研究概要
我们的结果证明,成功生成了多基因修饰的NK101细胞治疗产品,其发挥多种抗肿瘤作用机制——激活受体介导的固有杀伤、抗原特异性杀伤以及旁观者效应介导的杀伤。
中文摘要
基于克隆细胞系的、多基因修饰的、现货型NK细胞治疗产品正在成为过继性细胞免疫治疗的新前沿。在此,我们利用新建立的NK细胞系NK101作为骨架,通过反复的基因修饰和克隆筛选循环,衍生出装备有多种抗肿瘤模式的多功能杀伤细胞。首先,用表达CD7、CD28和胞嘧啶脱氨酶(CD)的三顺反子慢病毒载体转导NK101细胞。所得细胞系对B7+肿瘤表现出增强的细胞毒性,并在5-FC处理后对邻近肿瘤细胞发挥旁观者杀伤效应。其次,再次用表达膜结合型白细胞介素-15(mbIL-15)和显性负性TGF II型受体(DNT RII)的双顺反子载体转导工程化NK101细胞。mbIL-15的异位表达通过诱导多种活化受体的上调,进一步增强了针对所有测试靶细胞的裂解活性,而DNT RII的表达则使细胞能够在TGF存在的情况下维持增强的细胞毒性。最后,对双转导的NK101细胞进行修饰,使其表达靶向实体瘤抗原(EpCAM)或血液肿瘤抗原(FLT3)的嵌合抗原受体(CAR)。最终工程化产品不仅在体外表现出抗原特异性杀伤活性,还在转移性实体瘤和血液恶性肿瘤的临床前模型中发挥了强大的肿瘤抑制效应。值得注意的是,在实体瘤模型中,联合5-FC治疗进一步增强了工程化NK101的抗肿瘤疗效。我们的结果证明,成功生成了多基因修饰的NK101细胞治疗产品,其发挥多种抗肿瘤作用机制——激活受体介导的固有杀伤、抗原特异性杀伤以及旁观者效应介导的杀伤。
展开英文摘要原文
Clonal cell line-based, multigene-modified, off-the-shelf NK cell therapeutics are emerging as the new frontier of adoptive cellular immunotherapy. Here, we utilized a newly established NK cell line, NK101, as a backbone to derive multifaceted killer cells armored with various antitumor modalities through repeated cycles of genetic modification and clonal selection. First, NK101 cells were transduced with a tricistronic lentiviral vector expressing CD7, CD28, and cytosine deaminase (CD). The resulting cell line demonstrated enhanced cytotoxicity against B7 + tumors and exerted bystander killing effects on neighboring tumor cells upon 5-FC treatment. Second, engineered NK101 cells were again transduced with a bicistronic vector expressing membrane-bound interleukin-15 (mbIL-15) and dominant negative TGF type II receptor (DNT RII). Ectopic expression of mbIL-15 resulted in further augmentation of lytic activities against all tested target cells by inducing upregulation of multiple activating receptors, while that of DNT RII allowed the cells to maintain heightened cytotoxicity in the presence of TGF . Finally, dual-transduced NK101 cells were modified to express chimeric antigen receptors (CARs) targeting either a solid tumor antigen (EpCAM) or a hematologic tumor antigen (FLT3). The final engineered products not only demonstrated antigen-specific killing activities in vitro but also exerted strong tumor-inhibitory effects in preclinical models of metastatic solid tumor and hematologic malignancy. Notably, combined treatment with 5-FC further enhanced antitumor efficacy of engineered NK101 in the solid tumor model. Our results demonstrate successful generation of multigene-modified NK101 cell therapeutics exerting diverse mechanisms of antitumor action - activation receptor-mediated innate killing, antigen-specific killing, and bystander effect-mediated killing.
论文信息
- 作者
- Hwang I、Jin HT、Kang MC、Kim TY、Sung YC、Kim SW
- 单位
- SL BiGen, Inc., Research Institute, Incheon, Republic of Korea.South Korea
- 文献类型
- 非美国政府资助研究
- 期刊
- Oncoimmunology2022