研究概要
这种双靶向策略通过同时靶向HLA阳性和HLA阴性的肿瘤细胞,提供了一种独特优势,促进促炎环境,并增强基于TCR的免疫疗法对卵巢癌及其他实体瘤的疗效。
中文摘要
背景:NK细胞疗法治疗实体瘤的成功仍有限,可能与抑制性配体上调所致的肿瘤耐药机制有关。既往研究显示,扩增后的NK细胞可裂解卵巢癌细胞并产生IFN-γ。然而,肿瘤微环境中的IFN-γ会使旁观者肿瘤细胞上经典HLA I类分子和非经典HLA-E同时上调,从而导致肿瘤对NK细胞介导的细胞毒作用耐药。为克服IFN-γ诱导的耐药,我们开发了靶向PRAME的NKG2A敲除NK:TCR细胞(NK:PRAME NKG2A KO);PRAME是一种在卵巢癌中表达的肿瘤相关抗原。
方法:从PBMC中分离原代NK细胞,经细胞因子刺激后,使用CRISPR-Cas9敲除编码NKG2A的KLRC1基因。刺激后进一步工程化NK细胞,使其表达PRAME特异性TCR。将NK:PRAME NKG2A KO与对照NK:PRAME NKG2A WT及NK:MOCK NKG2A KO比较,评估其对PRAME阳性卵巢癌细胞系和原代卵巢癌细胞的效应功能。为模拟促炎性肿瘤环境,预先以IFN-γ处理卵巢癌细胞系。
结果:首先观察到,未敲除KLRC1的NK:PRAME细胞无法有效裂解IFN-γ处理的卵巢癌细胞,无论HLA I类表达是否上调。为克服HLA-E介导的抑制,成功通过CRISPR-Cas9敲除KLRC1,且未对NK:TCR细胞工程化、扩增或后续表型造成不利影响。因此,NK:PRAME NKG2A KO细胞对IFN-γ处理肿瘤细胞的细胞毒性增强。
结论:这一双靶向策略具有独特优势,可同时靶向HLA阳性和HLA阴性肿瘤细胞,形成促炎环境,并增强用于卵巢癌及其他实体瘤的TCR免疫疗法效能。
展开英文摘要原文
BACKGROUND: The success of NK cell therapies against solid tumors remains limited, possibly due to tumor resistance mechanisms associated with the upregulation of inhibitory ligands. Previous studies have demonstrated that expanded NK cells can lyse ovarian cancer cells and produce IFN- . However, secretion of IFN- within the tumor microenvironment, leads to the upregulation of both classical HLA class I and the non-classical HLA-E on bystander tumor cells, thereby contributing to resistance against NK cell-mediated cytotoxicity. To overcome this IFN- induced resistance, we developed NKG2A-knockout NK: TCR cells targeting PRAME (NK: PRAME NKG2A KO ), a tumor-associated antigen expressed in ovarian cancer.
METHODS: Primary NK cells were isolated from PBMCs, stimulated with cytokines, and genetically modified using CRISPR-Cas9 to knockout the KLRC1 gene, which encodes NKG2A. After stimulation, the NK cells were further engineered to express the PRAME-specific TCR. NK: PRAME NKG2A KO were compared with control NK: PRAME NKG2A WT and NK: MOCK NKG2A KO cells for effector function against PRAME-positive ovarian cancer cell lines and primary ovarian cancer cells. To mimic the pro-inflammatory tumor environment, ovarian cancer cell lines were pre-treated with IFN- .
RESULTS: First we observed that NK: PRAME cells without a KLRC1 knockout were not effective to lyse IFN- treated ovarian cancer cells, irrespective of upregulated HLA class I expression. To overcome HLA-E mediated inhibition, the CRISPR-Cas9 induced KLRC1 knockout was successfully achieved without negatively impacting NK: TCR cell engineering, expansion and further alterations in phenotype. As a result, the NK: PRAME NKG2A KO cells exhibited increased cytotoxicity against these IFN- treated tumor cells.
CONCLUSIONS: This dual-targeting strategy offers a unique advantage by enabling the targeting of both HLA-positive and HLA-negative tumor cells, promoting a pro-inflammatory environment and enhancing the efficacy of TCR-based immunotherapy for ovarian cancer and other solid tumors.
论文信息
- 作者
- van Hees EP、Rensing OW、Hagedoorn RS、Pothast CR、Wouters AK、van Amerongen RA、Falkenburg JHF、de Groot R
- 第一作者单位
- Department of Hematology, Leiden University Medical Center (LUMC), Leiden, Netherlands.Netherlands
- 通讯作者单位
- Department of Hematology, Leiden University Medical Center (LUMC), Leiden, Netherlands. m.h.m.heemskerk@lumc.nl.Netherlands
- 期刊
- Journal of ovarian research2026 Jun 4