← 返回

在人 NK 细胞扩增过程中依次暴露于 IL21 和 IL15 可优化产量和功能

英文原题:Sequential Exposure to IL21 and IL15 During Human Natural Killer Cell Expansion Optimizes Yield and Function.

查看英文原题

Sequential Exposure to IL21 and IL15 During Human Natural Killer Cell Expansion Optimizes Yield and Function.

PubMed 2023/11/01(内容时间) Cancer Immunol Res Q1 · IF 7.9(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

自然杀伤(NK)细胞常通过经辐照的、工程化K562饲养层细胞进行临床级扩增,这些饲养层细胞表达核心转基因组合,包括膜结合型(mb)IL15和/或mbIL21以及41BBL。此前关于mbIL15与mbIL21用于NK扩增的比较,缺乏对所得NK细胞关键属性的对比,包括其高维表型、多功能性、细胞毒性的广度和效力、细胞代谢以及在异种移植肿瘤模型中的活性。

此外,尽管进行了多轮K562刺激,尚无关于序贯使用基于mbIL15和基于mbIL21的饲养层细胞的研究。我们填补了这些空白,发现使用基于mbIL15与基于mbIL21的饲养层细胞可驱动不同的表型和功能特征。单独表达mbIL15的饲养层细胞在几乎所有指标上均驱动更优的功能,而单独表达mbIL21的饲养层细胞则驱动更优的产量。联合使用时,大多数属性类似于mbIL21所赋予的属性;而序贯使用时,NK产量近似于第一种细胞因子所赋予的产量,表型、转录组和功能则类似于第二种细胞因子所驱动的结果,凸显了NK细胞分化的可塑性。序贯使用mbIL21后接mbIL15有利于获得大量高功能NK细胞,其在三个异种移植模型中的两个中表现出与单独使用mbIL15扩增的NK细胞相当的体内活性。

我们的研究结果明确了mbIL15与mbIL21在NK扩增过程中的影响,并揭示了一种此前未被充分认识的NK产量与功能之间的权衡,对于这一权衡,序贯使用基于mbIL21的饲养层细胞后接基于mbIL15的饲养层细胞在许多情况下可能是最优方案。

展开英文摘要原文

Natural killer (NK) cells are frequently expanded for the clinic using irradiated, engineered K562 feeder cells expressing a core transgene set of membrane-bound (mb) IL15 and/or mbIL21 together with 41BBL. Prior comparisons of mbIL15 to mbIL21 for NK expansion lack comparisons of key attributes of the resulting NK cells, including their high-dimensional phenotype, polyfunctionality, the breadth and potency of cytotoxicity, cellular metabolism, and activity in xenograft tumor models.

Moreover, despite multiple rounds of K562 stimulation, studies of sequential use of mbIL15- and mbIL21-based feeder cells are absent.

We addressed these gaps and found that using mbIL15- versus mbIL21-based feeder cells drove distinct phenotypic and functional profiles. Feeder cells expressing mbIL15 alone drove superior functionality by nearly all measures, whereas those expressing mbIL21 alone drove superior yield.

In combination, most attributes resembled those imparted by mbIL21, whereas in sequence, NK yield approximated that imparted by the first cytokine, and the phenotype, transcriptome, and function resembled that driven by the second cytokine, highlighting the plasticity of NK cell differentiation. The sequence mbIL21 followed by mbIL15 was advantageous in achieving significant yields of highly functional NK cells that demonstrated equivalent in vivo activity to those expanded by mbIL15 alone in two of three xenograft models.

Our findings define the impact of mbIL15 versus mbIL21 during NK expansion and reveal a previously underappreciated tradeoff between NK yield and function for which sequential use of mbIL21-based followed by mbIL15-based feeder cells may be the optimal approach in many settings.

论文信息

作者
Zhang C、Kadu S、Xiao Y、Johnson O、Kelly A、O'Connor RS、Lai M、Kong H
单位
Center for Cellular Immunotherapies, University of Pennsylvania, Philadelphia, Pennsylvania.United States
文献类型
非美国政府资助研究 · 美国 NIH 资助研究
期刊
Cancer immunology research2023 Nov 1
原文标识
PubMed 37649085 · DOI 10.1158/2326-6066.CIR-23-0151