← 返回

冷冻保存的 PM21 颗粒扩增 NK 细胞在体外和体内维持细胞毒性与效应功能

英文原题:Cryopreserved PM21-Particle-Expanded Natural Killer Cells Maintain Cytotoxicity and Effector Functions In Vitro and In Vivo.

查看英文原题

Cryopreserved PM21-Particle-Expanded Natural Killer Cells Maintain Cytotoxicity and Effector Functions In Vitro and In Vivo.

PubMed 2022/04/07(内容时间) Front Immunol Q1 · IF 7(JCR 2025)

分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。

中文摘要

开发自然杀伤(NK)细胞作为过继性癌症免疫治疗引起了极大兴趣。对于即用型产品和开展多中心临床试验,冷冻保存的NK细胞是首选产品。

然而,近期研究报告称NK细胞冷冻保存会导致细胞运动性丧失,进而导致细胞毒性丧失,这限制了此类产品的临床实用性。本研究评估了冷冻保存对PM21颗粒扩增NK细胞(PM21-NK细胞)的回收和功能的影响,以及其在体外使用2D和3D癌症模型和体内卵巢癌模型(包括患者来源异种移植瘤(PDX))中的抗肿瘤活性。有活力的PM21-NK细胞在冷冻保存和过夜静置后能够稳定回收,平均回收率为73 22%(N = 19)。与扩增匹配的新鲜NK细胞相比,解冻并静置后的NK细胞维持了活化受体的表达。与扩增匹配的新鲜NK细胞相比,解冻并静置的冷冻保存NK细胞在不同效靶比(NK:T)下与肿瘤细胞共孵育时,细胞毒性未显示下降。

此外,在肿瘤杀伤3D模型中,扩增匹配的冷冻保存NK细胞与新鲜NK细胞之间未观察到细胞毒性差异。这些通过将NK细胞与肿瘤球体共孵育的动力学活细胞成像检测进行分析。当暴露于肿瘤细胞或受到细胞因子刺激时,解冻并静置的冷冻保存NK细胞在脱颗粒标志物CD107a的表面表达或TNF和IFN 的细胞内表达方面未显示显著差异。还通过测量用新鲜与冷冻保存的NK细胞。冷冻保存的NK细胞使携带SKOV-3的NSG小鼠获得了统计学显著的生存期延长,其效果与新鲜NK细胞观察到的结果相当。

此外,用冷冻保存的PM21-NK细胞治疗携带PDX肿瘤的NSG小鼠,与未治疗小鼠相比,生存期几乎翻倍。这些数据表明,PM21-NK细胞可以有效冷冻保存和复苏,活力或活性无明显损失,同时在体外和体内均保留效应功能。这些发现支持使用冷冻保存的PM21-NK细胞作为癌症免疫治疗。

展开英文摘要原文

There is a great interest in developing natural killer (NK) cells as adoptive cancer immunotherapy. For off-the-shelf approaches and to conduct multicenter clinical trials, cryopreserved NK cells are the preferred product.

However, recent studies reported that cryopreservation of NK cells results in loss of cell motility and, as a consequence, cytotoxicity which limits the clinical utility of such products.

This study assessed the impact of cryopreservation on the recovery and function of PM21-particle expanded NK cells (PM21-NK cells) as well as their antitumor activity in vitro using 2D and 3D cancer models and in vivo in ovarian cancer models, including patient-derived xenografts (PDX). Viable PM21-NK cells were consistently recovered from cryopreservation and overnight rest with a mean recovery of 73 22% (N = 19).

Thawed and rested NK cells maintained the expression of activating receptors when compared to expansion-matched fresh NK cells. Cryopreserved NK cells that were thawed and rested showed no decrease in cytotoxicity when co-incubated with tumor cells at varying effector-to-target (NK:T) ratios compared to expansion-matched fresh NK cells.

Moreover, no differences in cytotoxicity were observed between expansion-matched cryopreserved and fresh NK cells in 3D models of tumor killing. These were analyzed by kinetic, live-cell imaging assays co-incubating NK cells with tumor spheroids. When exposed to tumor cells, or upon cytokine stimulation, cryopreserved NK cells that were thawed and rested showed no significant differences in surface expression of degranulation marker CD107a or intracellular expression of TNF and IFN .

In vivo antitumor activity was also assessed by measuring the extension of survival of SKOV-3-bearing NSG mice treated with fresh vs. cryopreserved NK cells. Cryopreserved NK cells caused a statistically significant survival extension of SKOV-3-bearing NSG mice that was comparable to that observed with fresh NK cells.

Additionally, treatment of NSG mice bearing PDX tumor with cryopreserved PM21-NK cells resulted in nearly doubling of survival compared to untreated mice. These data suggest that PM21-NK cells can be cryopreserved and recovered efficiently without appreciable loss of viability or activity while retaining effector function both in vitro and in vivo .

These findings support the use of cryopreserved PM21-NK cells as a cancer immunotherapy treatment.

论文信息

作者
Oyer JL、Croom-Perez TJ、Dieffenthaller TA、Robles-Carillo LD、Gitto SB、Altomare DA、Copik AJ
单位
Burnett School of Biomedical Sciences, College of Medicine, University of Central Florida, Orlando, FL, United States.United States
文献类型
多中心研究 · 非美国政府资助研究
期刊
Frontiers in immunology2022
原文标识
PubMed 35464440 · DOI 10.3389/fimmu.2022.861681