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在搅拌式生物反应器中建立用于 CAR-T 细胞治疗的功能性慢病毒载体生产。

Establishing functional lentiviral vector production in a stirred bioreactor for CAR-T cell therapy.

机构信息

Key Laboratory of Industrial Fermentation Microbiology of the Ministry of Education & Tianjin Key Laboratory of Industrial Microbiology, College of Biotechnology, Tianjin University of Science and Technology, Tianjin, China.

College of Life Science and Health, Wuhan University of Science and Technology, Wuhan, Hubei, China.

出版信息

Bioengineered. 2021 Dec;12(1):2095-2105. doi: 10.1080/21655979.2021.1931644.

Abstract

As gene delivery tools, lentiviral vectors (LV) have broad applications in chimeric antigen receptor therapy (CAR-T). Large-scale production of functional LV is limited by the adherent, serum-dependent nature of HEK293T cells used in the manufacturing. HEK293T adherent cells were adapted to suspension cells in a serum-free medium to establish large-scale processes for functional LV production in a stirred bioreactor without micro-carriers. The results showed that 293 T suspension was successfully cultivated in F media (293 CD05 medium and SMM293-TII with 1:1 volume ratio), and the cells retained the capacity for LV production. After cultivation in a 5.5 L bioreactor for 4 days, the cells produced 1.5 ± 0.3 × 10 TU/mL raw LV, and the lentiviral transduction efficiency was 48.6 ± 2.8% in T Cells. The yield of LV equaled to the previous shake flask. The critical process steps were completed to enable a large-scale LV production process. Besides, a cryopreservation solution was developed to reduce protein involvement, avoid cell grafting and reduce process cost. The process is cost-effective and easy to scale up production, which is expected to be highly competitive.

摘要

作为基因传递工具,慢病毒载体 (LV) 在嵌合抗原受体治疗 (CAR-T) 中具有广泛的应用。大规模生产功能性 LV 受到制造中使用的贴壁、依赖血清的 HEK293T 细胞的限制。将 HEK293T 贴壁细胞适应于无血清培养基中的悬浮细胞,在搅拌生物反应器中建立了无微载体的功能性 LV 生产的大规模工艺。结果表明,293 T 悬浮细胞可成功在 F 培养基(293 CD05 培养基和 SMM293-TII 以 1:1 体积比)中培养,并且细胞保持生产 LV 的能力。在 5.5 L 生物反应器中培养 4 天后,细胞产生 1.5±0.3×10 TU/mL 原始 LV,T 细胞中的慢病毒转导效率为 48.6±2.8%。LV 的产量与之前的摇瓶相同。已完成关键工艺步骤,可实现大规模 LV 生产工艺。此外,开发了一种冷冻保存溶液以减少蛋白参与、避免细胞接种和降低工艺成本。该工艺具有成本效益,易于扩大生产规模,有望具有很强的竞争力。

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