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用于肿瘤免疫治疗的记忆样 NK 细胞的蛋白质组学与表型特征

英文原题:Proteomic and phenotypic characteristics of memory-like natural killer cells for cancer immunotherapy.

PubMed 2024/07/20(内容时间) J Immunother Cancer Q1 · IF 11.7(JCR 2025)

研究概要

NK 细胞「记忆」是一种生理状态,与抵抗 MHC 介导的抑制、代谢功能增强、线粒体适应性以及对 NK 耐药靶细胞的亲和力相关。

中文摘要

人和小鼠NK细胞在短暂暴露于IL-12/15/18或与某些肿瘤细胞共培养过夜后,可获得记忆样功能;其增强杀伤能力可持续数日,冻存后仍保留,且曾使血液肿瘤患者完全缓解。不过记忆样NK尚无统一表型,短时细胞因子或肿瘤预激活所致生理改变也未充分阐明。本研究比较细胞因子诱导及肿瘤预激活产生的记忆样NK,并首次在体内研究其特征。两种方式产生的细胞均增强对多种肿瘤细胞系的体外杀伤。多维分析发现CD57、CD69、CD25和ICAM1上调,蛋白组识别出41种记忆样NK特有蛋白,并发现可能解释其克服耐受肿瘤抑制的候选分子。接受复制缺陷肿瘤细胞系INKmune治疗的5例骨髓增生异常综合征或难治性AML患者中,3例应答,并出现NK杀伤功能及全身细胞因子可测量增加。结论:NK“记忆”是一种伴随抵抗MHC介导抑制、代谢增强、线粒体适能提升及对耐受靶细胞亲和力增加的生理状态。

展开英文摘要原文

BACKGROUND: Human and mouse natural killer (NK) cells have been shown to develop memory-like function after short-term exposure to the cocktail of IL-12/15/18 or to overnight co-culture with some tumor cell lines. The resulting cells retain enhanced lytic ability for up to 7 days as well as after cryopreservation, and memory-like NK cells (mlNK) have been shown to induce complete remissions in patients with hematological malignancies. No single phenotype has been described for mlNK and the physiological changes induced by the short-term cytokine or tumor-priming which are responsible for these enhanced functions have not been fully characterized. Here, we have generated mlNK by cytokine and tumor-priming to find commonalities to better define the nature of NK cell "memory" in vitro and, for the first time, in vivo. METHODS: We initiated mlNK in vitro from healthy donors with cytokines (initiated cytokine-induced memory-like (iCIML)-NK) and by tumor priming (TpNK) overnight and compared them by high-dimensional flow cytometry, proteomic and metabolomic profiling. As a potential mechanism of enhanced cytolytic function, we analyzed the avidity of binding of the mlNK to NK-resistant tumors (z-Movi). We generated TpNK from healthy donors and from cancer patients to determine whether mlNK generated by interaction with a single tumor type could enhance lytic activity. Finally, we used a replication-incompetent tumor cell line (INKmune) to treat patients with myeloid leukaemias to potentiate NK cell function in vivo. RESULTS: Tumor-primed mlNK from healthy donors and patients with cancer showed increased cytotoxicity against multiple tumor cell lines in vitro, analogous to iCIML-NK cells. Multidimensional cytometry identified distinct memory-like profiles of subsets of cells with memory-like characteristics; upregulation of CD57, CD69, CD25 and ICAM1. Proteomic profiling identified 41 proteins restricted to mlNK cells and we identified candidate molecules for the basis of NK memory which can explain how mlNK overcome inhibition by resistant tumors. Finally, of five patients with myelodysplastic syndrome or refractory acute myeloid leukemia treated with INKmune, three responded to treatment with measurable increases in NK lytic function and systemic cytokines. CONCLUSIONS: NK cell "memory" is a physiological state associated with resistance to MHC-mediated inhibition, increased metabolic function, mitochondrial fitness and avidity to NK-resistant target cells.

论文信息

作者
Arellano-Ballestero H、Zubiak A、Dally C、Orchard K、Alrubayyi A、Charalambous X、Michael M、Torrance R
第一作者单位
Cancer Institute, University College London, London, UK.United Kingdom
通讯作者单位
Cancer Institute, University College London, London, UK m.lowdell@ucl.ac.uk.United Kingdom
期刊
Journal for immunotherapy of cancer2024 Jul 20
原文标识
PubMed 39032940 · DOI 10.1136/jitc-2023-008717