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:A Combination of Cytokine-Induced Killer Cells With PD-1 Blockade and ALK Inhibitor Showed Substantial Intrinsic Variability Across Non-Small Cell Lung Cancer Cell Lines.
A Combination of Cytokine-Induced Killer Cells With PD-1 Blockade and ALK Inhibitor Showed Substantial Intrinsic Variability Across Non-Small Cell Lung Cancer Cell Lines.
癌症异质性对治疗抑制剂的毒性和不良反应提出了严峻挑战,尤其是在涉及多种靶向抑制剂的联合治疗中。
背景:癌症异质性使治疗抑制剂的毒性及不良反应成为重大挑战,尤其是涉及多种靶向抑制剂的联合疗法。NSCLC临床前研究曾报告多种药物组合产生协同作用,但临床应用效果有限,提示需考虑患者遗传背景和免疫应答等因素。本研究在遗传特征不同的NSCLC细胞系中,体外考察细胞因子诱导的杀伤(CIK)细胞联合ALK和PD-1抑制剂的抗肿瘤作用。方法:将三种遗传背景不同的NSCLC细胞系NCI-H2228(EML4-ALK)、A549(KRAS突变)和HCC-78(ROS1重排),在有或无纳武利尤单抗(PD-1抑制剂)及克唑替尼(ALK抑制剂)的条件下与CIK细胞共培养。采用流式细胞术和RT-qPCR分析多种免疫检查点的表面表达、绝对死亡细胞数及CIK细胞内颗粒酶B;并以ELISA和蛋白质印迹验证CIK细胞活化。结果显示:(a)纳武利尤单抗显著降低CIK细胞表面PD-1表达,但不影响其他免疫检查点或PD-1 mRNA表达;(b)该联合策略仅在NCI-H2228细胞中有效影响细胞活性、IFN-γ产生及CD3阳性CD56阳性CIK细胞内颗粒酶B释放;(c)CIK细胞中作为T细胞活化标志物的Fas配体(FasL)内源性表达因附加效应上调;(d)纳武利尤单抗显著提高CIK细胞CD4阳性CD25阳性亚群中的Foxp3表达。总体而言,CIK细胞联合克唑替尼和纳武利尤单抗可通过激活FasL增强抗肿瘤免疫应答,提高IFN-γ及颗粒酶B,但仅在具有EML4-ALK重排的NCI-H2228细胞中观察到此效应。因此作者推测,CIK疗法可能成为EML4-ALK重排NSCLC患者的潜在替代方案,并支持根据患者个体特征优化联合疗法。
BACKGROUND: Cancer heterogeneity poses a serious challenge concerning the toxicity and adverse effects of therapeutic inhibitors, especially when it comes to combinatorial therapies that involve multiple targeted inhibitors. In particular, in non-small cell lung cancer (NSCLC), a number of studies have reported synergistic effects of drug combinations in the preclinical models, while they were only partially successful in the clinical setup, suggesting those alternative clinical strategies (with genetic background and immune response) should be considered. Herein, we investigated the antitumor effect of cytokine-induced killer (CIK) cells in combination with ALK and PD-1 inhibitors in vitro on genetically variable NSCLC cell lines. METHODS: We co-cultured the three genetically different NSCLC cell lines NCI-H2228 (EML4-ALK), A549 (KRAS mutation), and HCC-78 (ROS1 rearrangement) with and without nivolumab (PD-1 inhibitor) and crizotinib (ALK inhibitor). Additionally, we profiled the variability of surface expression multiple immune checkpoints, the concentration of absolute dead cells, intracellular granzyme B on CIK cells using flow cytometry as well as RT-qPCR. ELISA and Western blot were performed to verify the activation of CIK cells. RESULTS: Our analysis showed that (a) nivolumab significantly weakened PD-1 surface expression on CIK cells without impacting other immune checkpoints or PD-1 mRNA expression, (b) this combination strategy showed an effective response on cell viability, IFN-γ production, and intracellular release of granzyme B in CD3 + CD56 + CIK cells, but solely in NCI-H2228, (c) the intrinsic expression of Fas ligand (FasL) as a T-cell activation marker in CIK cells was upregulated by this additive effect, and (d) nivolumab induced Foxp3 expression in CD4 + CD25 + subpopulation of CIK cells significantly increased. Taken together, we could show that CIK cells in combination with crizotinib and nivolumab can enhance the anti-tumor immune response through FasL activation, leading to increased IFN-γ and granzyme B, but only in NCI-H2228 cells with EML4-ALK rearrangement. Therefore, we hypothesize that CIK therapy may be a potential alternative in NSCLC patients harboring EML4-ALK rearrangement, in addition, we support the idea that combination therapies offer significant potential when they are optimized on a patient-by-patient basis.
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