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组成型 RLI 装甲增强 CAR-NK 细胞效应功能但导致体内致死性毒性

英文原题:Constitutive RLI Armoring Enhances CAR-NK Cell Effector Functions but Causes Lethal Toxicity In Vivo.

PubMed 2026/04/16(内容时间) Int J Mol Sci Q1 · IF 5.6(JCR 2025)

研究概要

本研究表明,组成型IL15装甲化可以是一种增强CAR-NK细胞的有效但有风险的策略,而RLI是这一普遍原理中最有效但也最具毒性的范例。

中文摘要

嵌合抗原受体-自然杀伤(CAR-NK)细胞疗法是治疗血液系统恶性肿瘤的一种有前景的免疫疗法。尽管工程化的白细胞介素15(IL15)变体,如膜结合型 IL15(mbIL15)和 IL15/IL15R 异二聚体(RLI),能够增强 NK 细胞活性,但它们作为 CAR-NK 细胞装甲的相对疗效和安全性仍不明确。本研究系统评价了共表达抗 CD19 CAR(19)与可溶性 IL15、mbIL15 或 RLI 的原代人 CAR-NK 细胞。我们发现,19-RLI CAR-NK 细胞在体外表现出更优的 IL15 分泌、增殖、细胞毒性和迁移能力,并在体内有效控制肿瘤。然而,所有 IL15 装甲的构建体,尤其是 19-RLI,均在小鼠中诱导了致死性毒性,其特征为 CAR-NK 过度增殖和全身 IL15 水平升高。转录组分析显示,该毒性与持续性 IL15 信号驱动的高度活跃分子状态相关。总之,本研究表明,组成型 IL15 装甲可能是增强 CAR-NK 细胞的一种强效但高风险的策略,而 RLI 是这一普遍原则中效力最强但也最具毒性的范例。我们的发现凸显了在细胞因子装甲 CAR-NK 疗法的设计中纳入安全性优化策略(如诱导型细胞因子表达)以实现临床转化的必要性。

展开英文摘要原文

Chimeric antigen receptor-natural killer (CAR-NK) cell therapy is a promising immunotherapy for hematological malignancies. While engineered interleukin15 (IL15) variants like membrane-bound IL15 (mbIL15) and the IL15/IL15R heterodimer (RLI) can enhance NK cell activity, their relative efficacy and safety as armor for CAR-NK cells remain unclear. This study systematically evaluated primary human CAR-NK cells co-expressing an anti-CD19 CAR (19 ) with soluble IL15, mbIL15, or RLI. We found that 19 -RLI CAR-NK cells exhibited superior IL15 secretion, proliferation, cytotoxicity, and migration in vitro, and effectively controlled tumors in vivo. However, all IL15-armored constructs, particularly 19 -RLI, induced lethal toxicity in mice, characterized by CAR-NK hyperproliferation and elevated systemic IL15. Transcriptomic analysis revealed that this toxicity correlated with a hyperactive molecular state driven by persistent IL15 signaling. In conclusion, this study suggests that constitutive IL15 armoring can be a potent but risky strategy for enhancing CAR-NK cells, with RLI being the most potent yet toxic exemplar of this general principle. Our findings highlight the necessity of incorporating safety-optimized strategies, such as inducible cytokine expression, into the design of cytokine-armored CAR-NK therapies for clinical translation.

论文信息

作者
Ling Z、Wang Y、Wu G、Lin W、Lu T、Yu G、Wang J
单位
School of Life Science, Beijing University of Chinese Medicine, Beijing 102488, China.China
期刊
International journal of molecular sciences2026 Apr 16
原文标识
PubMed 42074194 · DOI 10.3390/ijms27083554