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原代人 CAR-NK 细胞生产流程的优化

英文原题:Optimisation of a primary human CAR-NK cell manufacturing pipeline.

PubMed 2024/05/02(内容时间) Clin Transl Immunology Q3 · IF 3.4(JCR 2025)

研究概要

我们优化的生产流程显著提高了原代人 NK 细胞的慢病毒转导效率。

中文摘要

目的:自体嵌合抗原受体(CAR)T 细胞疗法可使较大比例 B 细胞恶性肿瘤患者实现长期缓解,并推动研究者积极探索将这一成功方法拓展至其他癌种。然而,自体 CAR-T 制备流程复杂、患者来源 T 细胞适应性受损、严重毒性发生率较高,且产品生产和住院成本高昂,促使领域创新以克服这些障碍。一种替代方法是使用异基因自然杀伤(NK)细胞制备 CAR-NK 疗法,但传统上这类细胞来源存在许多生产挑战。 方法:为解决这一问题,研究开发了优化的原代人 NK 细胞扩增和转导方案,旨在支持规模化生产和临床评估。研究深入比较了不同原代人 NK 细胞来源作为起始材料的表现,在 CAR-NK 制备关键时间点表征其表型、功能、扩增潜能和转导效率。 结果:研究发现,成人外周血来源 NK 细胞是制备 CAR-NK 产品的优选来源,因为其 CAR 表达 NK 细胞的最大产量更高,同时具有强效天然及 CAR 介导的抗肿瘤效应功能。 结论:优化后的制备流程显著提高原代人 NK 细胞的慢病毒转导效率。由于转导前后均可指数级扩增且靶向细胞毒性强,外周血来源 NK 细胞适用于临床,且是具有吸引力的 CAR-NK 产品。

展开英文摘要原文

OBJECTIVES: Autologous chimeric antigen receptor (CAR) T-cell therapy of B-cell malignancies achieves long-term disease remission in a high fraction of patients and has triggered intense research into translating this successful approach into additional cancer types. However, the complex logistics involved in autologous CAR-T manufacturing, the compromised fitness of patient-derived T cells, the high rates of serious toxicities and the overall cost involved with product manufacturing and hospitalisation have driven innovation to overcome such hurdles. One alternative approach is the use of allogeneic natural killer (NK) cells as a source for CAR-NK cell therapy. However, this source has traditionally faced numerous manufacturing challenges. METHODS: To address this, we have developed an optimised expansion and transduction protocol for primary human NK cells primed for manufacturing scaling and clinical evaluation. We have performed an in-depth comparison of primary human NK cell sources as a starting material by characterising their phenotype, functionality, expansion potential and transduction efficiency at crucial timepoints of our CAR-NK manufacturing pipeline. RESULTS: We identified adult peripheral blood-derived NK cells to be the superior source for generating a CAR-NK cell product because of a higher maximum yield of CAR-expressing NK cells combined with potent natural, as well as CAR-mediated anti-tumor effector functions. CONCLUSIONS: Our optimised manufacturing pipeline dramatically improves lentiviral transduction efficiency of primary human NK cells. We conclude that the exponential expansion pre- and post-transduction and high on-target cytotoxicity make peripheral blood-derived NK cells a feasible and attractive CAR-NK cell product for clinical utility.

论文信息

作者
Pfefferle A、Contet J、Wong K、Chen C、Verhoeyen E、Slichter CK、Schluns KS、Cursons J
单位
Biomedicine Discovery Institute and the Department of Biochemistry and Molecular Biology Monash University Clayton VIC Australia.Australia
期刊
Clinical & translational immunology2024
原文标识
PubMed 38707997 · DOI 10.1002/cti2.1507