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Interferon Gamma Induces Changes in Natural Killer (NK) Cell Ligand Expression and Alters NK Cell-Mediated Lysis of Pediatric Cancer Cell Lines

机译:干扰素γ诱导小儿癌细胞系自然杀伤(NK)细胞配体表达的变化并改变NK细胞介导的裂解。

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摘要

Natural killer (NK) cells have therapeutic potential for cancer due to their capacity for targeting tumor cells without prior sensitization. Our laboratory has developed an NK cell expansion protocol that generates large quantities of NK cells for therapeutic infusion that secret 20 times the amount of interferon gamma (IFNγ) than resting NK cells. IFNγ can upregulate major histocompatibility complex (MHC)-class I, an inhibitory ligand for NK cells, but can also upregulate intercellular adhesion molecule 1 (ICAM-1) which promotes NK:target cell interaction for an efficient lysis. Due to the opposing effects reported for IFNγ on tumor sensitivity to NK cells, we evaluated a panel 22 tumor cell lines from the pediatric preclinical testing program corresponding to different tumor types. We determined the impact of IFNγ on their expression of NK cell activating and inhibitory ligands, death receptors, and adhesion molecules using mass cytometry. We also evaluated the effect of IFNγ on their sensitivity to NK cell-mediated lysis. Our results show upregulation of PD-L1, ICAM-1, MHC-class I, HLA-DR, CD95/FasR, and CD270/HVEM after IFNγ treatment, this upregulation is variable across different tumor types. We also observed a variable impact of IFNγ in NK cell-mediated lysis. For six of the cancer cell lines IFNγ resulted in increased resistance to NK cells, while for three of them it resulted in increased sensitivity. Modeling of the data suggests that the effect of IFNγ on NK cell-mediated tumor lysis is mostly dependent on changes in MHC-class I and ICAM-1 expression. For three of the cell lines with increased resistance, we observed higher upregulation of MHC-class I than ICAM-1. For the cell lines with increased sensitivity after IFNγ treatment, we observed upregulation of ICAM-1 exceeding MHC-class I upregulation. ICAM-1 upregulation resulted in increased conjugate formation between the NK cells and tumor cells, which can contribute to the increased sensitivity observed. However, the effects of MHC-class I and ICAM-1 are not readily predictable. Due to the high IFNγ secretion of NK cell infusion products, a better understanding of the NK ligands on tumor cells and how they are affected by IFNγ is essential to optimize NK cell immunotherapy.
机译:天然杀伤(NK)细胞由于具有靶向肿瘤细胞的能力而无需事先敏化,因此具有治疗癌症的潜力。我们的实验室已经开发出一种NK细胞扩增方案,该方案可生成大量用于治疗输注的NK细胞,其分泌的干扰素γ(IFNγ)数量是静止NK细胞的20倍。 IFNγ可以上调主要组织相容性复合物(MHC)-I类,这是NK细胞的抑制性配体,但也可以上调促进NK:靶细胞相互作用的细胞间粘附分子1(ICAM-1),以实现有效裂解。由于报告了IFNγ对肿瘤对NK细胞敏感性的相反作用,我们评估了来自儿科临床前测试程序的22种肿瘤细胞系,它们对应于不同的肿瘤类型。我们使用大规模细胞计数法确定了IFNγ对NK细胞活化和抑制性配体,死亡受体和粘附分子表达的影响。我们还评估了IFNγ对NK细胞介导的裂解敏感性的影响。我们的结果显示,在IFNγ治疗后,PD-L1,ICAM-1,MHC-I类,HLA-DR,CD95 / FasR和CD270 / HVEM的上调,这种上调在不同的肿瘤类型之间是可变的。我们还观察到了IFNγ在NK细胞介导的裂解中的可变影响。对于其中的六个癌细胞系,IFNγ导致对NK细胞的抵抗力增加,而对于其中的三个,其导致敏感性增加。数据建模表明,IFNγ对NK细胞介导的肿瘤溶解的影响主要取决于I类MHC和ICAM-1表达的变化。对于具有增加的抗性的三个细胞系,我们观察到MHC-I类的上调程度高于ICAM-1。对于IFNγ处理后敏感性增加的细胞系,我们观察到ICAM-1的上调超过了MHC-I类上调。 ICAM-1上调导致NK细胞和肿瘤细胞之间形成的缀合物增加,这可能有助于提高观察到的敏感性。但是,I类MHC和ICAM-1的作用并不容易预测。由于NK细胞输注产物的IFNγ分泌很高,因此,更好地了解肿瘤细胞上的NK配体以及它们如何受到IFNγ的影响对于优化NK细胞免疫疗法至关重要。

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