研究概要
我们的体内研究结果强调了BiKE:E5C1作为一种免疫细胞衔接器,具有激活免疫细胞以消除癌细胞的潜力,从而扩大了可用于癌症免疫治疗的BiKEs库。
研究思路结论见上方概要
背景
在先前的一份报告中,我们详细介绍了双特异性杀伤细胞衔接器BiKE:E5C1的分离与工程化改造。BiKE:E5C1对NK细胞上的CD16a活化受体和癌细胞上的人表皮生长因子受体2(HER2)表现出高亲和力/特异性。体外研究已证明,BiKE:E5C1能够激活NK细胞并诱导对HER2+卵巢癌和乳腺癌细胞的杀伤,其效果优于同类最佳的单克隆抗体Trazimera(曲妥珠单抗)。为推动该BiKE技术走向临床应用,本研究的目的是证明BiKE:E5C1能够激活CD16+免疫细胞(如NK细胞和巨噬细胞)以杀伤癌细胞,并在NK人源化NOG小鼠中根除转移性HER2+肿瘤。
方法
我们通过流式细胞术和抗体依赖性细胞介导的细胞毒性/吞噬作用(ADCC)实验,评估了 BiKE:E5C1 激活表达 CD16 的外周血(PB)-NK 细胞、laNK92 细胞和 THP-1-CD16A 单核-巨噬细胞的潜力。随后,选择 laNK92 细胞作为效应细胞,并通过基因修饰使其表达纳米荧光素酶基因,从而能够利用定量生物发光成像(qBLI)监测其在 NK 人源化 NOG 小鼠中的存活情况。为了评估 BiKE:E5C1 在体内的功能,我们通过腹腔注射将表达萤火虫荧光素酶的卵巢癌细胞导入 hIL-15 和 hIL-2 NOG 小鼠,构建了卵巢癌转移模型。在确认肿瘤建立后,我们用 laNK92 细胞联合 BiKE:E5C1 治疗小鼠,并使用 qBLI 评估治疗反应。
结果
我们的数据表明,BiKE:E5C1不仅激活laNK92细胞,还激活PB-NK细胞和巨噬细胞,显著增强其抗癌活性。ADCC实验表明,IgG1 Fc区域对BiKE:E5C1的抗癌活性没有影响。体内结果显示,hIL-15和hIL-2 NOG小鼠模型均支持laNK92细胞的存活和增殖。此外,观察到BiKE:E5C1在小鼠体内激活laNK92细胞,导致在NK人源化hIL-15和hIL-2 NOG小鼠模型中均根除癌症转移。
展开英文摘要原文
BACKGROUND: In a prior report, we detailed the isolation and engineering of a bispecific killer cell engager, referred to as BiKE:E5C1. The BiKE:E5C1 exhibits high affinity/specificity for the CD16a activating receptor on natural killer (NK) cells and human epidermal growth factor receptor 2 (HER2) on cancer cells. In vitro studies have demonstrated that BiKE:E5C1 can activate the NK cells and induce the killing of HER2+ ovarian and breast cancer cells, surpassing the performance of the best-in-class monoclonal antibody, Trazimera (trastuzumab). To advance this BiKE technology toward clinical application, the objective of this research was to demonstrate the ability of BiKE:E5C1 to activate CD16+ immune cells such as NK cells and macrophages to kill cancer cells, and eradicate metastatic HER2+ tumors in NK humanized NOG mice.
METHODS: We assessed BiKE:E5C1's potential to activate CD16-expressing peripheral blood (PB)-NK cells, laNK92 cells, and THP-1-CD16A monocyte-macrophages through flowcytometry and antibody-dependent cell-mediated cytotoxicity/phagocytosis (ADCC) assays. Subsequently, laNK92 cells were selected as effector cells and genetically modified to express the nanoluciferase gene, enabling the monitoring of their viability in NK humanized NOG mice using quantitative bioluminescent imaging (qBLI). To evaluate the functionality of BiKE:E5C1 in vivo, we introduced firefly luciferase-expressing ovarian cancer cells via intraperitoneal injection into hIL-15 and hIL-2 NOG mice, creating a model of ovarian cancer metastasis. Once tumor establishment was confirmed, we treated the mice with laNK92 cells plus BiKE:E5C1 and the response to therapy was assessed using qBLI.
RESULTS: Our data demonstrate that BiKE:E5C1 activates not only laNK92 cells but also PB-NK cells and macrophages, significantly enhancing their anticancer activities. ADCC assay demonstrated that IgG 1 Fc region had no impact on BiKE:E5C1's anticancer activity. In vivo results reveal that both hIL-15 and hIL-2 NOG mouse models support the viability and proliferation of laNK92 cells. Furthermore, it was observed that BiKE:E5C1 activates laNK92 cells in mice, leading to eradication of cancer metastasis in both NK humanized hIL-15 and hIL-2 NOG mouse models.
CONCLUSIONS: Collectively, our in vivo findings underscore BiKE:E5C1's potential as an immune cell engager capable of activating immune cells for cancer cell elimination, thereby expanding the arsenal of available BiKEs for cancer immunotherapy.
论文信息
- 作者
- Khoshtinat Nikkhoi S、Yang G、Owji H、Grizotte-Lake M、Cohen RI、Gil Gonzalez L、Massumi M、Hatefi A
- 第一作者单位
- Rutgers, The State University of New Jersey, Piscataway, New Jersey, USA.United States
- 通讯作者单位
- Rutgers, The State University of New Jersey, Piscataway, New Jersey, USA ahatefi@pharmacy.rutgers.edu.United States
- 文献类型
- 非美国政府资助研究 · 美国 NIH 资助研究
- 期刊
- Journal for immunotherapy of cancer2024 Mar 15