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用于 CAR-T 细胞自动化生产的高密度微流控生物反应器

英文原题:A high-density microfluidic bioreactor for the automated manufacturing of CAR T cells.

查看英文原题

A high-density microfluidic bioreactor for the automated manufacturing of CAR T cells.

PubMed 2024/06/04(内容时间) Nat Biomed Eng Q1 · IF 26.3(JCR 2025)

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中文摘要

自体嵌合抗原受体(CAR)T 细胞制造主要依赖补料分批和人工流程,这些方法通常缺乏环境监测与控制;或依赖难以灵活扩展产能以满足患者需求的生物反应器。本研究显示,在 2 mL 自动化封闭式微流控生物反应器中,人原代 T 细胞可被活化、转导并扩增至高密度,制备出具有活性的抗 CD19 CAR-T 细胞(淋巴瘤患者来源供者细胞可制得超过 6,000 万个 CAR-T 细胞,健康供者可制得超过 2 亿个)。细胞产品的体外细胞因子分泌、短期细胞毒活性、长期持续存留和增殖能力,以及体内抗白血病活性,均与使用透气培养孔制备的 T 细胞相当。微型可灌流生物反应器强化制造流程,有望促进外培养 CAR-T 细胞生长和代谢状态分析、高通量优化细胞制造工艺,以及细胞疗法制造产能的扩展。

展开英文摘要原文

The manufacturing of autologous chimaeric antigen receptor (CAR) T cells largely relies either on fed-batch and manual processes that often lack environmental monitoring and control or on bioreactors that cannot be easily scaled out to meet patient demands.

Here we show that human primary T cells can be activated, transduced and expanded to high densities in a 2 ml automated closed-system microfluidic bioreactor to produce viable anti-CD19 CAR T cells (specifically, more than 60 million CAR T cells from donor cells derived from patients with lymphoma and more than 200 million CAR T cells from healthy donors).

The in vitro secretion of cytokines, the short-term cytotoxic activity and the long-term persistence and proliferation of the cell products, as well as their in vivo anti-leukaemic activity, were comparable to those of T cells produced in a gas-permeable well.

The manufacturing-process intensification enabled by the miniaturized perfusable bioreactor may facilitate the analysis of the growth and metabolic states of CAR T cells during ex vivo culture, the high-throughput optimization of cell-manufacturing processes and the scale out of cell-therapy manufacturing.

论文信息

作者
Sin WX、Jagannathan NS、Teo DBL、Kairi F、Fong SY、Tan JHL、Sandikin D、Cheung KW
第一作者单位
Critical Analytics for Manufacturing Personalized-Medicine (CAMP), Singapore-MIT Alliance for Research and Technology Centre (SMART), Singapore, Singapore.Italy
通讯作者单位
Critical Analytics for Manufacturing Personalized-Medicine (CAMP), Singapore-MIT Alliance for Research and Technology Centre (SMART), Singapore, Singapore. mbirnb@mit.edu.Italy
期刊
Nature biomedical engineering2024 Dec
原文标识
PubMed 38834752 · DOI 10.1038/s41551-024-01219-1