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:Deciphering the immunosuppressive tumor microenvironment in ALK- and EGFR-positive lung adenocarcinoma.
靶向基因表达谱分析是一种有前景的工具,可从常规诊断性肺癌活检中读取肿瘤微环境特征。在ALK阳性和EGFR阳性肺腺癌中观察到显著的免疫反应性,包括特定的免疫抑制特征,但并非完全没有免疫浸润,这支持进一步临床评估免疫调节剂作为此类肿瘤中ICB的联合伙伴。
免疫检查点阻断(ICB)的出现显著改善了肺腺癌(ADC)的疾病结局,但 ALK/EGFR 阳性肿瘤对免疫治疗的应答有限。其潜在的免疫生物学机制尚未完全阐明。
我们对31例ALK阳性、40例EGFR阳性和43例ALK/EGFR阴性肺腺癌进行了比较mRNA表达谱分析,重点关注免疫基因表达。从基因表达谱中估算了TIL(肿瘤浸润淋巴细胞)(TILs)的存在及水平,以及十四种特定免疫细胞群体。
虽然与ALK/EGFR阴性肿瘤相比,ALK阳性和EGFR阳性肿瘤中的总TILs并未降低,但在两个亚组中均检测到特定的免疫抑制特征:在ALK阳性肿瘤中,调节性T细胞显著高于EGFR阳性肿瘤(倍数变化:FC = 1.9,p = 0.0013)和ALK/EGFR阴性肿瘤(FC = 2.1,p = 0.00047)。在EGFR阳性肿瘤中,细胞毒性细胞显著低于ALK阳性肿瘤(FC = - 1.7,p = 0.016)和ALK/EGFR阴性肿瘤(FC = - 2.1,p = 2.0E-05)。共有289个基因在三个亚组之间存在差异表达,其中40个属于细胞因子-细胞因子受体信号通路。在后一组中,有五个基因在ALK阳性和EGFR阳性肿瘤中均差异表达,而十二个基因仅在ALK阳性肿瘤中显示差异表达,十一个基因仅在EGFR阳性肿瘤中显示差异表达。
INTRODUCTION: The advent of immune checkpoint blockade (ICB) has led to significantly improved disease outcome in lung adenocarcinoma (ADC), but response of ALK/EGFR-positive tumors to immune therapy is limited. The underlying immune biology is incompletely understood. METHODS: We performed comparative mRNA expression profiling of 31 ALK-positive, 40 EGFR-positive and 43 ALK/EGFR-negative lung ADC focused on immune gene expression. The presence and levels of tumor infiltration lymphocytes (TILs) as well as fourteen specific immune cell populations were estimated from the gene expression profiles. RESULTS: While total TILs were not lower in ALK-positive and EGFR-positive tumors compared to ALK/EGFR-negative tumors, specific immunosuppressive characteristics were detected in both subgroups: In ALK-positive tumors, regulatory T cells were significantly higher compared to EGFR-positive (fold change: FC = 1.9, p = 0.0013) and ALK/EGFR-negative tumors (FC = 2.1, p = 0.00047). In EGFR-positive tumors, cytotoxic cells were significantly lower compared to ALK-positive (FC = - 1.7, p = 0.016) and to ALK/EGFR-negative tumors (FC = - 2.1, p = 2.0E-05). A total number of 289 genes, 40 part of cytokine-cytokine receptor signaling, were differentially expressed between the three subgroups. Among the latter, five genes were differently expressed in both ALK-positive and EGFR-positive tumors, while twelve genes showed differential expression solely in ALK-positive tumors and eleven genes solely in EGFR-positive tumors. CONCLUSION: Targeted gene expression profiling is a promising tool to read out tumor microenvironment characteristics from routine diagnostic lung cancer biopsies. Significant immune reactivity including specific immunosuppressive characteristics in ALK- and EGFR-positive lung ADC, but not a total absence of immune infiltration supports further clinical evaluation of immune-modulators as partners of ICB in such tumors.
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