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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Engineering lymph node homing of ex vivo-expanded human natural killer cells via trogocytosis of the chemokine receptor CCR7
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Engineering lymph node homing of ex vivo-expanded human natural killer cells via trogocytosis of the chemokine receptor CCR7

机译:通过趋化因子受体CCR7的胞吞作用对离体扩增的人类自然杀伤细胞进行工程淋巴结归巢

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摘要

Natural killer (NK) cells have gained significant attention in adoptive immunotherapy for cancer. Consequently, novel methods of clinical-grade expansion of NK cells have emerged. Subsets of NK cells express a variety of chemokine receptors. However, to expand the scope of adoptively transferred NK cell homing to various malignancies, expression of corresponding chemokine receptors on NK cells is essential. Here, we have explored the use of trogocytosis as a tool to transiently express the chemokine receptor CCR7 on expanded human NK cells with the aim to enhance their homing to lymph nodes. We generated a K562- based "donor" cell line expressing CCR7, Clone9.CCR7, to transfer CCR7 onto NK cells via trogocytosis. CCR7 expression occurred in 80% of expanded NK cells within 1 hour after coculture with Clone9.CCR7. After removal of the donor cells from the coculture, the CCR7 expression on NK cells steadily declined to baseline levels by 72 hours. The acquired CCR7 receptors mediated in vitro migration of NK cells toward CCL19 and CCL21 and increased the lymph node homing by 144% in athymic nude mice. This is the first report on exploiting trogocytosis to rapidly and transiently modify lymphocytes, without direct genetic intervention, for adoptive transfer.
机译:在癌症的过继免疫疗法中,自然杀伤(NK)细胞已引起广泛关注。因此,出现了NK细胞临床级扩增的新方法。 NK细胞亚群表达多种趋化因子受体。然而,为了将过继转移的NK细胞归巢的范围扩大到各种恶性肿瘤,在NK细胞上表达相应的趋化因子受体是必不可少的。在这里,我们已经探索了使用光吞作用作为一种工具在扩展的人NK细胞上瞬时表达趋化因子受体CCR7,目的是增强其归巢至淋巴结的能力。我们生成了表达KCR7的基于K562的“供体”细胞系Clone9.CCR7,以通过光吞作用将CCR7转移到NK细胞上。与Clone9.CCR7共培养后1小时内,CCR7表达在80%的扩增NK细胞中发生。从共培养物中除去供体细胞后,到72小时,NK细胞上CCR7的表达稳定下降至基线水平。获得的CCR7受体介导了NK细胞在体外向CCL19和CCL21的迁移,并使无胸腺裸鼠的淋巴结归巢率提高了144%。这是关于利用光吞作用快速和短暂地修饰淋巴细胞而无需直接遗传干预以进行过继转移的第一份报告。

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