一种用于克服非小细胞肺癌治疗中抗原异质性的多靶向 CAR-T 细胞平台
A Multi-Targeting Chimeric Antigen Receptor-T Cell Platform to Overcome Antigen Heterogeneity in the Treatment of Non-Small Cell Lung Cancer.
这些发现支持采用多靶点CAR-T 策略来应对NSCLC及可能其他实体瘤中的抗原异质性。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Dipeptidyl Peptidase 4 Restoration Facilitates Antitumor Immunity in KRAS-LKB1-Mutant Lung Cancer.
Dipeptidyl Peptidase 4 Restoration Facilitates Antitumor Immunity in KRAS-LKB1-Mutant Lung Cancer.
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KRAS原癌基因、GTPase(KRAS)-肝激酶B1(LKB1)突变型(KL)非小细胞肺癌(NSCLC)以深度免疫抑制性肿瘤微环境(TME)为特征,对免疫检查点抑制剂高度耐药。尽管KL肿瘤具有高肿瘤突变负荷,但其PD-L1表达低、免疫细胞浸润减少、免疫信号通路受抑制。系统性基因组分析揭示,LKB1缺失抑制KRAS突变型肺癌中二肽基肽酶4(DPP4)的表达和活性。利用患者来源肿瘤样本和同基因小鼠模型,评估了恢复DPP4功能以改善KL肺癌免疫应答的治疗潜力。恢复DPP4表达可重编程TME,并显著增加免疫相关基因特征,包括参与T细胞迁移和NK细胞活化的基因特征。在三维微流控模型中恢复DPP4表达可增强NK细胞趋化性和球体靶向活性。此外,DPP4恢复与抗PD-1治疗协同,在同基因KL小鼠模型中实现显著肿瘤消退。这些发现表明,LKB1缺失抑制DPP4表达,促进KL-NSCLC细胞TME的免疫抑制特征,而恢复DPP4表达可促进NK细胞募集、促进免疫活化并增强抗PD-1治疗的效果。这些结果提示,DPP4是一种关键免疫调节因子和有前景的治疗靶点,为克服这一具有挑战性的肺癌亚型中的免疫耐药并改善免疫治疗结局提供了新策略。意义:LKB1缺失抑制KL-NSCLC中DPP4的表达;然而,在体外恢复DPP4表达可促进NK细胞募集,减轻免疫抑制性TME,并增强KL模型中抗PD-1治疗的疗效。
UNLABELLED: KRAS proto-oncogene, GTPase (KRAS)-liver kinase B1 (LKB1)-mutant (KL) non-small cell lung cancer (NSCLC), characterized by a profoundly immunosuppressive tumor microenvironment (TME), is highly resistant to immune checkpoint inhibitors. Despite their high tumor mutation burden, KL tumors exhibit low expression of PD-L1, reduced immune cell infiltration, and suppressed immune signaling pathways. Systematic genome analyses revealed that LKB1 loss suppresses dipeptidyl peptidase 4 (DPP4) expression and activity in KRAS-mutant lung cancer.
The therapeutic potential of restoring DPP4 function to improve the immune response in KL lung cancer was evaluated using patient-derived tumor samples and syngeneic mouse models. Restoration of DPP4 expression reprogrammed the TME and significantly increased immune-related gene signatures, including those involved in T-cell migration and NK-cell activation. Restoration of DPP4 expression in three-dimensional microfluidic models enhanced NK-cell chemotaxis and spheroid-targeting activity.
Furthermore, DPP4 restoration was synergized with anti-PD-1 therapy to achieve significant tumor regression in syngeneic KL murine models.
These findings suggest that LKB1 loss suppresses DPP4 expression, contributing to the immunosuppressive characteristics of the TME in KL-NSCLC cells, whereas restoring DPP4 expression promotes NK-cell recruitment, facilitates immune activation, and enhances the effects of anti-PD-1 therapy.
These results suggest that DPP4 is a key immune modulator and a promising therapeutic target, providing a novel strategy to overcome immune resistance and improve immunotherapy outcomes in this challenging subset of lung cancer. SIGNIFICANCE: LKB1 loss suppresses DPP4 expression in KL-NSCLC; however, restoring DPP4 expression in vitro promotes NK-cell recruitment, mitigating the immunosuppressive TME and enhancing the efficacy of anti-PD-1 therapy in KL models.
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