研究概要
这些结果支持使用类器官作为一种相关的个性化模型,在体外研究NK细胞的抗肿瘤反应,以及ADCC诱导抗体增强NK细胞效应功能的潜力。
研究思路结论见上方概要
背景
胰腺癌预后差,大多数患者可用的治疗选择有限。NK细胞与诱导抗体依赖性细胞介导的细胞毒性(ADCC)的抗体联合使用,可能成为胰腺癌的一种高效新治疗选择。要开发成功的NK细胞免疫治疗,需要准确的预测性临床前模型。肿瘤类器官——保留体内肿瘤重要病理生理特征的体外3D器官样结构——可能提供这样的模型。在本研究中,我们评估了过继NK细胞对人胰腺癌类器官的细胞毒性潜力。我们假设,通过加入触发ADCC的抗体,可以增强NK细胞的抗肿瘤反应。
方法
我们使用健康供体来源的IL-2激活NK细胞和来自四名患者的胰腺癌类器官进行了细胞毒性试验。开发了一种使用活细胞成像的3D细胞毒性试验,并能够实时评估反应。
结果
我们证明,NK细胞迁移至胰腺癌类器官并靶向其,导致类器官死亡增加,相较于无NK细胞对照组(达到相对于基线的平均倍数变化为2.1 0.8 vs 1.4 0.6)。共培养24小时后,类器官2D生长增加。4名患者中有2名的类器官对NK细胞敏感,而另外两名患者的类器官相对耐药,表明类器官培养中存在患者特异性异质性。诱导ADCC的抗体avelumab(抗PD-L1)和trastuzumab(抗HER2)增加了NK细胞诱导的类器官细胞死亡(分别达到相对于基线的平均倍数变化为3.5 1.0和4.5 1.8)。此外,与avelumab或trastuzumab的联合治疗导致类器官完全解体。最后,加入诱导ADCC的抗体能够克服NK-类器官组合中低杀伤或无杀伤的耐药性。
展开英文摘要原文
INTRODUCTION: Pancreatic cancer is associated with poor prognosis, and limited treatment options are available for the majority of patients. Natural killer (NK) cells in combination with antibodies inducing antibody-dependent cell-mediated cytotoxicity (ADCC) could be a highly effective new therapeutic option in pancreatic cancer. Accurate predictive preclinical models are needed to develop successful NK cell immunotherapy. Tumor organoids, in vitro 3D organ-like structures that retain important pathophysiological characteristics of the in vivo tumor, may provide such a model. In the current study, we assessed the cytotoxic potential of adoptive NK cells against human pancreatic cancer organoids. We hypothesized that NK cell anti-tumor responses could be enhanced by including ADCC-triggering antibodies.
METHODS: We performed cytotoxicity assays with healthy donor-derived IL-2-activated NK cells and pancreatic cancer organoids from four patients. A 3D cytotoxicity assay using live-cell-imaging was developed and enabled real-time assessment of the response.
RESULTS: We show that NK cells migrate to and target pancreatic cancer organoids, resulting in an increased organoid death, compared to the no NK cell controls (reaching an average fold change from baseline of 2.1 0.8 vs 1.4 0.6). After 24-hours of co-culture, organoid 2D growth increased. Organoids from 2 out of 4 patients were sensitive to NK cells, while organoids from the other two patients were relatively resistant, indicating patient-specific heterogeneity among organoid cultures. The ADCC-inducing antibodies avelumab (anti-PD-L1) and trastuzumab (anti-HER2) increased NK cell-induced organoid cell death (reaching an average fold change from baseline of 3.5 1.0 and 4.5 1.8, respectively). Moreover, combination therapy with avelumab or trastuzumab resulted in complete disintegration of organoids. Finally, inclusion of ADCC-inducing antibodies was able to overcome resistance in NK-organoid combinations with low or no kill.
DISCUSSION: These results support the use of organoids as a relevant and personalized model to study the anti-tumor response of NK cells in vitro and the potential of ADCC-inducing antibodies to enhance NK cell effector function.
论文信息
- 作者
- Beelen NA、Aberle MR、Bruno V、Olde Damink SWM、Bos GMJ、Rensen SS、Wieten L
- 第一作者单位
- Department of Internal Medicine, Division of Hematology, Maastricht University Medical Center+, Maastricht, Netherlands.Netherlands
- 通讯作者单位
- GROW-School for Oncology and Reproduction, Maastricht University, Maastricht, Netherlands.Netherlands
- 文献类型
- 非美国政府资助研究
- 期刊
- Frontiers in immunology2023