决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Choosing T-cell sources determines CAR-T cell activity in neuroblastoma.
CB 与 45RA 来源的 T 细胞可作为同种异体 T 细胞来源用于制备 CAR-T 细胞。
引言:嵌合抗原受体修饰T细胞(CAR-T)治疗血液系统恶性肿瘤取得临床成功,但因缺乏癌种特异性抗原,尚未在实体瘤中复制这一成果。本研究采用新型组合策略:使用通用型抗FITC CAR-T效应细胞,并配合FITC偶联的神经母细胞瘤(NB)靶向连接分子,即识别GD2的FITC偶联单克隆抗体dinutuximab。 方法:比较脐带血(CB)与富集CD45RA的外周血白细胞单采产物(45RA)作为同种异体T细胞来源,并以外周血(PB)为对照,选出制备抗FITC CAR-T的最佳条件。细胞在两种细胞因子条件下培养(IL-2或IL-7+IL-15+IL-21),同时比较有无CD3/CD28刺激。通过免疫表型、载体拷贝数和基因组完整性进行产品表征及质量控制。将CB或45RA来源抗FITC CAR-T细胞与多种抗GD2-FITC标记NB细胞系共培养,分析其功能和抗肿瘤能力。 结果:IL-7+IL-15+IL-21细胞因子组合加共刺激信号,可使CB和45RA T细胞均获得良好增殖率并维持较低分化的免疫表型,因此用于CAR-T制备及后续表征。与对照相比,在IL-7+IL-15+IL-21条件下培养的CB和CD45RA来源抗FITC CAR-T细胞主要保持初始型表型。存在NB-FITC靶向时,CB来源CD4⁺抗FITC CAR-T细胞的共刺激受体OX40和4-1BB水平最高;CD8⁺ CAR-T细胞则表现为PD-1和4-1BB水平较高、TIM3和OX40水平较低。与其他来源相比,CB来源抗FITC CAR-T细胞向共培养上清释放的IFN-γ和TNF-α最多。与CB来源CAR-T细胞共培养48小时后,NB靶细胞存活率降至30%。 结论:CB和45RA来源T细胞可用作制备CAR-T细胞的同种异体来源。此外,体外采用IL-7+IL-15+IL-21培养可能有助于制备宿主体内持久性更长的CAR-T产品。本策略可将靶向CAR-T方法与目前用于治疗NB的dinutuximab结合,为现有治疗提供补充。
INTRODUCTION: The clinical success of chimeric antigen receptor-modified T cells (CAR-T cells) for hematological malignancies has not been reproduced for solid tumors, partly due to the lack of cancer-type specific antigens. In this work, we used a novel combinatorial approach consisting of a versatile anti-FITC CAR-T effector cells plus an FITC-conjugated neuroblastoma (NB)-targeting linker, an FITC-conjugated monoclonal antibody (Dinutuximab) that recognizes GD2. METHODS: We compared cord blood (CB), and CD45RA-enriched peripheral blood leukapheresis product (45RA) as allogeneic sources of T cells, using peripheral blood (PB) as a control to choose the best condition for anti-FITC CAR-T production. Cells were manufactured under two cytokine conditions (IL-2 versus IL-7+IL-15+IL-21) with or without CD3/CD28 stimulation. Immune phenotype, vector copy number, and genomic integrity of the final products were determined for cell characterization and quality control assessment. Functionality and antitumor capacity of CB/45RA-derived anti-FITC CAR-T cells were analyzed in co-culture with different anti-GD2-FITC labeled NB cell lines. RESULTS: The IL-7+IL-15+IL-21 cocktail, in addition to co-stimulation signals, resulted in a favorable cell proliferation rate and maintained less differentiated immune phenotypes in both CB and 45RA T cells. Therefore, it was used for CAR-T cell manufacturing and further characterization. CB and CD45RA-derived anti-FITC CAR-T cells cultured with IL-7+IL-15+IL-21 retained a predominantly na ve phenotype compared with controls. In the presence of the NB-FITC targeting, CD4+ CB-derived anti-FITC CAR-T cells showed the highest values of co-stimulatory receptors OX40 and 4-1BB, and CD8+ CAR-T cells exhibited high levels of PD-1 and 4-1BB and low levels of TIM3 and OX40, compared with CAR-T cells form the other sources studied. CB-derived anti-FITC CAR-T cells released the highest amounts of cytokines (IFN- and TNF- ) into co-culture supernatants. The viability of NB target cells decreased to 30% when co-cultured with CB-derived CAR-T cells during 48h. CONCLUSION: CB and 45RA-derived T cells may be used as allogeneic sources of T cells to produce CAR-T cells. Moreover, ex vivo culture with IL-7+IL-15+IL-21 could favor CAR-T products with a longer persistence in the host. Our strategy may complement the current use of Dinutuximab in treating NB through its combination with a targeted CAR-T cell approach.
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