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开发用于高效扩增具有强效抗肿瘤活性的 NK 细胞的基因修饰 ARH-77 饲养层细胞

英文原题:Development of Genetically Modified ARH-77 Feeder Cells for Efficient Expansion of Natural Killer Cells with Potent Anti-Tumor Activity.

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Development of Genetically Modified ARH-77 Feeder Cells for Efficient Expansion of Natural Killer Cells with Potent Anti-Tumor Activity.

PubMed 2026/06/03(内容时间) Cancers (Basel) Q2 · IF 4.8(JCR 2025)

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中文摘要

我们评估了浆细胞白血病来源的ARH-77细胞系作为饲养层,用于从健康供者外周血单个核细胞(PBMCs)中进行体外NK细胞扩增。将未修饰的ARH-77与K562进行比较,随后通过序贯慢病毒转导对两种细胞系进行工程化改造,以共表达B7-H6(NKp30配体)、CD137L(4-1BBL)、IL-15和IL-15Rα。将PBMCs与经照射的饲养层细胞在添加细胞因子(IL-2、IL-21,随后为IL-15)的RPMI-1640或DMEM/F-12培养基中共培养长达28天。对扩增倍数(CD3 - CD56 +细胞的倍数变化)、纯度、表面受体表达和细胞毒性(针对K562靶细胞)进行了定量。

未修饰的ARH-77支持的NK细胞扩增显著高于K562(在RPMI中第4周模型估计为681倍 vs. 155倍;p = 0.0018),且纯度更高,但细胞毒性和受体谱相当。工程化ARH-77细胞在RPMI中实现了稳健扩增,与工程化K562细胞相当。在优化的DMEM/F-12培养基中,工程化ARH-77驱动了更优的扩增(第4周模型估计高达101,241倍;95% CI 46,771-219,146),显著优于工程化K562(高4.4倍;95% CI 1.01至18.54;p = 0.0479),同时保持高纯度和等效细胞毒性。供体间存在显著差异,影响了扩增幅度,但相对饲养层性能在各供体间保持一致。

经基因修饰的ARH-77饲养层细胞为功能性NK细胞的大规模离体扩增提供了一个强效平台。

展开英文摘要原文

Background/Objectives: Adoptive transfer of allogeneic natural killer (NK) cells represents a promising off-the-shelf immunotherapy for cancer, offering advantages in safety and availability over autologous T cell therapies.

However, generating therapeutically sufficient NK cell numbers remains challenging due to their low frequency in blood sources. Engineered feeder cell co-cultures have enabled substantial expansions of NK cells to clinically relevant doses. Methods: We evaluated the plasma cell leukemia-derived ARH-77 cell line as a feeder for ex vivo NK cell expansion from healthy donor peripheral blood mononuclear cells (PBMCs). Unmodified ARH-77 was compared to K562, followed by engineering both lines to co-express B7-H6 (NKp30 ligand), CD137L (4-1BBL), IL-15, and IL-15Rα via sequential lentiviral transduction. PBMCs were co-cultured with irradiated feeders in cytokine-supplemented (IL-2, IL-21, and later IL-15) RPMI-1640 or DMEM/F-12 medium for up to 28 days. Expansion (fold change in CD3 - CD56 + cells), purity, surface receptor expression, and cytotoxicity (against K562 targets) were quantified.

Results: Unmodified ARH-77 supported significantly greater NK cell expansion than K562 (model-estimated 681-fold vs. 155-fold at week 4 in RPMI; p = 0. 0018), with higher purity but comparable cytotoxicity and receptor profiles. Engineered ARH-77 cells achieved robust expansion in RPMI, comparable to that of engineered K562 cells. In optimized DMEM/F-12 medium, engineered ARH-77 drove superior expansion (up to model-estimated 101,241-fold; 95% CI 46,771-219,146 at week 4), significantly outperforming engineered K562 (4.

4-fold greater; 95% CI 1. 01 to 18. 54; p = 0. 0479) while maintaining high purity and equivalent cytotoxicity. Substantial inter-donor variability influenced expansion magnitude, though relative feeder performance remained consistent across donors. Conclusions: Genetically modified ARH-77 feeder cells provide a potent platform for large-scale ex vivo expansion of functional NK cells.

论文信息

作者
Lim YJ、Marr B、Ghaziasgar S、Kim CJ、Baek YJ、Kim GS、Lee JJ、Park YJ
单位
Department of Companion and Laboratory Animal Science, College of Industrial Science, Kongju National University, Yesan 32439, Chungcheongnam-do, Republic of Korea.South Korea
期刊
Cancers2026 Jun 3
原文标识
PubMed 42279415 · DOI 10.3390/cancers18111833