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一举两得:用现货型双 CAR NK-92 细胞靶向 B 细胞恶性肿瘤中的 BCMA 与 CD19

英文原题:Two for one: targeting BCMA and CD19 in B-cell malignancies with off-the-shelf dual-CAR NK-92 cells.

PubMed 2022/03/14(内容时间) J Transl Med Q1 · IF 9.7(JCR 2025)

研究概要

在此,我们利用经临床验证的NK-92细胞系作为治疗性细胞来源,建立了一个易于获取且灵活的平台,用于生成高度功能化的双靶向CAR-NK细胞。

研究思路结论见上方概要

嵌合抗原受体(CAR)T细胞疗法已被证明是B细胞恶性肿瘤患者的一种有价值的新治疗选择。然而,通过施加选择性压力,抗原阴性肿瘤细胞可能过度生长,最终导致复发。随后通过给予具有不同抗原特异性的CAR-T细胞进行挽救治疗表明,这些肿瘤细胞仍对CAR-T治疗敏感,并指向多靶点策略。由于其天然的肿瘤敏感性和高度细胞毒性,自然杀伤(NK)细胞是T细胞的一个引人注目的替代选择,特别是考虑到以临床验证的NK-92细胞系形式可获得现成的无限供应。

鉴于我们的目标是开发一个灵活的系统,使效应细胞的CAR表达谱能够迅速适应靶细胞不断变化的抗原表达谱,本研究选择用CD19-/BCMA-CAR mRNA电转染作为CAR装载方法。我们评估了mRNA工程化的双CAR NK-92对肿瘤B细胞系和原代患者样本的功能。为了测试所提出的细胞治疗产品的临床适用性,研究了辐照对双CAR NK-92细胞增殖率和功能的影响。

CD19和BMCA CAR mRNA共电穿孔效率很高,产生了88.1%的双CAR NK-92细胞。在CD107a脱颗粒以及干扰素(IFN)-和颗粒酶B分泌方面,双CAR NK-92显著优于单CAR NK-92。更重要的是,在低效靶比的4h共培养实验中,双CAR NK-92对单抗原和双抗原表达细胞系以及原发肿瘤细胞的杀伤能力超过60%,与单CAR对应物相当。此外,我们的结果证实,经10 Gy照射的双CAR NK-92停止增殖并逐渐被清除,同时保持其杀伤能力。

展开英文摘要原文

BACKGROUND: Chimeric antigen receptor (CAR) T-cell therapy has proven to be a valuable new treatment option for patients with B-cell malignancies. However, by applying selective pressure, outgrowth of antigen-negative tumor cells can occur, eventually resulting in relapse. Subsequent rescue by administration of CAR-T cells with different antigen-specificity indicates that those tumor cells are still sensitive to CAR-T treatment and points towards a multi-target strategy. Due to their natural tumor sensitivity and highly cytotoxic nature, natural killer (NK) cells are a compelling alternative to T cells, especially considering the availability of an off-the-shelf unlimited supply in the form of the clinically validated NK-92 cell line. METHODS: Given our goal to develop a flexible system whereby the CAR expression repertoire of the effector cells can be rapidly adapted to the changing antigen expression profile of the target cells, electrotransfection with CD19-/BCMA-CAR mRNA was chosen as CAR loading method in this study. We evaluated the functionality of mRNA-engineered dual-CAR NK-92 against tumor B-cell lines and primary patient samples. In order to test the clinical applicability of the proposed cell therapy product, the effect of irradiation on the proliferative rate and functionality of dual-CAR NK-92 cells was investigated. RESULTS: Co-electroporation of CD19 and BMCA CAR mRNA was highly efficient, resulting in 88.1% dual-CAR NK-92 cells. In terms of CD107a degranulation, and secretion of interferon (IFN)- and granzyme B, dual-CAR NK-92 significantly outperformed single-CAR NK-92. More importantly, the killing capacity of dual-CAR NK-92 exceeded 60% of single and dual antigen-expressing cell lines, as well as primary tumor cells, in a 4h co-culture assay at low effector to target ratios, matching that of single-CAR counterparts. Furthermore, our results confirm that dual-CAR NK-92 irradiated with 10 Gy cease to proliferate and are gradually cleared while maintaining their killing capacity. CONCLUSIONS: Here, using the clinically validated NK-92 cell line as a therapeutic cell source, we established a readily accessible and flexible platform for the generation of highly functional dual-targeted CAR-NK cells.

论文信息

作者
Roex G、Campillo-Davo D、Flumens D、Shaw PAG、Krekelbergh L、De Reu H、Berneman ZN、Lion E
第一作者单位
Laboratory of Experimental Hematology, Vaccine & Infectious Disease Institute (VAXINFECTIO), Faculty of Medicine and Health Sciences, University of Antwerp, 2650, Edegem, Belgium.Belgium
通讯作者单位
Laboratory of Experimental Hematology, Vaccine & Infectious Disease Institute (VAXINFECTIO), Faculty of Medicine and Health Sciences, University of Antwerp, 2650, Edegem, Belgium. sebastien.anguille@uza.be.Belgium
文献类型
非美国政府资助研究
期刊
Journal of translational medicine2022 Mar 14
原文标识
PubMed 35287669 · DOI 10.1186/s12967-022-03326-6