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利用K562-mbIL-18/-21饲养细胞优化自然杀伤细胞扩增及无饲养细胞产品的保证

Optimization of Natural Killer Cell Expansion with K562-mbIL-18/-21 Feeder Cells and Assurance of Feeder Cell-free Products.

作者信息

Jo Hantae, Jo Yujung, Koh Seung Kwon, Lee Mijeong, Kim Jinho, Kweon SoonHo, Park Jeehun, Kim Hyun-Young, Cho Duck

机构信息

Department of Laboratory Medicine and Genetics, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, Korea.

Department of Health Sciences and Technology, Samsung Advanced Institute for Health Sciences & Technology (SAIHST), Sungkyunkwan University, Seoul, Korea.

出版信息

Ann Lab Med. 2025 Jul 24. doi: 10.3343/alm.2025.0168.

Abstract

BACKGROUND

Cancer cell line-derived feeder cells enhance natural killer (NK) cell expansion; however, concerns regarding viable residual feeder cells in the final product limit their use. Evidence supporting the safety of NK-sensitive K562-based feeders, even when irradiated, is scarce. We optimized an NK cell expansion protocol using genetically engineered K562-mbIL-18/-21 (GE-K562) feeder cells and clinical-grade media and confirmed the absence of residual feeder cells.

METHODS

NK cell expansion efficiency was compared between feeder-free and feeder-based systems using CTS NK-Xpander Medium. To achieve optimal NK expansion, various peripheral blood mononuclear cell (PBMC)-to-feeder ratios and re-stimulation frequencies were tested over 21 days. Flow cytometry and quantitative reverse transcription PCR (RT-qPCR) were used to confirm the absence of feeder cells in the final NK cell product.

RESULTS

Feeder-based systems showed superior NK cell fold expansion compared with that of feeder-free systems. Among feeder-based conditions, NK cells expanded 5,224-fold at a 2:1 PBMC-to-feeder ratio after 3 weeks, relative to 1,450-fold at a 6:1 ratio ( <0.05). Re-stimulation on days 7 and 14 further increased expansion up to 261,457-fold. Irradiated feeder cells showed no proliferation and were eliminated within 3-6 days. On day 21, flow cytometry and RT-qPCR results confirmed the absence of residual feeder cells.

CONCLUSIONS

Our optimized NK cell expansion protocol using irradiated GE-K562 feeder cells and clinical-grade media offers a safe and scalable approach to generating large numbers of NK cells, supporting its potential use in clinical immunotherapy applications.

摘要

背景

癌细胞系来源的饲养细胞可增强自然杀伤(NK)细胞的扩增;然而,对最终产品中存活的残留饲养细胞的担忧限制了它们的应用。支持即使经过辐照的NK敏感型K562饲养细胞安全性的证据也很少。我们使用基因工程改造的K562-mbIL-18/-21(GE-K562)饲养细胞和临床级培养基优化了NK细胞扩增方案,并证实不存在残留饲养细胞。

方法

使用CTS NK-Xpander培养基比较无饲养细胞体系和基于饲养细胞体系的NK细胞扩增效率。为实现最佳NK细胞扩增,在21天内测试了各种外周血单个核细胞(PBMC)与饲养细胞的比例以及再刺激频率。采用流式细胞术和定量逆转录聚合酶链反应(RT-qPCR)来确认最终NK细胞产品中不存在饲养细胞。

结果

与无饲养细胞体系相比,基于饲养细胞的体系显示出更高的NK细胞扩增倍数。在基于饲养细胞的条件中,3周后,PBMC与饲养细胞比例为2:1时,NK细胞扩增了5224倍,而比例为6:1时为1450倍(P<0.05)。在第7天和第14天进行再刺激可使扩增倍数进一步增加至261457倍。辐照后的饲养细胞无增殖现象,并在3-6天内被清除。在第21天,流式细胞术和RT-qPCR结果证实不存在残留饲养细胞。

结论

我们使用辐照后的GE-K562饲养细胞和临床级培养基优化的NK细胞扩增方案,为大量生成NK细胞提供了一种安全且可扩展的方法,支持其在临床免疫治疗应用中的潜在用途。

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