many cancers and both TIGIT and PVR correlate with poor prognosis. To therapeutically exploit this, we developed a novel therapeutic termed Dual Signaling Protein 502 (DSP502). DSP502 is composed of the extracellular domains of TIGIT and PD-1, each fused to human IgG1 Fc containing knob-in-hole mutations. DSP502 was designed to simultaneously block PVR/TIGIT and PD-L1/PD-1 by binding to cancer cell-expressed PVR and PD-L1. Moreover, the human IgG1 domain can recruit FcR-positive effector cells to further reactivate anticancer immunity. Treatment with DSP502 potentiated NK cell activation and boosted the anticancer cytotoxicity of peripheral blood mononuclear cells (PBMCs) and tumor-infiltrating lymphocytes (TILs) from NSCLC and metastatic colorectal cancer patients towards cancer cells expressing both PD-L1 and PVR. Transcriptomic analysis confirmed NSCLC as a potential target, showing co-expression of TIGIT and PD-1 on a high percentage of exhausted CD8+ T cells. Notably, treatment with DSP502 not only blocked checkpoint signaling but also preserved surface expression of the co-stimulatory PVR ligand, DNAM-1, on T and NK cells. Finally, DSP502 inhibited tumor growth by potentiating antitumor immunity in xenograft ovarian and lung cancer models. Collectively, these findings demonstrate that DSP502, by blocking PVR and PD-L1 pathways, has dual ICI activity and holds potential therapeutic benefits for cancers such as NSCLC.
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