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:Entinostat Enhances Antigen-Specific CD8 T-Cell Response to Immunotherapies in Lung Cancer Models.
这些发现支持进一步评估entinostat作为提高NSCLC免疫治疗疗效的策略。
背景:非小细胞肺癌(NSCLC)是全球癌症相关死亡的主要原因。尽管免疫检查点抑制剂(ICIs)显著改善了临床结局,但大多数患者对治疗无应答或未能获得持久缓解。组蛋白去乙酰化酶抑制剂(HDACi)已成为有前景的免疫调节剂,具有使肿瘤对ICIs敏感的潜力。我们在临床前NSCLC模型中研究了entinostat(一种I类HDACi)与双重ICI(抗PD-1和抗CTLA-4)以及T细胞受体(TCR)工程化T细胞联合使用的免疫调节作用。方法:我们采用了人NSCLC细胞系和具有免疫原性的KRASG12D/p53突变KPN1.1小鼠NSCLC细胞系。在体外,我们评估了entinostat诱导的MHC I类和PD-L1表达变化。此外,我们评估了entinostat对KRASG12D特异性TCR的影响。在体内,通过将KPN1.1细胞皮下和原位移植到免疫健全小鼠中,随后使用双重ICI治疗(联合或不联合entinostat),评估治疗效果和免疫调节作用。随后分析脾脏和血液中的免疫细胞群。结果:在体外,entinostat诱导人和小鼠NSCLC细胞系中MHC-I和PD-L1表达上调。此外,entinostat处理显著增强了表达KRASG12D特异性TCR的T细胞对抗原特异性肿瘤的识别和杀伤。在体内,在双重免疫检查点抑制的基础上加入entinostat显示出改善肿瘤生长控制的递增趋势。值得注意的是,entinostat联合双ICI增强了全身免疫激活,增加了循环和脾脏T细胞群体,并显著扩增了抗原特异性和总体效应CD8+ T细胞。一致地,将KPN1.1荷瘤小鼠的脾细胞与KPN1.1肿瘤细胞进行离体共培养,显示出CD8+抗原特异性T细胞识别增强。结论:在人类和小鼠NSCLC模型中,entinostat通过肿瘤内在和全身免疫调节增强了TCR和ICI介导的肿瘤识别。这些效应反映为MHC-I表达增加、抗原特异性效应CD8+T细胞扩增以及CD8+T细胞肿瘤识别增强。这些发现支持进一步评估entinostat作为提高NSCLC免疫治疗疗效的策略。
Background : Non-small-cell lung cancer (NSCLC) is the leading cause of cancer-related mortality worldwide. Although immune checkpoint inhibitors (ICIs) have significantly improved clinical outcomes, most patients do not respond to treatment or fail to achieve durable responses. Histone deacetylase inhibitors (HDACi) have emerged as promising immunomodulatory agents, with the potential to sensitize tumors to ICIs. We investigated the immunomodulatory effects of entinostat, a class I HDACi, in combination with dual ICI (anti-PD-1 and anti-CTLA-4) as well as with T-cell receptor (TCR) engineered T cells in preclinical NSCLC models. Methods : We employed human NSCLC cell lines and the immunogenic KRASG12D/p53-mutant KPN1.1 murine NSCLC cell line. In vitro, we assessed entinostat-induced changes in MHC class I and PD-L1 expression. In addition, we evaluated the effects of entinostat on a KRASG12D-specific TCR. In vivo, therapeutic efficacy and immune modulation were assessed by transplanting KPN1.1 cells subcutaneously and orthotopically into immunocompetent mice, followed by treatment with dual ICI, with or without entinostat. Immune populations in the spleen and blood were subsequently analyzed. Results : In vitro, entinostat induced the upregulation of MHC-I and PD-L1 expression in both human and murine NSCLC cell lines. In addition, entinostat treatment significantly enhanced antigen-specific tumor recognition and killing by T cells engineered to express a KRASG12D-specific TCR. In vivo, the addition of entinostat to dual immune checkpoint inhibition showed an incremental trend toward improved tumor growth control. Notably, entinostat plus dual ICI enhanced systemic immune activation, increasing circulating and splenic T-cell populations and significantly expanding both antigen-specific and overall effector CD8 + T cells. Consistently, the ex vivo co-culture of splenocytes from KPN1.1-bearing mice with KPN1.1 tumor cells demonstrated enhanced CD8 + antigen-specific T-cell recognition. Conclusions : In human and murine NSCLC models, entinostat potentiates TCR- and ICI-mediated tumor recognition through tumor-intrinsic and systemic immune modulation. These effects were reflected by increased MHC-I expression, expansion of antigen-specific effector CD8 + T cells, and enhanced CD8 + T-cell tumor recognition. These findings support a further evaluation of entinostat as a strategy to improve immunotherapy efficacy in NSCLC.
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