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:Low-exhaustion peripheral circulating γδ T cells serve as a biomarker for predicting the clinical benefit rate of non-small cell lung cancer (NSCLC) patients to chemotherapy or targeted therapy: a single-center retrospective study.
这些发现共同表明,循环中低免疫耗竭水平的Vδ2 T细胞是NSCLC化疗和靶向治疗疗效的关键贡献者。靶向Vδ2 T细胞可能是提高NSCLC患者治疗临床获益率的一种有前景的策略。
多项研究已证实,γδ T细胞的数量和功能是癌症患者生存期延长的有利预后指标。然而,在接受化疗或靶向治疗的NSCLC患者中,循环γδ T细胞的免疫表型与治疗反应之间的关联仍不明确。
本研究纳入2020年1月至2024年1月期间确诊的EGFR野生型(EGFR-WT)或突变型(EGFR-Mut)非小细胞肺癌(NSCLC)患者。回顾性收集临床病理特征、治疗方案及随访数据。采用全光谱流式细胞术分析52例NSCLC患者外周血样本中αβ T细胞和γδ T细胞的免疫表型。
在EGFR野生型和突变型NSCLC患者之间,αβ T细胞或γδ T细胞的比例以及免疫耗竭标志物的表达均未观察到显著差异。值得注意的是,临床获益率高(应答者,R)的NSCLC患者相比非应答者(NR),其循环Vδ2 T细胞比例更高,在EGFR-Mut(NR vs. R,P = 0.0437)和EGFR-WT组(NR vs. R,P = 0.0180)中均如此。此外,应答者组Vδ2 T细胞上免疫耗竭标志物PD-1的表达显著更低(NR vs. R,EGFR-Mut,P = 0.0050;EGFR-WT,P = 0.0180)。而且,无论EGFR突变状态如何,应答者患者相比非应答者表现出更高水平的TNF-α(NR vs. R,EGFR-Mut,P = 0.0055;EGFR-WT,P = 0.0007)。
BACKGROUND: Multiple studies have demonstrated that the abundance and functionality of γδ T cells are favorable prognostic indicators for prolonged survival in cancer patients. However, the association between the immunophenotype of circulating γδ T cells and the therapeutic response in NSCLC patients undergoing chemotherapy or targeted therapy remains unclear. METHODS: Patients with EGFR wild-type (EGFR-WT) or mutant (EGFR-Mut) non-small cell lung cancer (NSCLC), diagnosed between January 2020 and January 2024, were included in this study. Clinicopathological characteristics, treatment regimens, and follow-up data were retrospectively collected. Peripheral blood samples from 52 NSCLC patients were analyzed for the immunophenotypes of αβ T cells and γδ T cells using full-spectrum flow cytometry. RESULTS: No significant differences were observed in the proportions of αβ T cells or γδ T cells, nor in the expression of immune exhaustion markers, between epidermal growth factor receptor wild-type and mutant NSCLC patients. Notably, NSCLC patients with a high clinical benefit rate (responder, R) exhibited a higher proportion of circulating Vδ2 T cells compared to non-responders (NR), in both EGFR-Mut (NR vs. R, P = 0.0437) and EGFR-WT groups (NR vs. R, P = 0.0180). Additionally, the expression of the immune exhaustion marker PD-1 on Vδ2 T cells was significantly lower in the responder group (NR vs. R, EGFR-Mut, P = 0.0050; EGFR-WT, P = 0.0180). Moreover, responder patients exhibited elevated levels of TNF-α compared to non-responders, irrespective of EGFR mutation status (NR vs. R, EGFR-Mut, P = 0.0055; EGFR-WT, P = 0.0007). CONCLUSIONS: These findings collectively suggest that circulating Vδ2 T cells with low levels of immune exhaustion are critical contributors to the effectiveness of chemotherapy and targeted therapies in NSCLC. Targeting Vδ2 T cells may represent a promising strategy for enhancing therapeutic clinical benefit rates in NSCLC patients.
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