研究概要
该研究证明,NKEVs 可从患者来源的扩增 NK 细胞中成功获取,并突显了其货物组分的异质性及其与标准治疗联合时的抗肿瘤特性。
中文摘要
引言:免疫治疗药物,尤其是免疫检查点抑制剂(ICI),已成为非小细胞肺癌(NSCLC)的标准治疗;但仍有相当一部分肿瘤不应答或产生耐药。靶点表达、突变负荷和致癌通路均会影响应答;ICI 治疗失败的一个已知机制是通过下调人白细胞抗原(HLA)逃避 T 细胞应答。相反,缺乏 HLA 可增强 NK 细胞效应功能,使 NK 细胞疗法成为 ICI 耐药肿瘤的有吸引力选择。现有 NK 细胞疗法的挑战包括难以充分浸润实体瘤和长期持续存在;使用 NK 细胞来源的细胞外囊泡(NKEV)作为个体化新型过继细胞疗法,可能克服这些问题并发挥细胞毒作用。方法:在人类 NSCLC 队列(n = 10)中,研究者采用单细胞 RNA 测序和抗体标记(CITE-seq)分析外周免疫细胞(PBMC)及肿瘤中的免疫细胞图谱。通过蛋白质组学和整体 RNA 测序表征从患者 NK 细胞获得的 NKEV,并使用原发肿瘤类器官评估囊泡功能。结果:研究识别出循环 NK 细胞亚群,描述了与采样时间、NSCLC 亚型(腺癌、鳞癌)、组成和肿瘤分级相关的细胞组成、基因表达及信号传导差异。随后在原发肿瘤细胞来源的类器官结构中评估患者 NKEV 功能,发现暴露于患者 NKEV 后类器官活率降低 40%–45%,且引发细胞毒性所需的顺铂剂量显著下降。在 Nivolumab 治疗的 PBMC 共培养实验中,加入 NKEV 使类器官浸润免疫细胞群体向 CD4⁺ T 细胞显著减少、CD56⁺ NK 细胞增多的方向改变。最后,研究者通过多组学表征 NKEV 分子货物,鉴定出与细胞毒和免疫细胞募集功能相关的 RNA 转录本和蛋白质。结论:本研究证明可从患者来源并经扩增的 NK 细胞中成功收获 NKEV,并揭示其货物具有异质性及其与标准治疗联合时的抗肿瘤特性。
展开英文摘要原文
INTRODUCTION: Immune-based agents, especially Immune Checkpoint Inhibitors (ICI), are standard of care therapy in non-small cell lung cancers (NSCLC); however, a significant number of patient tumors fail to respond, or develop resistance. While target expression, mutation burden and oncogenic pathways impact responses, an established mechanism contributing to ICI therapy failure is evasion of T-cell responses via downregulation of human leukocyte antigen (HLA). Conversely, natural killer (NK) cells effector function is enhanced in the absence of HLA, making NK cellular therapies an attractive option for ICI resistant tumors. Challenges for current NK cell therapies include failure to adequately infiltrate solid tumors and long-term persistence, which may be overcome by deploying NK-derived extracellular vesicles (NKEVs) as a personalized novel adoptive cellular therapeutic with cytotoxic effects.
METHODS: In a human NSCLC cohort (n=10), we used single cell RNAseq and antibody labeling (CITEseq) to examine the immune cell landscape in peripheral immune cells (PBMCs) and tumors. NKEVs retrieved from patient NK cells were characterized with proteomics and bulk RNAseq, and EV functionality was assessed using primary tumor organoids.
RESULTS: We identified circulating NK cell subsets, describing differences in cell composition, gene expression and signaling, related to time point, NSCLC subtype (adenocarcinoma, squamous cell), composition and tumor grade. Next, we examined the functional capabilities of patient NKEVs in organoid structures derived from primary tumor cells, finding that exposure to patient NKEVs resulted in a 40-45% decrease in organoid viability, and significantly lowered the cisplatin dose required to elicit cytotoxicity. In Nivolumab treated PBMC co-culture experiments, NKEV addition favorably shifted the organoid infiltrating immune population to significantly fewer CD4+ T cells and more CD56+ NK cells. Finally, we used the multi-omic characterization of NKEV molecular cargo to identify RNA transcripts and proteins associated with cytotoxic and immune recruiting functions.
CONCLUSIONS: This work demonstrated that NKEVs can be successfully harvested from patient derived, expanded NK cells, and highlights their heterogeneous cargo, and anti-tumor properties in combination with standard-of-care therapies.
论文信息
- 作者
- Palade J、Alsop E、Tang N、Antone J、Paredes DM、Halder TG、Soldi R、Bargenquast T
- 第一作者单位
- Translational Genomics Research Institute (TGen), Phoenix, AZ, United States.United States
- 通讯作者单位
- The Charles A. Sammons Cancer Center, Baylor University Medical Center, Dallas, TX, United States.United States
- 期刊
- Frontiers in immunology2025