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:Generation and GMP scale-up of human CAR-T cells using non-viral Sleeping Beauty transposons for B cell malignances.
本研究提供了一种成本效益高、符合GMP要求的非病毒载体CAR-T细胞制备工艺。
大多数CAR-T疗法依赖于使用整合型病毒载体对T细胞进行基因工程改造,尽管有效,但成本高昂得令人望而却步。在此,我们基于Sleeping Beauty转座子递送系统,生成了TranspoCART19细胞,这是一种靶向CD19的全功能4-1BB第二代CAR-T细胞产品,融合了截短型人EGFR(hEGFRt)作为报告基因和安全开关。我们的生产方案允许在GMP条件下生成TranspoCART19细胞,其体外和体内抗肿瘤疗效与使用慢病毒载体生成的传统CAR-T细胞相似。此外,hEGFRt的膜表达促进了西妥昔单抗给药后体内CAR-T细胞的清除。安全性分析显示,TranspoCART19细胞呈现低载体拷贝数和接近随机的载体整合谱。此外,最终TranspoCART19产品缺乏用于生成CAR-T细胞的非整合基因组物质,且不含转座酶蛋白。体内生物分布分析显示,TranspoCART19细胞主要存在于造血器官中,无性别偏倚。总之,本研究提供了一种经济高效、符合GMP的生产工艺,用于使用非病毒载体生成CAR-T细胞。这些结果支持了一项临床试验的批准,该试验旨在评估TranspoCART19细胞在复发/难治性淋巴瘤患者中的疗效(NCT06378190),目前正在进行中。
Most CAR-T therapies rely on genetic T cell engineering with integrating viral vectors that, although effective, are associated with prohibitive costs. Here we have generated TranspoCART19 cells, a fully functional 4-1BB second-generation CAR-T cell product targeting CD19, fused to a truncated version of the human EGFR (hEGFRt) as reporter gene and safety switch, based on the Sleeping Beauty transposon delivery system. Our manufacturing protocol allowed generation of TranspoCART19 cells under GMP conditions, showing similar in vitro and in vivo antitumoral efficacy than conventional CAR-T cells generated with lentiviral vectors. Additionally, membrane expression of hEGFRt facilitated in vivo CAR-T cell elimination after cetuximab administration. Safety analyses showed that TranspoCART19 cells presented low vector copy numbers and close-to-random vector integration profiles. Moreover, final TranspoCART19 products lacked non-integrated genomic material used for the generation of CAR-T cells and were free from transposase protein. In vivo biodistribution analyses revealed that TranspoCART19 cells were mainly present in hematopoietic organs with no gender bias. Altogether, this study provides a cost-effective, GMP-compliant manufacturing process for the generation of CAR-T cells using non-viral vectors. These results have supported the approval of a clinical trial to evaluate TranspoCART19 cells in patients with relapsed/refractory lymphoma (NCT06378190) that is currently ongoing.
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