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白细胞介素-15Rα-Sushi-Fc 融合蛋白共搭载白细胞介素-15 和脱镁叶绿酸 A 用于癌症光免疫治疗

英文原题:Interleukin-15Rα-Sushi-Fc Fusion Protein Co-Hitchhikes Interleukin-15 and Pheophorbide A for Cancer Photoimmunotherapy.

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Interleukin-15Rα-Sushi-Fc Fusion Protein Co-Hitchhikes Interleukin-15 and Pheophorbide A for Cancer Photoimmunotherapy.

PubMed 2025/05/05(内容时间) Pharmaceutics Q1 · IF 6.9(JCR 2025)

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中文摘要

白细胞介素-15(IL-15)可刺激NK 细胞或T细胞的增殖,与光动力疗法(PDT)联合应用已成为一种有效的癌症光免疫治疗策略。IL-15并非直接激活细胞因子受体,而是需要首先与IL-15受体α链亚基(IL-15Rα)结合,随后通过反式呈递至效应细胞上的IL-15受体β/γ链亚基以实现药理学激活。因此,由于IL-15半衰期短、缺乏靶向活性以及IL-15Rα可用性有限,IL-15的递送仍是一项重大挑战。

开发了一种利用重组IL-15(rIL-15)和光敏剂脱镁叶绿酸A(PhA)的共搭便车递送策略,用于增强与PDT联合的癌症免疫治疗。设计了一种重组IL-15Rα-sushi-Fc融合蛋白(rILR-Fc),通过IL-15Rα sushi结构域装载rIL-15,模拟其反式呈递过程。此外,rILR-Fc的Fc部分可基于其高结合亲和力装载PhA。

通过自组装,rILR-Fc/PhA/rIL-15纳米颗粒(NPs)被制备用于共搭便车递送PhA和rIL-15,通过受体介导的转胞吞作用提高了PhA和rIL-15的肿瘤蓄积。此外,该纳米颗粒延长了rIL-15的血液半衰期,但未改变PhA从血液中的消除速率。在原位结肠肿瘤模型小鼠中,rILR-Fc/PhA/rIL-15 NPs有效激发了强效的全身性抗肿瘤免疫以及对肿瘤再攻击的持久免疫记忆。

增强的抗肿瘤治疗效果表明,共搭便车递送策略通过优化光敏剂和IL-15两者的药代动力学,为光动力与IL-15免疫联合治疗提供了一种有前景的策略。

展开英文摘要原文

Background : Interleukin-15 (IL-15) stimulates the proliferation of natural killer cells or T cells, which, in combination with photodynamic therapy (PDT), has emerged as an effective strategy for cancer photoimmunotherapy. Instead of direct cytokine receptor activation, IL-15 necessitates first binding to the IL-15 receptor α chain subunit (IL-15Rα), followed by trans-presentation to the IL-15 receptor β/γ chain subunit on the effector cells for pharmacologic activation.

Therefore, the delivery of IL-15 remains a major challenge owing to its short half-life, its lack of targeting activity, and the limited availability of IL-15Rα. Methods : A co-hitchhiking delivery approach using recombinant IL-15 (rIL-15) and a photosensitizer, pheophorbide A (PhA), is developed for enhanced combinatorial cancer immunotherapy with PDT. A recombinant IL-15Rα-sushi-Fc fusion protein (rILR-Fc) is designed to load rIL-15 through the IL-15Rα sushi domain, which mimics its trans-presentation.

Moreover, the Fc moiety of rILR-Fc can load PhA based on its high binding affinity. Results: Through self-assembly, rILR-Fc/PhA/rIL-15 nanoparticles (NPs) are formulated to co-hitchhike PhA and rIL-15, which improves the tumor accumulation of PhA and rIL-15 through receptor-mediated transcytosis.

Moreover, the nanoparticles prolong the blood half-life of rIL-15 but do not alter the elimination rate of PhA from the blood. The rILR-Fc/PhA/rIL-15 NPs effectively elicit potent systemic antitumor immunity and long-lasting immune memory against tumor rechallenge in model mice bearing orthotopic colon tumors.

Conclusions : The enhanced antitumor therapeutic effect demonstrates that the co-hitchhiking delivery strategy, optimizing the pharmacokinetics of both the photosensitizer and IL-15, provides a promising strategy for combinatorial photodynamic and IL-15 immunotherapy.

论文信息

作者
Li Z、Xu J、Lin H、Yu S、Sun J、Zhang C、Zhang S、Li T
单位
School of Pharmacy & Minhang Hospital, Key Laboratory of Smart Drug Delivery Ministry of Education & State Key Laboratory of Molecular Engineering of Polymers, Fudan University, 826 Zhangheng Road, Shanghai 201203, China.China
期刊
Pharmaceutics2025 May 5
原文标识
PubMed 40430906 · DOI 10.3390/pharmaceutics17050615