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基于转座子的 CAR-T 细胞自动化规模化生产

英文原题:Automated, scaled, transposon-based production of CAR T cells.

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Automated, scaled, transposon-based production of CAR T cells.

PubMed 2022/09/01(内容时间) J Immunother Cancer Q1 · IF 11.7(JCR 2025)

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研究概要

我们报告了首个基于转座子的自动化 CAR-T 细胞生产流程,该流程已准备好进行正式验证并用于临床生产活动。该流程和平台有潜力促进患者获得 CAR-T 细胞治疗,并加速学术和工业环境中的规模化、多重化生产。

研究思路结论见上方概要

患者和护理人员对嵌合抗原受体(CAR)T细胞产品的需求日益增加。在此,我们在CliniMACS Prodigy平台上建立了一种自动化CAR-T 细胞生产工艺,其规模可提供治疗剂量,并通过无病毒的Sleeping Beauty(SB)转座实现基因转移。

我们使用了一台连接电穿孔单元的先进CliniMACS Prodigy,并用原代人T细胞进行了一系列小规模开发和大规模验证运行。转座通过小环(MC)DNA编码的SB100X转座酶和编码CD19 CAR的pT2转座子完成。

我们分别定义了双向和单向电场的双脉冲电穿孔冲击,可实现高效的MC插入并维持高频率的存活T细胞。在三次大规模运行中,从白细胞分离产物中富集2E8 T细胞,经过激活、基因工程改造和扩增,在12天内可产出高达3.5E9总T细胞/1.4E9 CAR修饰T细胞(CAR修饰T细胞:28.8% 12.3%)。所得细胞产品含有高度纯化的T细胞(97.3 1.6%),CD4/CD8比例均衡,且具有中枢记忆表型的T细胞频率较高(87.5% 10.4%)。转座子拷贝数在运行#1-3中分别为7.0、9.4和6.8,基因分析显示激活/耗竭标志物的表达均衡。CD19 CAR-T 细胞产品在临床前模型中赋予了强效的抗淋巴瘤反应性。值得注意的是,与传统的非自动化CAR-T 细胞生产活动相比,操作人员的手工操作时间大幅减少。

展开英文摘要原文

There is an increasing demand for chimeric antigen receptor (CAR) T cell products from patients and care givers. Here, we established an automated manufacturing process for CAR T cells on the CliniMACS Prodigy platform that is scaled to provide therapeutic doses and achieves gene-transfer with virus-free Sleeping Beauty (SB) transposition.

We used an advanced CliniMACS Prodigy that is connected to an electroporator unit and performed a series of small-scale development and large-scale confirmation runs with primary human T cells. Transposition was accomplished with minicircle (MC) DNA-encoded SB100X transposase and pT2 transposon encoding a CD19 CAR.

We defined a bi-pulse electroporation shock with bi-directional and unidirectional electric field, respectively, that permitted efficient MC insertion and maintained a high frequency of viable T cells. In three large scale runs, 2E8 T cells were enriched from leukapheresis product, activated, gene-engineered and expanded to yield up to 3.5E9 total T cells/1.4E9 CAR-modified T cells within 12 days (CAR-modified T cells: 28.8% 12.3%). The resulting cell product contained highly pure T cells (97.3 1.6%) with balanced CD4/CD8 ratio and a high frequency of T cells with central memory phenotype (87.5% 10.4%). The transposon copy number was 7.0, 9.4 and 6.8 in runs #1-3, respectively, and gene analyses showed a balanced expression of activation/exhaustion markers. The CD19 CAR T cell product conferred potent anti-lymphoma reactivity in pre-clinical models. Notably, the operator hands-on-time was substantially reduced compared with conventional non-automated CAR T cell manufacturing campaigns.

We report on the first automated transposon-based manufacturing process for CAR T cells that is ready for formal validation and use in clinical manufacturing campaigns. This process and platform have the potential to facilitate access of patients to CAR T cell therapy and to accelerate scaled, multiplexed manufacturing both in the academic and industry setting.

论文信息

作者
Lock D、Monjezi R、Brandes C、Bates S、Lennartz S、Teppert K、Gehrke L、Karasakalidou-Seidt R
单位
Miltenyi Biotec BV & Co KG, Bergisch Gladbach, Germany dominiklo@miltenyi.com.Germany
文献类型
非美国政府资助研究
期刊
Journal for immunotherapy of cancer2022 Sep
原文标识
PubMed 36096530 · DOI 10.1136/jitc-2022-005189