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免疫检查点主要由原发性人类癌症中克隆扩增的 CD4FoxP3 肿瘤内 T 细胞共表达。

Immune checkpoints are predominantly co-expressed by clonally expanded CD4FoxP3 intratumoral T-cells in primary human cancers.

机构信息

Gustave Roussy, 114 Rue Édouard Vaillant, 94805, Villejuif, France.

Institut National de La Santé Et de La Recherche Médicale (INSERM) U1015, Laboratoire de Recherche Translationnelle en Immunothérapie (LRTI), 94805, Villejuif, France.

出版信息

J Exp Clin Cancer Res. 2023 Dec 6;42(1):333. doi: 10.1186/s13046-023-02897-6.

Abstract

BACKGROUND

In addition to anti-PD(L)1, anti-CTLA-4 and anti-LAG-3, novel immune checkpoint proteins (ICP)-targeted antibodies have recently failed to demonstrate significant efficacy in clinical trials. In these trials, patients were enrolled without screening for drug target expression. Although these novel ICP-targeted antibodies were expected to stimulate anti-tumor CD8 + T-cells, the rationale for their target expression in human tumors relied on pre-clinical IHC stainings and transcriptomic data, which are poorly sensitive and specific techniques for assessing membrane protein expression on immune cell subsets. Our aim was to describe ICP expression on intratumoral T-cells from primary solid tumors to better design upcoming neoadjuvant cancer immunotherapy trials.

METHODS

We prospectively performed multiparameter flow cytometry and single-cell RNA sequencing (scRNA-Seq) paired with TCR sequencing on freshly resected human primary tumors of various histological types to precisely determine ICP expression levels within T-cell subsets.

RESULTS

Within a given tumor type, we found high inter-individual variability for tumor infiltrating CD45 + cells and for T-cells subsets. The proportions of CD8 T-cells (~ 40%), CD4 FoxP3 T-cells (~ 40%) and CD4 FoxP3 T-cells (~ 10%) were consistent across patients and indications. Intriguingly, both stimulatory (CD25, CD28, 4-1BB, ICOS, OX40) and inhibitory (PD-1, CTLA-4, PD-L1, CD39 and TIGIT) checkpoint proteins were predominantly co-expressed by intratumoral CD4FoxP3 T-cells. ScRNA-Seq paired with TCR sequencing revealed that T-cells with high clonality and high ICP expressions comprised over 80% of FoxP3 cells among CD4 T-cells. Unsupervised clustering of flow cytometry and scRNAseq data identified subsets of CD8 T-cells and of CD4 FoxP3 T-cells expressing certain checkpoints, though these expressions were generally lower than in CD4 FoxP3 T-cell subsets, both in terms of proportions among total T-cells and ICP expression levels.

CONCLUSIONS

Tumor histology alone does not reveal the complete picture of the tumor immune contexture. In clinical trials, assumptions regarding target expression should rely on more sensitive and specific techniques than conventional IHC or transcriptomics. Flow cytometry and scRNAseq accurately characterize ICP expression within immune cell subsets. Much like in hematology, flow cytometry can better describe the immune contexture of solid tumors, offering the opportunity to guide patient treatment according to drug target expression rather than tumor histological type.

摘要

背景

除了抗 PD(L)1、抗 CTLA-4 和抗 LAG-3 之外,新型免疫检查点蛋白 (ICP) 靶向抗体最近在临床试验中未能显示出显著疗效。在这些试验中,患者在没有筛选药物靶点表达的情况下被纳入。尽管这些新型 ICP 靶向抗体有望刺激抗肿瘤 CD8+T 细胞,但它们在人类肿瘤中的靶表达的基本原理依赖于临床前 IHC 染色和转录组数据,这些技术对于评估免疫细胞亚群上的膜蛋白表达的敏感性和特异性较差。我们的目的是描述原发性实体肿瘤中肿瘤内 T 细胞的 ICP 表达,以更好地设计即将进行的新辅助癌症免疫治疗试验。

方法

我们前瞻性地对各种组织学类型的新鲜切除的人类原发性肿瘤进行了多参数流式细胞术和单细胞 RNA 测序 (scRNA-Seq) 与 TCR 测序,以精确确定 T 细胞亚群内的 ICP 表达水平。

结果

在给定的肿瘤类型内,我们发现肿瘤浸润性 CD45+细胞和 T 细胞亚群的个体间变异性很大。CD8+T 细胞 (40%)、CD4+FoxP3 T 细胞 (40%) 和 CD4+FoxP3+T 细胞 (~10%) 的比例在患者和适应证之间是一致的。有趣的是,肿瘤内 CD4FoxP3 T 细胞主要共表达刺激 (CD25、CD28、4-1BB、ICOS、OX40) 和抑制 (PD-1、CTLA-4、PD-L1、CD39 和 TIGIT) 检查点蛋白。单细胞 RNA 测序与 TCR 测序配对显示,具有高克隆性和高 ICP 表达的 T 细胞占 CD4 T 细胞中 FoxP3 细胞的 80%以上。流式细胞术和 scRNAseq 数据的无监督聚类鉴定了表达某些检查点的 CD8+T 细胞和 CD4+FoxP3 T 细胞亚群,尽管这些表达的比例在总 T 细胞和 ICP 表达水平上均低于 CD4+FoxP3+T 细胞亚群。

结论

肿瘤组织学本身并不能揭示肿瘤免疫微环境的全貌。在临床试验中,关于靶表达的假设应依赖于比传统 IHC 或转录组学更敏感和特异的技术。流式细胞术和 scRNAseq 可准确描述免疫细胞亚群内的 ICP 表达。就像在血液学中一样,流式细胞术可以更好地描述实体肿瘤的免疫微环境,有机会根据药物靶点表达而不是肿瘤组织学类型来指导患者治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/690c/10699039/08eac2b3fa5d/13046_2023_2897_Fig1_HTML.jpg

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