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发现一种新型自然杀伤细胞系,具有独特的免疫刺激和增殖潜力,可作为癌症免疫治疗的替代平台。

Discovery of a novel natural killer cell line with distinct immunostimulatory and proliferative potential as an alternative platform for cancer immunotherapy.

机构信息

Division of Integrative Biosciences and Biotechnology, Pohang University of Science and Technology (POSTECH), 77 Cheongam-Ro, Nam-Gu, Pohang, Gyeongbuk, 37673, Republic of Korea.

SL-BIGEN Inc., 700 Daewangpanyo-Ro, Bundang-Gu, Seongnam, Gyeonggi, 13488, Republic of Korea.

出版信息

J Immunother Cancer. 2019 May 24;7(1):138. doi: 10.1186/s40425-019-0612-2.

Abstract

BACKGROUND

Human natural killer (NK) cell lines serve as an attractive source for adoptive immunotherapy, but NK-92 remains the only cell line being assessed in the clinic. Here, we established a novel NK cell line, NK101, from a patient with extra-nodal natural killer/T-cell lymphoma and examined its phenotypic, genomic and functional characteristics.

METHODS

Single cell suspensions from lymphoma tissue were expanded with anti-NKp46/anti-CD2-coated beads in the presence of IL-2. A continuously growing CD56 cell clone was selected and designated as NK101. Flow cytometry and RNA sequencing were used to characterize phenotypic and genomic features of NK101. In vitro cytotoxicity and IFN-γ/TNF-α secretion were measured by flow cytometry-based cytotoxicity assay and enzyme-linked immunosorbent assay, respectively, after direct co-culture with tumor cells. Immunomodulatory potential of NK101 was assessed in an indirect co-culture system using conditioned medium. Finally, in vivo antitumor efficacy was evaluated in an immunocompetent, syngeneic 4T1 mammary tumor model.

RESULTS

NK101 displayed features of CD56CD62L intermediate stage NK subset with the potential to simultaneously act as a cytokine producer and a cytotoxic effector. Comparative analysis of NK101 and NK-92 revealed that NK101 expressed lower levels of perforin and granzyme B that correlated with weaker cytotoxicity, but produced higher levels of pro-inflammatory cytokines including IFN-γ and TNF-α. Contrarily, NK-92 produced greater amounts of anti-inflammatory cytokines, IL-1 receptor antagonist and IL-10. Genome-wide analysis revealed that genes associated with positive regulation of leukocyte proliferation were overexpressed in NK101, while those with opposite function were highly enriched in NK-92. The consequence of such expressional and functional discrepancies was well-represented in (i) indirect co-culture system where conditioned medium derived from NK101 induced greater proliferation of human peripheral blood mononuclear cells and (ii) immunocompetent 4T1 tumor model where peritumoral injections of NK101 displayed stronger anti-tumor activities by inducing higher tumor-specific immune responses. In a manufacturing context, NK101 not only required shorter recovery time after thawing, but also exhibited faster growth profile than NK-92, yielding more than 200-fold higher cell numbers after 20-day culture.

CONCLUSION

NK101 is a unique NK cell line bearing strong immunostimulatory potential and substantial scalability, providing an attractive source for adoptive cancer immunotherapy.

摘要

背景

人自然杀伤 (NK) 细胞系可作为过继免疫疗法的一个有吸引力的来源,但 NK-92 仍然是唯一一种正在临床评估的细胞系。在这里,我们从结外自然杀伤/T 细胞淋巴瘤患者中建立了一种新型 NK 细胞系 NK101,并研究了其表型、基因组和功能特征。

方法

使用抗 NKp46/抗 CD2 包被珠在 IL-2 的存在下从淋巴瘤组织的单细胞悬液中进行扩增。选择连续生长的 CD56 细胞克隆并将其命名为 NK101。通过流式细胞术和 RNA 测序来表征 NK101 的表型和基因组特征。通过流式细胞术基于细胞毒性测定和酶联免疫吸附试验(ELISA)分别测量直接与肿瘤细胞共培养后 NK101 的细胞毒性和 IFN-γ/TNF-α 分泌。使用条件培养基在间接共培养系统中评估 NK101 的免疫调节潜力。最后,在免疫活性、同源 4T1 乳腺肿瘤模型中评估 NK101 的体内抗肿瘤功效。

结果

NK101 显示出 CD56CD62L 中间阶段 NK 亚群的特征,具有同时充当细胞因子产生和细胞毒性效应物的潜力。NK101 和 NK-92 的比较分析表明,NK101 表达的穿孔素和颗粒酶 B 水平较低,与较弱的细胞毒性相关,但产生更高水平的促炎细胞因子,包括 IFN-γ 和 TNF-α。相反,NK-92 产生更多的抗炎细胞因子,IL-1 受体拮抗剂和 IL-10。全基因组分析表明,与白细胞增殖的正调节相关的基因在 NK101 中过表达,而具有相反功能的基因在 NK-92 中高度富集。这种表达和功能差异的结果在(i)间接共培养系统中得到了很好的体现,其中来自 NK101 的条件培养基诱导人外周血单核细胞更强的增殖,(ii)免疫活性 4T1 肿瘤模型中,NK101 周围注射通过诱导更高的肿瘤特异性免疫反应显示出更强的抗肿瘤活性。在制造方面,NK101 不仅在解冻后恢复时间更短,而且生长速度也比 NK-92 更快,在 20 天的培养后产生超过 200 倍的细胞数量。

结论

NK101 是一种具有强大免疫刺激潜力和可观可扩展性的独特 NK 细胞系,为过继性癌症免疫疗法提供了一个有吸引力的来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00a9/6534912/8f9cbefb7ad9/40425_2019_612_Fig1_HTML.jpg

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