γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
我们的发现表明,活化的γδ T细胞可能是SCLC治疗的有价值靶点。
英文原题:Tumor PKCδ instigates immune exclusion in EGFR-mutated non-small cell lung cancer.
Tumor PKCδ instigates immune exclusion in EGFR-mutated non-small cell lung cancer.
这些发现揭示,PKCδ是诱导炎症性肿瘤的关键开关,并因此增强ICB疗法在EGFR突变肺癌中的疗效。这为针对难治性肿瘤应用免疫治疗开辟了新途径。
将足够数量的免疫细胞募集到肿瘤微环境(TME)中以诱导炎症型TME,是癌症免疫治疗有效应答的先决条件。EGFR突变型肺癌的TME免疫表型被表征为非炎症型,免疫治疗对此基本无效。
对肺癌组织的全局蛋白质组和磷酸化蛋白质组数据进行了分析,旨在绘制与非炎症性TME相关的蛋白质图谱。进行了离体和体内研究以评估抗肿瘤效果。应用蛋白质组学鉴定潜在靶点和信号通路。使用CRISPR-Cas9敲除靶基因。通过流式细胞术监测免疫细胞的变化。通过临床样本验证了PKCδ与PD-L1之间的相关性。
我们提出,PKCδ 作为免疫稳态的看门人并具有激酶活性,是 EGFR 突变肺肿瘤中非炎症表型的 responsible 因素。它通过刺激细胞外基质(ECM)和 PD-L1 表达促进肿瘤进展,从而导致免疫排斥并帮助癌细胞逃逸 T 细胞监视。敲除 PKCδ 可增强 T 细胞在肿瘤内的渗透并抑制肿瘤生长。此外,阻断 PKCδ 在体外和体内模型中均显著使肿瘤对免疫检查点阻断(ICB)治疗(αPD-1)敏感。
BACKGROUND: The recruitment of a sufficient number of immune cells to induce an inflamed tumor microenvironment (TME) is a prerequisite for effective response to cancer immunotherapy. The immunological phenotypes in the TME of EGFR-mutated lung cancer were characterized as non-inflamed, for which immunotherapy is largely ineffective. METHODS: Global proteomic and phosphoproteomic data from lung cancer tissues were analyzed aiming to map proteins related to non-inflamed TME. The ex vivo and in vivo studies were carried out to evaluate the anti-tumor effect. Proteomics was applied to identify the potential target and signaling pathways. CRISPR-Cas9 was used to knock out target genes. The changes of immune cells were monitored by flow cytometry. The correlation between PKCδ and PD-L1 was verified by clinical samples. RESULTS: We proposed that PKCδ, a gatekeeper of immune homeostasis with kinase activity, is responsible for the un-inflamed phenotype in EGFR-mutated lung tumors. It promotes tumor progression by stimulating extracellular matrix (ECM) and PD-L1 expression which leads to immune exclusion and assists cancer cell escape from T cell surveillance. Ablation of PKCδ enhances the intratumoral penetration of T cells and suppresses the growth of tumors. Furthermore, blocking PKCδ significantly sensitizes the tumor to immune checkpoint blockade (ICB) therapy (αPD-1) in vitro and in vivo model. CONCLUSIONS: These findings revealed that PKCδ is a critical switch to induce inflamed tumors and consequently enhances the efficacy of ICB therapy in EGFR-mutated lung cancer. This opens a new avenue for applying immunotherapy against recalcitrant tumors.
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