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:TCR-engaging scaffolds selectively expand antigen-specific T-cells with a favorable phenotype for adoptive cell therapy.
TCR-engaging scaffolds selectively expand antigen-specific T-cells with a favorable phenotype for adoptive cell therapy.
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Ag-scaffold 代表了一种有前景的新技术,可直接从血液中选择性扩增抗原特异性 CD8+ T 细胞,为 ACT 获得高度特异性且功能增强的 T 细胞产品。
过继性细胞治疗(ACT)在癌症和病毒感染治疗中已显示出良好前景。成功的ACT依赖于在体外扩增大量具有强细胞毒能力和体内持久性的目标T细胞,这是当前ACT策略面临的最大挑战。在本研究中,我们提出了一种用于体外扩增抗原特异性T细胞的新技术;人工抗原呈递支架(Ag-scaffolds),由葡聚糖-多糖骨架构成,修饰有肽-主要组织相容性复合体(pMHC)、细胞因子和共刺激分子的组合,能够协同刺激抗原特异性T细胞。
在体外培养中,利用健康供体和转移性黑色素瘤患者的外周血单个核细胞,探索了Ag支架扩增抗原特异性T细胞的能力。对所得T细胞产物进行了表型和功能特征的评估。
我们确定了一种用于ACT中T细胞扩增的最佳Ag支架,其携带pMHC以及白细胞介素-2(IL-2)和IL-21,利用该支架,我们分别从健康供者和患者的外周血中高效扩增了病毒特异性和肿瘤特异性CD8+ T细胞。所得T细胞产物的特征为抗原特异性细胞频率高、自我更新能力强、耗竭程度低、抗原刺激后具有多功能细胞因子谱以及优越的肿瘤杀伤能力。这表明,由优化的TCR结合(pMHC)和刺激(细胞因子)部分化学计量比所提供的协同刺激对于获得所需的T细胞特征至关重要。为了生成与转移性黑色素瘤患者相关的“现成”多靶点Ag支架产品,我们在87例患者队列中确定了30个最常被识别的共享HLA-A0201限制性黑色素瘤表位。通过将这些表位组合在一个Ag支架产品中,我们能够从60-70%的黑色素瘤患者中扩增肿瘤特异性T细胞,产生一种多靶点T细胞产品,其中特异性T细胞高达25%,且表型和功能均得到改善。
Adoptive cell therapy (ACT) has shown promising results for the treatment of cancer and viral infections. Successful ACT relies on ex vivo expansion of large numbers of desired T-cells with strong cytotoxic capacity and in vivo persistence, which constitutes the greatest challenge to current ACT strategies. Here, in this study, we present a novel technology for ex vivo expansion of antigen-specific T-cells; artificial antigen-presenting scaffolds (Ag-scaffolds) consisting of a dextran-polysaccharide backbone, decorated with combinations of peptide-Major Histocompatibility Complex (pMHC), cytokines and co-stimulatory molecules, enabling coordinated stimulation of antigen-specific T-cells.
The capacity of Ag-scaffolds to expand antigen-specific T-cells was explored in ex vivo cultures with peripheral blood mononuclear cells from healthy donors and patients with metastatic melanoma. The resulting T-cell products were assessed for phenotypic and functional characteristics.
We identified an optimal Ag-scaffold for expansion of T-cells for ACT, carrying pMHC and interleukin-2 (IL-2) and IL-21, with which we efficiently expanded both virus-specific and tumor-specific CD8+ T cells from peripheral blood of healthy donors and patients, respectively. The resulting T-cell products were characterized by a high frequency of antigen-specific cells with high self-renewal capacity, low exhaustion, a multifunctional cytokine profile upon antigen-challenge and superior tumor killing capacity. This demonstrates that the coordinated stimuli provided by an optimized stoichiometry of TCR engaging (pMHC) and stimulatory (cytokine) moieties is essential to obtain desired T-cell characteristics. To generate an 'off-the-shelf' multitargeting Ag-scaffold product of relevance to patients with metastatic melanoma, we identified the 30 most frequently recognized shared HLA-A0201-restricted melanoma epitopes in a cohort of 87 patients. By combining these in an Ag-scaffold product, we were able to expand tumor-specific T-cells from 60-70% of patients with melanoma, yielding a multitargeted T-cell product with up to 25% specific and phenotypically and functionally improved T cells.
Taken together, the Ag-scaffold represents a promising new technology for selective expansion of antigen-specific CD8+ T cells directly from blood, yielding a highly specific and functionally enhanced T-cell product for ACT.
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