研究概要
NK 细胞/PDO 共培养平台能够识别肿瘤微环境对 NK 细胞功能的共同影响和患者特异性影响,并有助于开发针对患者的个体化免疫治疗。我们队列中的大多数 CRC(CMS2/CMS3)PDO 对 NK 细胞介导的杀伤敏感,并诱导 NK 细胞活化,突显了 NK 细胞用于 CRC 免疫治疗的潜力。
研究思路结论见上方概要
背景
结直肠癌具有高度异质性,其包含的亚型对基于T细胞的免疫疗法(如程序性细胞死亡蛋白1(PD-1)检查点抑制剂)疗效不佳。尽管自然杀伤(NK)细胞被认为是癌症免疫治疗的一种有前景的方法,但在肿瘤微环境中驱动NK细胞激活或抑制的分子机制仍不清楚。此外,反映个体患者肿瘤多样性的人类肿瘤模型的局限性,阻碍了有效筛选最可能从基于NK细胞的疗法中获益的患者的能力。
方法
在此,我们建立了一个由遗传多样性结直肠癌(CRC)患者来源类器官(PDOs)与原发性同种异体NK细胞组成的共培养平台。我们对暴露于PDOs后的分选NK细胞进行了bulk RNA测序分析,并将我们研究结果中得到的基因表达特征与患者外周血和CRC组织中NK细胞的公开单细胞RNA测序数据进行比对。此外,我们使用流式细胞术和IncuCyte活细胞成像分析分别评估了所鉴定的通路,以量化表型改变和NK细胞介导的PDOs杀伤随时间的变化。最终,我们测试了CRISPR-Cas9编辑的NK细胞和PDOs、小分子化合物以及临床相关单克隆抗体(mAbs),以提高NK细胞效力。
结果
共培养后,NK细胞获得了与缺氧和转化生长因子-β(TGF-β)相关的共同转录特征,类似于浸润患者CRC组织的NK细胞。此外,我们观察到患者特异性的PDO对NK细胞介导的裂解的差异敏感性。PDO上主要组织相容性复合体I类缺陷和自然杀伤组2成员D(NKG2D)配体表达促进了NK细胞介导的细胞毒性,并诱导了与激活以及获得炎症和组织驻留相关转录特征相关的NK细胞表型多样化。分别靶向缺氧诱导因子HIF1A / EPAS1或TGF-βR1的基因或药物,或添加抗CEACAM1 mAbs,分别增强了NK细胞介导的PDO杀伤或激活。
展开英文摘要原文
BACKGROUND: Colorectal carcinoma exhibits high heterogeneity, comprising subtypes that show poor efficacy of T cell-based immunotherapies, such as programmed cell death protein 1 (PD-1) checkpoint inhibitors. Although natural killer (NK) cells are considered a promising approach for cancer immunotherapy, it remains unclear what molecular mechanisms drive NK cell activation or suppression within the tumor microenvironment. Moreover, limitations in human tumor models that reflect the diversity of individual patient tumors hinder the ability to effectively select patients who would benefit most from NK cell-based therapies.
METHODS: Here, we established a co-culture platform of genetically diverse colorectal cancer (CRC) patient-derived organoids (PDOs) with primary allogeneic NK cells. We performed bulk RNA sequencing analysis of sorted NK cells after exposure to PDOs and aligned gene expression signatures derived from our findings with publicly available single-cell RNA sequencing data of NK cells from peripheral blood and CRC tissues of patients. Moreover, we evaluated identified pathways using flow cytometry and IncuCyte live-cell imaging analysis to quantify phenotypic alterations and NK cell-mediated killing of PDOs over time, respectively. Ultimately, we tested CRISPR-Cas9-edited NK cells and PDOs, small molecule compounds, and clinically relevant monoclonal antibodies (mAbs) to increase NK cell potency.
RESULTS: On co-culture, NK cells acquired common transcriptional signatures related to hypoxia and transforming growth factor-beta (TGF-β), similar to NK cells infiltrating CRC tissues of patients. In addition, we observed patient-specific differential PDO susceptibilities to NK cell-mediated lysis. Major histocompatibility complex class I deficiency and natural killer group 2, member D (NKG2D)-ligand expression on PDOs facilitated NK cell-mediated cytotoxicity, and induced phenotypic NK cell diversification related to activation and the acquisition of inflammation and tissue-residency-related transcriptional signatures. Genetic or pharmaceutical targeting of hypoxia-inducible factors HIF1A / EPAS1 or TGF-βR1, or the addition of anti-CEACAM1 mAbs, enhanced NK cell-mediated PDO killing or activation, respectively.
CONCLUSIONS: The NK cell/PDO co-culture platform allows the identification of both common and patient-specific impacts of the tumor microenvironment on NK cell function and can aid the development of patient-tailored immunotherapies. The majority of CRC (CMS2/CMS3) PDOs from our cohort were susceptible to NK cell-mediated killing and induced NK cell activation, highlighting the potential of NK cells for CRC immunotherapies.
论文信息
- 作者
- von Kries A、Garcés-Lázaro I、Balzasch BM、Sticht C、Shaltiel IA、Boonekamp KE、Sams A、Triassi A
- 第一作者单位
- Mannheim Institute for Innate Immunoscience (MI3), Universitätsmedizin Mannheim Medizinische Fakultät Mannheim, Mannheim, Germany.Germany
- 通讯作者单位
- Mannheim Institute for Innate Immunoscience (MI3), Universitätsmedizin Mannheim Medizinische Fakultät Mannheim, Mannheim, Germany Adelheid.Cerwenka@medma.uni-heidelberg.de.Germany
- 期刊
- Journal for immunotherapy of cancer2025 Dec 5