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细胞因子在体外影响 NK 细胞对胶质母细胞瘤的表型和功能

英文原题:Cytokines impact natural killer cell phenotype and functionality against glioblastoma in vitro.

PubMed 2023/09/28(内容时间) Front Immunol Q1 · IF 7(JCR 2025)

研究概要

根据我们的研究结果,NK细胞的体外扩增能力和功能受多种因素影响,如供者、起始材料的组成、细胞因子组合和激活方案。细胞因子改变了NK细胞的表型和功能,这在其对胶质瘤细胞系的反应性中表现明显。据我们所知,这是首次进行如此程度的全面比较研究,这些发现可用于扩大临床NK细胞生产规模。

研究思路结论见上方概要

自然杀伤(NK)细胞是固有免疫系统的一部分,是对抗癌症的一线防御。由于NK细胞具有识别和杀伤肿瘤细胞的天然机制,因此被认为是现成同种异体细胞免疫治疗的潜在选择。在此,我们的目标是在体外确定针对胶质母细胞瘤的细胞毒性NK细胞的最佳基于细胞因子的无饲养层激活和扩增方案。

NK 细胞从人外周血中富集,并在不同的激活和细胞因子组合下扩增 16 天。根据 NK 细胞活力、功能性、扩增率和纯度评估扩增条件。扩增后 NK 细胞的细胞毒性和脱颗粒通过与其与胶质瘤细胞系 U‑87 MG、U‑87 MG EGFR vIII、LN-229、U-118 和 DK-MG 的共培养在体外测定。最佳扩增方案最终从 39 种不同条件中选出:三种磁珠细胞分选步骤(去除 CD3+ 细胞、富集 CD56+ 细胞,以及去除 CD3+ 细胞后富集 CD56+ 细胞);四种激活方案(持续激活、预激活、再激活和加强);以及四种细胞因子组合(IL-2/15、IL‑21/15、IL‑27/18/15 和 IL-12/18/15)。

扩增率在2-50倍之间变化,取决于供者和扩增条件。最佳的扩增率和纯度通过从起始材料中序贯选择(去除CD3+细胞并富集CD56+细胞)以及使用IL-12/18/15细胞因子预激活获得,已知这些细胞因子可产生细胞因子诱导的记忆样NK细胞。这些记忆样NK细胞的细胞毒性通过再激活得到增强,减少了供者差异。当细胞在扩增结束时用IL-12/18/15或IL-21/15进行加强时,产生了细胞毒性最强的NK细胞。

展开英文摘要原文

OBJECTIVE: Natural killer (NK) cells are a part of the innate immune system and first-line defense against cancer. Since they possess natural mechanisms to recognize and kill tumor cells, NK cells are considered as a potential option for an off-the-shelf allogeneic cell-based immunotherapy. Here, our objective was to identify the optimal cytokine-based, feeder-free, activation and expansion protocol for cytotoxic NK cells against glioblastoma in vitro . METHODS: NK cells were enriched from human peripheral blood and expanded for 16 days with different activation and cytokine combinations. The expansion conditions were evaluated based on NK cell viability, functionality, expansion rate and purity. The cytotoxicity and degranulation of the expanded NK cells were measured in vitro from co‑cultures with the glioma cell lines U‑87 MG, U‑87 MG EGFR vIII, LN-229, U-118 and DK-MG. The best expansion protocols were selected from ultimately 39 different conditions: three magnetic cell‑selection steps (Depletion of CD3+ cells, enrichment of CD56+ cells, and depletion of CD3+ cells followed by enrichment of CD56+ cells); four activation protocols (continuous, pre-activation, re-activation, and boost); and four cytokine combinations (IL-2/15, IL‑21/15, IL‑27/18/15 and IL-12/18/15). RESULTS: The expansion rates varied between 2-50-fold, depending on the donor and the expansion conditions. The best expansion rate and purity were gained with sequential selection (Depletion of CD3+ cells and enrichment of CD56+ cells) from the starting material and pre-activation with IL‑12/18/15 cytokines, which are known to produce cytokine-induced memory-like NK cells. The cytotoxicity of these memory-like NK cells was enhanced with re-activation, diminishing the donor variation. The most cytotoxic NK cells were produced when cells were boosted at the end of the expansion with IL-12/18/15 or IL-21/15. CONCLUSION: According to our findings the ex vivo proliferation capacity and functionality of NK cells is affected by multiple factors, such as the donor, composition of starting material, cytokine combination and the activation protocol. The cytokines modified the NK cells' phenotype and functionality, which was evident in their reactivity against the glioma cell lines. To our knowledge, this is the first comprehensive comparative study performed to this extent, and these findings could be used for upscaling clinical NK cell manufacturing.

论文信息

作者
Sivonen M、Sirviö KA、Wojciechowski S、Kailaanmäki A、Kaipainen S、Bailey A、Villalba M、Kekarainen T
单位
Kuopio Center for Gene and Cell Therapy, Kuopio, Finland.Finland
文献类型
非美国政府资助研究
期刊
Frontiers in immunology2023
原文标识
PubMed 37841273 · DOI 10.3389/fimmu.2023.1227064