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ACKR2 缺陷 NK 细胞增强的 CCR2 表达提高了杀肿瘤细胞疗法的疗效

英文原题:Enhanced CCR2 expression by ACKR2-deficient NK cells increases tumoricidal cell therapy efficacy.

查看英文原题

Enhanced CCR2 expression by ACKR2-deficient NK cells increases tumoricidal cell therapy efficacy.

PubMed 2024/11/27(内容时间) J Leukoc Biol Q2 · IF 3.4(JCR 2025)

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中文摘要

趋化因子调控白细胞向炎症部位和特定组织区域的迁移,因此可能有助于确保细胞治疗产品准确归巢。我们和其他研究者已表明,非典型趋化因子受体2(ACKR2)缺陷小鼠(ACKR2-/-)在细胞系和自发小鼠模型中受到保护,免于转移灶的形成。我们已经证明,这与ACKR2-/-NK 细胞上CCR2表达增强有关,使其能够更有效地归巢至表达CCR2配体的转移灶。在此,我们证明ACKR2-/-小鼠中的转移抑制表型并非ACKR2缺失的直接效应。相反,NK 细胞CCR2表达的增强是由过客突变引起的,这些突变源于在129胚胎干细胞中创建ACKR2-/-小鼠品系的过程。我们进一步证明,简单筛选CCR2+NK 细胞即可富集具有增强抗转移能力的细胞群。鉴于肿瘤广泛表达CCR2配体,我们的研究强调CCR2是NK 细胞杀瘤细胞治疗中潜在的重要贡献因素。

展开英文摘要原文

Chemokines regulate leukocyte navigation to inflamed sites and specific tissue locales and may therefore be useful for ensuring accurate homing of cell therapeutic products. We, and others, have shown that atypical chemokine receptor 2 (ACKR2)-deficient mice (ACKR2-/-) are protected from metastasis development in cell line and spontaneous mouse models.

We have shown that this relates to enhanced CCR2 expression on ACKR2-/- natural killer cells, allowing them to home more effectively to CCR2 ligand-expressing metastatic deposits.

Here we demonstrate that the metastatic-suppression phenotype in ACKR2-/- mice is not a direct effect of the absence of ACKR2. Instead, enhanced natural killer cell CCR2 expression is caused by passenger mutations that originate from the creation of the ACKR2-/- mouse strain in 129 embryonic stem cells.

We further demonstrate that simple selection of CCR2+ natural killer cells enriches for a population of cells with enhanced antimetastatic capabilities. Given the widespread expression of CCR2 ligands by tumors, our study highlights CCR2 as a potentially important contributor to natural killer cell tumoricidal cell therapy.

论文信息

作者
Hayes AJ、Pingen M、Wilson G、Hansell C、Love S、Burgoyne P、McElroy D、Bartolini R
单位
Chemokine Research Group, School of Infection and Immunity, College of Medical, Veterinary and Life Sciences, University of Glasgow, Sir Graeme Davis Building, 120 University Place, Glasgow G12 8TA, United Kingdom.United Kingdom
期刊
Journal of leukocyte biology2024 Nov 27
原文标识
PubMed 39052923 · DOI 10.1093/jleuko/qiae162