免疫检查点阻断通过扩增效应 CD8⁺ T 细胞克隆增强淋巴细胞清除性化疗诱导的抗肿瘤免疫
Immune Checkpoint Blockade Augments Lymphodepleting Chemotherapy-Induced Antitumor Immunity by Expanding Effector CD8+ T-cell Clones.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Comprehensive immunophenotyping of solid tumor-infiltrating immune cells reveals the expression characteristics of LAG-3 and its ligands.
Comprehensive immunophenotyping of solid tumor-infiltrating immune cells reveals the expression characteristics of LAG-3 and its ligands.
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基于患者样本的免疫细胞表达谱分析,对免疫肿瘤药物成功开发至关重要,有助于理解作用机制、发现预测应答的探索性生物标志物,并指导治疗选择及联合治疗策略。LAG-3是一种可抑制抗肿瘤T细胞应答的免疫抑制检查点。联合靶向LAG-3和PD-1是增强抗肿瘤免疫的合理策略,近期已显示临床疗效。本研究旨在确定表达LAG-3及其配体的人免疫细胞亚群,表征这些亚群的标志物表达谱,并探讨LAG-3表达亚群与免疫肿瘤治疗临床结局之间的潜在关系。
对来自两组不同实体瘤患者样本中的TIL(肿瘤浸润淋巴细胞)和外周血单个核细胞(PBMC)进行综合高参数免疫表型分析,采用质谱流式和常规流式细胞术。另对一项接受免疫治疗的黑色素瘤临床试验队列样本进行单细胞RNA测序,以分析循环免疫细胞。
肿瘤浸润CD8中央记忆(TCM)和效应记忆(TEM)细胞亚群中LAG-3表达最高,且常与PD-1共表达。PD-1阳性/LAG-3阳性CD8记忆T细胞具有独特标志物谱,与仅表达PD-1或LAG-3、或两种检查点均阴性的细胞相比,其活化标志物(CD69、HLA-DR)、抑制性标志物(TIM-3、TIGIT、CTLA-4)和刺激性标志物(4-1BB、ICOS)表达更高。与肿瘤组织相比,健康供者及实体瘤患者循环免疫细胞中的LAG-3表达较少。多种免疫细胞类型中均可见LAG-3配体MHC-II和半乳糖凝集素3高表达,而FGL1和LSECtin在肿瘤微环境(TME)免疫细胞中的表达极低。最后,在采用单细胞RNA测序分析的黑色素瘤临床试验队列中,治疗前及治疗期间循环LAG3转录本阳性CD8记忆T细胞水平与PD-1和CTLA-4联合阻断疗效呈负相关。
这些结果揭示了TME中表达LAG-3及其配体的免疫细胞特征,并提示其生物学基础可用于提出机制假说、指导治疗选择和设计联合免疫疗法,推动PD-1与LAG-3双重阻断的持续开发。
Immune cell expression profiling from patient samples is critical for the successful development of immuno-oncology agents and is useful to understand mechanism-of-action, to identify exploratory biomarkers predictive of response, and to guide treatment selection and combination therapy strategies. LAG-3 is an inhibitory immune checkpoint that can suppress antitumor T-cell responses and targeting LAG-3, in combination with PD-1, is a rational approach to enhance antitumor immunity that has recently demonstrated clinical success. Here, we sought to identify human immune cell subsets that express LAG-3 and its ligands, to characterize the marker expression profile of these subsets, and to investigate the potential relationship between LAG-3 expressing subsets and clinical outcomes to immuno-oncology therapies.
Comprehensive high-parameter immunophenotyping was performed using mass and flow cytometry of tumor-infiltrating lymphocytes (TILs) and peripheral blood mononuclear cells (PBMCs) from two independent cohorts of samples from patients with various solid tumor types. Profiling of circulating immune cells by single cell RNA-seq was conducted on samples from a clinical trial cohort of melanoma patients treated with immunotherapy.
LAG-3 was most highly expressed by subsets of tumor-infiltrating CD8 T central memory (TCM) and effector memory (TEM) cells and was frequently co-expressed with PD-1. We determined that these PD-1 + LAG-3 + CD8 memory T cells exhibited a unique marker profile, with greater expression of activation (CD69, HLA-DR), inhibitory (TIM-3, TIGIT, CTLA-4) and stimulatory (4-1BB, ICOS) markers compared to cells that expressed only PD-1 or LAG-3, or that were negative for both checkpoints. In contrast to tumors, LAG-3 expression was more limited in circulating immune cells from healthy donors and solid tumor patients. Additionally, we found abundant expression of the LAG-3 ligands MHC-II and galectin-3 in diverse immune cell types, whereas FGL1 and LSECtin were minimally expressed by immune cells in the tumor microenvironment (TME). Lastly, we found an inverse relationship between baseline and on-treatment levels of circulating LAG3 transcript-expressing CD8 memory T cells and response to combination PD-1 and CTLA-4 blockade in a clinical trial cohort of melanoma patients profiled by scRNAseq.
These results provide insights into the nature of LAG-3- and ligand-expressing immune cells within the TME, and suggest a biological basis for informing mechanistic hypotheses, treatment selection strategies, and combination immunotherapy approaches to support continued development of dual PD-1 and LAG-3 blockade.
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