RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Development of Genetically Modified ARH-77 Feeder Cells for Efficient Expansion of Natural Killer Cells with Potent Anti-Tumor Activity.
Development of Genetically Modified ARH-77 Feeder Cells for Efficient Expansion of Natural Killer Cells with Potent Anti-Tumor Activity.
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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。
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.
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