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装载 CCL19、CCR2B、高亲和力 CD16、IL-15 和 NKG2D 复合物的人 iPSC 来源 NK 细胞增强抗实体瘤活性

英文原题:Human iPSC-derived NK cells armed with CCL19, CCR2B, high-affinity CD16, IL-15, and NKG2D complex enhance anti-solid tumor activity.

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Human iPSC-derived NK cells armed with CCL19, CCR2B, high-affinity CD16, IL-15, and NKG2D complex enhance anti-solid tumor activity.

PubMed 2025/07/15(内容时间) Stem Cell Res Ther Q1 · IF 7.8(JCR 2025)

研究概要

这些概念验证研究表明,我们的 eNK 细胞作为一种用于治疗实体瘤的新型过继性细胞疗法产品具有前景。

研究思路结论见上方概要

嵌合抗原受体(CAR)-T 细胞和自然杀伤(NK)细胞的研究在治疗血液系统恶性肿瘤方面已显示出有希望的结果。然而,有效治疗实体瘤仍存在障碍。这些障碍包括 CAR-T 细胞归巢和浸润的挑战、免疫抑制性微环境的存在,以及实体瘤中抗原逃逸的可能性。为克服免疫细胞疗法已知的局限性,我们构建了携带 CCL19、CCR2B、高亲和力 CD16、IL-15 和 NKG2D-DAP10 复合物的人诱导多能干细胞(hiPSC)来源 NK 细胞。

我们将六个基因 CCL19、CCR2B、FCGR3A(CD16)、IL-15、KLRK1(NKG2D)和 HCST(DAP10)置于人 EF1a 启动子控制下,通过 piggyBac 系统导入 hiPSCs,并将其分化为 NK 细胞。我们评估了抗肿瘤功能,包括杀伤活性、抗体依赖性细胞毒性、迁移能力以及树突状细胞的募集。此外,通过使用原位肺癌小鼠模型测定了体内抗肿瘤活性。

基因工程改造的 hiPSCs 表达了所有六个转基因,显示正常核型,并能够分化为 CD56 + NK 细胞。基因工程改造的 hiPSC 来源 NK(eNK)细胞在体外和体内无需额外补充细胞因子即可表现出活力改善。NKG2D 复合物和高亲和力 CD16 的过表达增强了 eNK 细胞的抗肿瘤功能。CCR2B 的强制表达增强了 eNK 细胞的肿瘤浸润。CCL19 的强制表达赋予 eNK 细胞募集树突状细胞的能力。我们发现,eNK 细胞能够裂解表达 HLA-E 的肿瘤细胞,但不能裂解正常人类细胞。此外,eNK 细胞在原位肺癌小鼠模型中表现出更强的抗肿瘤活性。

展开英文摘要原文

BACKGROUND: Studies of chimeric antigen receptor (CAR)-T and -Natural killer (NK) cells have shown promising results in treating hematological malignancies. However, there are still obstacles to effectively treating solid tumors. These include the challenges of CAR-T cell homing and infiltration, the presence of immunosuppressive microenvironments, and the potential for antigen escape in solid tumors. To overcome the known limitations of immune cell therapy, we engineered human induced pluripotent stem cell (hiPSC)-derived NK cells armed with CCL19, CCR2B, high-affinity CD16, IL-15, and NKG2D-DAP10 complex. METHODS: We introduced the six genes, CCL19, CCR2B, FCGR3A (CD16), IL-15, KLRK1 (NKG2D), and HCST (DAP10), which were controlled under human EF1a promoter, into hiPSCs using the piggyBac system and differentiated them into NK cells. We evaluate the antitumor function, including killing activity, antibody-dependent cytotoxicity, migration ability, and recruitment of dendritic cells. In addition, in vivo antitumor activity was determined by using an orthotopic lung cancer mouse model. RESULTS: The gene-engineered hiPSCs expressed all six transgenes, showed normal karyotypes, and were able to differentiate into CD56 + NK cells. The gene-engineered hiPSC-derived NK (eNK) cells showed improvement in viability without additional cytokine supplement in vitro and in vivo. Overexpression of NKG2D complex and high-affinity CD16 enhanced the antitumor function of the eNK cells. Forced expression of CCR2B enhanced eNK cell tumor infiltration. Forced expression of CCL19 endowed the eNK cells with the ability to recruit dendritic cells. We found that the eNK cells were able to lyse HLA-E-expressing tumor cells, but not normal human cells. Moreover, eNK cells demonstrated superior anti-tumor activity in an orthotropic lung cancer mouse model. CONCLUSION: These proof-of-concept studies demonstrate the promise of our eNK cells as a novel adoptive cell therapy product for the treatment of solid tumors.

论文信息

作者
Fukutani Y、Kurachi K、Torisawa YS、Miyata K、Hayashi M、Sasaki K、Saitoh K、Watanabe S
第一作者单位
Research Division, Kobe Research Institute, HEALIOS K.K., Kobe KIMEC Center Bldg. 3F, 1-5-2 Minatojima-Minamimachi, Chuo-Ku, Kobe, Hyogo, 650-0047, Japan.Japan
通讯作者单位
Research Division, Kobe Research Institute, HEALIOS K.K., Kobe KIMEC Center Bldg. 3F, 1-5-2 Minatojima-Minamimachi, Chuo-Ku, Kobe, Hyogo, 650-0047, Japan. k.tamura@healios.jp.Japan
期刊
Stem cell research & therapy2025 Jul 15
原文标识
PubMed 40660312 · DOI 10.1186/s13287-025-04461-9