CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:PVRIG is Expressed on Stem-Like T Cells in Dendritic Cell-Rich Niches in Tumors and Its Blockade May Induce Immune Infiltration in Non-Inflamed Tumors.
PVRIG is Expressed on Stem-Like T Cells in Dendritic Cell-Rich Niches in Tumors and Its Blockade May Induce Immune Infiltration in Non-Inflamed Tumors.
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免疫浸润不良的癌症构成重大挑战,当前免疫疗法临床成功率有限。干细胞样记忆T细胞(TSCM)已被鉴定为一种T细胞亚群,具有强大的增殖能力,并可在与树突状细胞(DCs)相互作用后扩增和分化。
在本研究中,我们探索了新发现的抑制性受体脊髓灰质炎病毒受体相关免疫球蛋白结构域蛋白(PVRIG)及其配体脊髓灰质炎病毒受体相关配体2(PVRL2)在人类肿瘤微环境中的表达模式。利用跨多种癌症适应症的空间和单细胞RNA转录组学数据,我们发现在T细胞检查点中,PVRIG独特地表达于TSCM,而PVRL2表达于肿瘤免疫聚集生态位中的DCs。
因此,PVRIG阻断可增强TSCM-DC相互作用,并有效驱动T细胞浸润至肿瘤。与这些数据一致,在浸润不良肿瘤患者中阻断PVRIG后,我们观察到免疫调节,包括肿瘤T细胞浸润增加、T细胞受体(TCR)克隆性和瘤内T细胞扩增增加,所有这些均与临床获益相关。这些数据表明,PVRIG阻断是一种有前景的策略,可诱导强效抗肿瘤T细胞反应,为克服免疫排斥肿瘤对免疫治疗的耐药性提供了新方法。
Cancers that are poorly immune infiltrated pose a substantial challenge, with current immunotherapies yielding limited clinical success. Stem-like memory T cells (TSCM) have been identified as a subgroup of T cells that possess strong proliferative capacity and that can expand and differentiate following interactions with dendritic cells (DCs). In this study, we explored the pattern of expression of a recently discovered inhibitory receptor poliovirus receptor-related immunoglobulin domain protein (PVRIG) and its ligand, poliovirus receptor-related ligand 2 (PVRL2), in the human tumor microenvironment.
Using spatial and single-cell RNA transcriptomics data across diverse cancer indications, we found that among the T-cell checkpoints, PVRIG is uniquely expressed on TSCM and PVRL2 is expressed on DCs in immune aggregate niches in tumors. PVRIG blockade could therefore enhance TSCM-DC interactions and efficiently drive T-cell infiltration to tumors.
Consistent with these data, following PVRIG blockade in patients with poorly infiltrated tumors, we observed immune modulation including increased tumor T-cell infiltration, T-cell receptor (TCR) clonality, and intratumoral T-cell expansion, all of which were associated with clinical benefit. These data suggest PVRIG blockade as a promising strategy to induce potent antitumor T-cell responses, providing a novel approach to overcome resistance to immunotherapy in immune-excluded tumors.
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