← 返回

双重 IL-2/IL-21 预激活增强 CD16V-CAR/TRAIL 工程化 NK 细胞联合单克隆抗体的抗肿瘤功能

英文原题:Dual IL-2/IL-21 priming augments the anti-tumor function of CD16V-CAR/TRAIL-engineered NK cells in combination with monoclonal antibodies.

查看英文原题

Dual IL-2/IL-21 priming augments the anti-tumor function of CD16V-CAR/TRAIL-engineered NK cells in combination with monoclonal antibodies.

PubMed 2025/06/24(内容时间) Biomed Pharmacother

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

基于NK细胞的免疫治疗进展需要平台特异性方法,以克服内在功能限制,同时能够灵活适应不同的生产环境。NK101是一种人类NK细胞系,其表型与CD56 dim CD62L +中间阶段亚群一致,保留功能可塑性和强健的细胞因子反应性,为过继免疫治疗开发提供了多功能平台。尽管基线细胞毒性相对温和,但这一特征允许通过靶向细胞因子和基因干预进行理性重编程。

我们通过筛选IL-2家族细胞因子对增殖和效应分子产生的影响,启动了这一重编程。IL-2和IL-15促进增殖和IFN-γ分泌,而IL-21独特地增强颗粒酶B水平,对增殖和IFN-γ影响极小。IL-2和IL-21共刺激被证明最为有效,在维持增殖和增强IFN-γ分泌的同时最大化细胞毒性潜力。转录组分析进一步突出IL-21在激活颗粒酶介导的凋亡中的作用,而IL-2共预刺激放大了这一作用。这些发现被应用于表达高亲和力CD16的基因工程NK101细胞(NK101-16V),其中IL-2和IL-21共预刺激增强了基线细胞毒性和抗体依赖性细胞介导的细胞毒性。额外工程化表达膜结合TRAIL(NK101-16V-TR)显著增强了TRAIL介导的凋亡,使对耐药肿瘤的杀伤更强。在体内,IL-2/IL-21预刺激的NK101-16V-TR细胞与rituximab联合,在所有Jeko-1异种移植荷瘤小鼠中实现了完全肿瘤消退。

总体而言,本研究提出了一种广泛适用的NK细胞操控设计框架,将瞬时细胞因子预激活与多功能基因修饰相结合,以指导下一代NK细胞疗法的开发。

展开英文摘要原文

The advancement of NK cell-based immunotherapy requires platform-specific approaches that overcome intrinsic functional limitations while enabling flexible adaptation across diverse manufacturing settings.

NK101, a human NK cell line phenotypically aligned with the CD56 dim CD62L + intermediate-stage subset, retains functional plasticity and robust cytokine responsiveness, providing a versatile platform for adoptive immunotherapy development. Although baseline cytotoxicity is relatively modest, this profile allows for rational reprogramming through targeted cytokine and genetic interventions.

We initiated this reprogramming by screening IL-2 family cytokines for their effects on proliferation and effector molecule production. IL-2 and IL-15 promoted proliferation and IFN-γ secretion, whereas IL-21 uniquely enhanced granzyme B levels with minimal effects on proliferation and IFN-γ.

Co-stimulation with IL-2 and IL-21 proved most effective, maximizing cytotoxic potential while sustaining proliferation and enhancing IFN-γ secretion. Transcriptomic profiling further highlighted IL-21's role in activating granzyme-mediated apoptosis, which was amplified by IL-2 co-priming.

These findings were applied to genetically engineered NK101 cells expressing high-affinity CD16 (NK101-16V), where IL-2 and IL-21 co-priming enhanced both baseline cytotoxicity and antibody-dependent cellular cytotoxicity. Additional engineering to express membrane-bound TRAIL (NK101-16V-TR) significantly augmented TRAIL-mediated apoptosis, enabling greater killing of resistant tumors.

In vivo, IL-2/IL-21-primed NK101-16V-TR cells in combination with rituximab achieved complete tumor regression in all Jeko-1 xenograft-bearing mice. Collectively, this study presents a broadly applicable design framework for NK cell manipulation, integrating transient cytokine priming with multi-functional genetic modification to guide the development of next-generation NK cell therapies.

论文信息

作者
Hwang I、Lee J、Kim SW、Sung YC
第一作者单位
SL BIGEN, Inc., Yeonsu-gu, Incheon, Republic of Korea; College of Pharmacy, Yonsei Institute of Pharmaceutical Sciences, Yonsei University, Yeonsu‑gu, Incheon, Republic of Korea. Electronic address: ijhwang@slbigen.com.South Korea
通讯作者单位
SL BIGEN, Inc., Yeonsu-gu, Incheon, Republic of Korea; Division of Integrative Biosciences and Biotechnology, Pohang University of Science and Technology (POSTECH), Pohang, Gyeongbuk, Republic of Korea. Electronic address: ycsung@postech.ac.kr.South Korea
期刊
Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie2025 Aug
原文标识
PubMed 40561592 · DOI 10.1016/j.biopha.2025.118289