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Different cytokine and stimulation conditions influence the expansion and immune phenotype of third-generation chimeric antigen receptor T cells specific for tumor antigen GD2

机译:不同的细胞因子和刺激条件影响特异性针对肿瘤抗原GD2的第三代嵌合抗原受体T细胞的扩增和免疫表型

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Background aims. Chimeric antigen receptor (CAR) T cells are a novel immunotherapy for cancer. To achieve anti-tumor efficacy, these cells must survive, expand, and persist after infusion into patients, functions that are reportedly best achieved by cells with a stem or central-memory rather than effector-memory phenotype. We have developed third-generation CAR T cells specific for the tumor-associated antigen GD2 for use in a phase I clinical trial. We investigated the optimal cell culture conditions for CAR T-cell production, and here we describe the relative effects of 3 activation and cytokine conditions on CAR T-cell expansion, effector function and phenotype. Methods. Peripheral blood mononuclear cells were activated by anti-CD3 and anti-CD28 or anti-CD3 and Retronectin. Activated cells were transduced with the CAR-encoding retroviral vector and expanded in either interleukin (IL)-2 or IL-7 and IL-15. Immune phenotype and expansion were tracked throughout the culture, and transduction efficiency, and subsequent GD2-specific effector functions were evaluated by flow cytometry and cytotoxic T lymphocytes assay. Results. CD3/Retronectin stimulation with IL-2 resulted in poorer activation, expansion and Th1 cytokine secretion of CART cells than CD3/CD28 stimulation with either IL-2 or IL-7 and IL-15. However, CART cells cultured in CD3/CD28/1L7/IL-15 and CD3/Retronectin/IL-2 had superior cytotoxic T lymphocyte activity and a more stem-like phenotype. Discussion. The combination of CD3 and CD28 with IL-7 and IL-15 gave the best balance of CAR T-cell expansion and potent GD2-specific effector functions while retaining a stem/memory phenotype, and these growth conditions will therefore be used to manufacture CAR T cells for our phase I clinical trial.
机译:背景目标。嵌合抗原受体(CAR)T细胞是一种针对癌症的新型免疫疗法。为了获得抗肿瘤功效,这些细胞在输注到患者体内后必须能够存活,扩增并持续存在,据报道,这些功能最好通过具有干细胞或中枢记忆而不是效应物记忆表型的细胞来实现。我们已经开发出了针对肿瘤相关抗原GD2的第三代CAR T细胞,可用于I期临床试验。我们研究了产生CAR T细胞的最佳细胞培养条件,并在此描述了3种激活和细胞因子条件对CAR T细胞扩增,效应子功能和表型的相对影响。方法。外周血单核细胞被抗CD3和抗CD28或抗CD3和Retronectin激活。用编码CAR的逆转录病毒载体转导活化的细胞,并在白介素(IL)-2或IL-7和IL-15中扩增。在整个培养过程中跟踪免疫表型和扩增,并通过流式细胞术和细胞毒性T淋巴细胞分析评估转导效率,以及随后的GD2特异性效应子功能。结果。与IL-2或IL-7和IL-15的CD3 / CD28刺激相比,IL-2的CD3 / Retroectin刺激导致CART细胞的活化,扩增和Th1细胞因子分泌较差。然而,在CD3 / CD28 / 1L7 / IL-15和CD3 / Retroectin / IL-2中培养的CART细胞具有优异的细胞毒性T淋巴细胞活性和更干的表型。讨论。 CD3和CD28与IL-7和IL-15的组合可在保持干/记忆表型的同时,使CAR T细胞扩增和有效的GD2特异效应子功能达到最佳平衡,因此这些生长条件将用于制造CAR T细胞用于我们的I期临床试验。

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