研究概要
我们证明在哺乳动物表达系统中生成的BiKE能够增强NK细胞对IL13R2阳性胶质瘤的靶向作用。
中文摘要
胶质母细胞瘤(GBM)是一种致死性脑肿瘤,治疗选择有限。双特异性杀伤细胞衔接器(BiKE)是新型免疫疗法,旨在引导自然杀伤(NK)细胞对抗癌症。我们设计了一种BiKE分子,由单域CD16抗体、白细胞介素-15连接肽和针对胶质瘤相关抗原白细胞介素13受体α2(IL13Rα2)的单链可变抗体组成。重组BiKE蛋白在HEK细胞中表达并纯化。流式细胞术分析外周血来源NK细胞与GBM6和GBM39患者来源异种移植系的共培养显示,与对照组相比,BiKE处理后NK细胞活化(CD25+CD69+)显著增加,胶质瘤细胞杀伤增加(n = 4,p < 0.01)。通过切割型caspase-3免疫荧光染色也证实了胶质瘤细胞杀伤(p < 0.05)。在体内,与对照组相比,颅内递送NK细胞联合BiKE延长了GBM6(p < 0.01)和GBM12(p < 0.01)肿瘤小鼠的中位生存期。最后,脑组织组织学分析显示,与单独NK细胞相比,BiKE治疗小鼠的瘤周NK细胞频率更高(p < 0.05)。总之,我们证明在哺乳动物表达系统中生成的BiKE可有效增强NK细胞对IL13Rα2阳性胶质瘤的靶向。
展开英文摘要原文
Glioblastoma (GBM) is a lethal brain tumor with limited therapeutic options. Bi-specific killer cell engagers (BiKEs) are novel immunotherapies designed to engage natural killer (NK) cells against cancer. We designed a BiKE molecule consisting of a single-domain CD16 antibody, an interleukin-15 linker, and a single-chain variable antibody against the glioma-associated antigen interleukin 13 receptor alpha 2 (IL13R 2). Recombinant BiKE protein was expressed in HEK cells and purified. Flow cytometric analysis of co-cultures of peripheral blood-derived NK cells with GBM6 and GBM39 patient-derived xenograft lines revealed significantly increased activation of NK cells (CD25+CD69+) and increased glioma cell killing following BiKE treatment compared to controls (n = 4, p < 0.01). Glioma cell killing was also confirmed via immunofluorescence staining for cleaved caspase-3 ( p < 0.05). In vivo, intracranial delivery of NK cells with BiKE extended median survival in mice bearing GBM6 ( p < 0.01) and GBM12 ( p < 0.01) tumors compared to controls. Finally, histological analysis of brain tissues revealed a higher frequency of peritumoral NK cells in mice treated with BiKE than with NK cells alone ( p < 0.05). In conclusion, we demonstrate that a BiKE generated in a mammalian expression system is functional in augmenting NK cell targeting of IL13R 2-positive gliomas.
论文信息
- 作者
- Pawlowski KD、Duffy JT、Tiwari A、Zannikou M、Balyasnikova IV
- 单位
- Department of Neurological Surgery, Northwestern University, Chicago, IL 60611, USA.United States
- 文献类型
- 非美国政府资助研究
- 期刊
- Cells2023 Jun 25