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NSCLC 患者的数字基因表达分析揭示了强大的免疫压力,导致免疫治疗下的免疫逃逸

英文原题:Digital gene expression analysis of NSCLC-patients reveals strong immune pressure, resulting in an immune escape under immunotherapy.

查看英文原题

Digital gene expression analysis of NSCLC-patients reveals strong immune pressure, resulting in an immune escape under immunotherapy.

PubMed 2022/01/07(内容时间) BMC Cancer Q2 · IF 4.1(JCR 2025)

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研究概要

免疫系统的压力将为逃逸机制奠定基础,导致治疗过程中获得耐药性。PD-L1 表达和抗原加工改变均由显著的免疫活性类似诱导,但发生在不同情境中。目前的数据有助于加深我们对这些免疫逃逸背后机制的理解。

研究思路结论见上方概要

免疫检查点抑制剂(ICIs)是目前肿瘤学领域最有前途的治疗选择之一。尽管第一个关键的 ICI 试验结果于 2011 年发表,但很少有生物标志物可以预测其治疗结果。 PD-L1 表达和肿瘤突变负荷 (TMB) 被证明是有时不可靠的生物标志物。我们之前建议对处理逃逸进行分析,即免疫系统压力下表位结构改变的定性测量,以提供 ICI 反应的预测信息。在这里,我们试图进一步验证这种方法并描述与不同形式的免疫压力的相互作用。

我们确定了一个由 48 名接受纳武单抗作为 ICI 单药治疗的晚期非小细胞肺癌 (NSCLC) 患者组成的队列。使用涵盖 98 个突变热点的 22 个癌症相关基因组对肿瘤样本进行基于扩增子的靶向测序。 NetChop 预测了抗原加工的改变,NetMHC 验证了 MHC 结合。利用NanoString nCounter平台提供770个免疫相关基因的基因表达数据。从癌症基因组图谱 (TCGA) 中检索 408 名 NSCLC 患者的患者数据作为验证队列。

PD-L1 表达(TPS 评分)(n = 18)和抗原处理改变的存在(n = 10)这两种免疫逃逸机制是相互非排斥的,并且可以发生在同一患者(n = 6)中。根据差异基因表达分析和基因集富集分析,这两种机制分别对不同的基因和途径具有独特的影响。有趣的是,与加工改变相关的基因表达模式在 T 细胞和 NK 细胞免疫活性中得到丰富。尽管这两种机制影响不同的基因,但它们与免疫活性的增强有着相似的联系。

展开英文摘要原文

Immune checkpoint inhibitors (ICIs) are currently one of the most promising therapy options in the field of oncology. Although the first pivotal ICI trial results were published in 2011, few biomarkers exist to predict their therapy outcome. PD-L1 expression and tumor mutational burden (TMB) were proven to be sometimes-unreliable biomarkers. We have previously suggested the analysis of processing escapes, a qualitative measurement of epitope structure alterations under immune system pressure, to provide predictive information on ICI response. Here, we sought to further validate this approach and characterize interactions with different forms of immune pressure.

We identified a cohort consisting of 48 patients with advanced non-small cell lung cancer (NSCLC) treated with nivolumab as ICI monotherapy. Tumor samples were subjected to targeted amplicon-based sequencing using a panel of 22 cancer-associated genes covering 98 mutational hotspots. Altered antigen processing was predicted by NetChop, and MHC binding verified by NetMHC. The NanoString nCounter platform was utilized to provide gene expression data of 770 immune-related genes. Patient data from 408 patients with NSCLC were retrieved from The Cancer Genome Atlas (TCGA) as a validation cohort.

The two immune escape mechanisms of PD-L1 expression (TPS score) (n = 18) and presence of altered antigen processing (n = 10) are mutually non-exclusive and can occur in the same patient (n = 6). Both mechanisms have exclusive influence on different genes and pathways, according to differential gene expression analysis and gene set enrichment analysis, respectively. Interestingly, gene expression patterns associated with altered processing were enriched in T cell and NK cell immune activity. Though both mechanisms influence different genes, they are similarly linked to increased immune activity.

Pressure from the immune system will lay the foundations for escape mechanisms, leading to acquisition of resistance under therapy. Both PD-L1 expression and altered antigen processing are induced similarly by pronounced immunoactivity but in different context. The present data help to deepen our understanding of the underlying mechanisms behind those immune escapes.

论文信息

作者
Wessolly M、Stephan-Falkenau S、Streubel A、Wiesweg M、Borchert S、Mairinger E、Kollmeier J、Reis H
单位
Institute of Pathology, University Hospital Essen, University of Duisburg-Essen, Hufelandstrasse 55, 45147, Essen, Germany. michael.wessolly@uk-essen.de.Germany
期刊
BMC cancer2022 Jan 7
原文标识
PubMed 34996407 · DOI 10.1186/s12885-021-09111-w