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经工程改造能够表达 T 细胞受体和白细胞介素-15 的自给自足的原代自然杀伤细胞表现出改善的效应功能和持久性。

Self-sufficient primary natural killer cells engineered to express T cell receptors and interleukin-15 exhibit improved effector function and persistence.

机构信息

Department of Hematology, Leiden University Medical Centre (LUMC), Leiden, Netherlands.

Center for Oncological Research (CORE), Integrated Personalized and Precision Oncology Network (IPPON), Antwerp, Belgium.

出版信息

Front Immunol. 2024 Apr 16;15:1368290. doi: 10.3389/fimmu.2024.1368290. eCollection 2024.

Abstract

BACKGROUND

NK cells can be genetically engineered to express a transgenic T-cell receptor (TCR). This approach offers an alternative strategy to target heterogenous tumors, as NK:TCR cells can eradicate both tumor cells with high expression of HLA class I and antigen of interest or HLA class I negative tumors. Expansion and survival of NK cells relies on the presence of IL-15. Therefore, autonomous production of IL-15 by NK:TCR cells might improve functional persistence of NK cells. Here we present an optimized NK:TCR product harnessed with a construct encoding for soluble IL-15 (NK:TCR/IL-15), to support their proliferation, persistence and cytotoxic capabilities.

METHODS

Expression of tumor-specific TCRs in peripheral blood derived NK-cells was achieved following retroviral transduction. NK:TCR/IL-15 cells were compared with NK:TCR cells for autonomous cytokine production, proliferation and survival. NK:BOB1-TCR/IL-15 cells, expressing a HLA-B*07:02-restricted TCR against BOB1, a B-cell lineage specific transcription factor highly expressed in all B-cell malignancies, were compared with control NK:BOB1-TCR and NK:CMV-TCR/IL-15 cells for effector function against TCR antigen positive malignant B-cell lines and

RESULTS

Viral incorporation of the interleukin-15 gene into engineered NK:TCR cells was feasible and high expression of the TCR was maintained, resulting in pure NK:TCR/IL-15 cell products generated from peripheral blood of multiple donors. Self-sufficient secretion of IL-15 by NK:TCR cells enables engineered NK cells to proliferate without addition of extra cytokines. NK:TCR/IL-15 demonstrated a marked enhancement of TCR-mediated cytotoxicity as well as enhanced NK-mediated cytotoxicity resulting in improved persistence and performance of NK:BOB1-TCR/IL-15 cells in an orthotopic multiple myeloma mouse model. However, in contrast to prolonged anti-tumor reactivity by NK:BOB1-TCR/IL-15, we observed in one of the experiments an accumulation of NK:BOB1-TCR/IL-15 cells in several organs of treated mice, leading to unexpected death 30 days post-NK infusion.

CONCLUSION

This study showed that NK:TCR/IL-15 cells secrete low levels of IL-15 and can proliferate in an environment lacking cytokines. Repeated and experiments confirmed the effectiveness and target specificity of our product, in which addition of IL-15 supports TCR- and NK-mediated cytotoxicity.

摘要

背景

自然杀伤 (NK) 细胞可通过基因工程表达转基因 T 细胞受体 (TCR)。这种方法为靶向异质性肿瘤提供了一种替代策略,因为 NK:TCR 细胞可以消除 HLA Ⅰ类高表达和感兴趣抗原或 HLA Ⅰ类阴性肿瘤的肿瘤细胞。NK 细胞的扩增和存活依赖于白细胞介素-15(IL-15)的存在。因此,NK:TCR 细胞自主产生 IL-15 可能会提高 NK 细胞的功能持久性。在这里,我们提出了一种经过优化的 NK:TCR 产品,该产品利用编码可溶性白细胞介素-15(NK:TCR/IL-15)的构建体,以支持其增殖、存活和细胞毒性能力。

方法

通过逆转录病毒转导在外周血来源的 NK 细胞中表达肿瘤特异性 TCR。NK:TCR/IL-15 细胞与 NK:TCR 细胞进行比较,以比较其自主细胞因子产生、增殖和存活能力。表达针对 BOB1 的 HLA-B*07:02 限制性 TCR 的 NK:BOB1-TCR/IL-15 细胞与对照 NK:BOB1-TCR 和 NK:CMV-TCR/IL-15 细胞进行比较,以评估其对 TCR 抗原阳性恶性 B 细胞系的效应功能。

结果

将白细胞介素-15 基因掺入工程化的 NK:TCR 细胞是可行的,并且 TCR 的高表达得以维持,从而从多个供体的外周血中产生了纯 NK:TCR/IL-15 细胞产物。NK:TCR 细胞自主分泌的 IL-15 使工程化 NK 细胞能够在不添加额外细胞因子的情况下增殖。NK:TCR/IL-15 显示出 TCR 介导的细胞毒性的显著增强,以及增强的 NK 介导的细胞毒性,从而导致 NK:BOB1-TCR/IL-15 细胞在荷骨髓瘤小鼠模型中的持久性和性能提高。然而,与 NK:BOB1-TCR/IL-15 的延长抗肿瘤反应相反,我们在一项实验中观察到 NK:BOB1-TCR/IL-15 细胞在治疗小鼠的几个器官中积累,导致 NK 输注后 30 天意外死亡。

结论

这项研究表明,NK:TCR/IL-15 细胞分泌低水平的 IL-15,并能在缺乏细胞因子的环境中增殖。重复实验证实了我们产品的有效性和靶向特异性,其中添加 IL-15 支持 TCR 和 NK 介导的细胞毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6457/11058644/d044b6dfd7c7/fimmu-15-1368290-g001.jpg

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