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具有肿瘤微环境双重响应性的纳米药物用于免疫声动力学抗肿瘤治疗。

Nanodrug with dual-sensitivity to tumor microenvironment for immuno-sonodynamic anti-cancer therapy.

机构信息

College of Chemistry and Materials Science, Jinan University, Guangzhou, 510632, China.

PCFM Lab of Ministry of Education, School of Materials Science and Engineering, Sun Yat-sen University, Guangzhou, 510275, China.

出版信息

Biomaterials. 2021 Feb;269:120636. doi: 10.1016/j.biomaterials.2020.120636. Epub 2021 Jan 4.

Abstract

Although a combination with photodynamic therapy (PDT) is a potential means to improve the immune checkpoint blockade (ICB)-based anticancer immunotherapy, this strategy is subjected to the extremely poor light penetration in melanoma. Herein, we develop a lipid (LP)-based micellar nanocarrier encapsulating sonosensitizer chlorin e6 (Ce6) in the core, conjugating anti-PD-L1 antibody (aPD-L1) to the interlayer through MMP-2-cleavable peptide, and bearing a PEG coating sheddable at low pH value (≈6.5) of tumor microenvironment. The unique nanocarrier design allows a tumor-targeting delivery to activate the anti-tumor immunity and meanwhile to reduce immune-related adverse effects (irAEs). Moreover, a sonodynamic therapy (SDT) is triggerable by using ultrasonic insonation to produce tumor-killing reactive oxygen species (ROS), thereby bypassing the poor light penetration which restricts PDT in melanoma. A combination of SDT with aPD-L1 immunotherapy effectively promotes tumor infiltration and activation of cytotoxic T cells, which resulted in robust anti-cancer immunity and long-term immune memory to effectively suppress melanoma growth and postoperative recurrence. This strategy for tumor-targeting codelivery of immune checkpoint inhibitors and SDT agents could be readily extended to other tumor types for better immunotherapeutic outcome and reduced irAEs.

摘要

虽然联合光动力疗法(PDT)是提高基于免疫检查点阻断(ICB)的抗癌免疫疗法的一种潜在手段,但该策略受到黑色素瘤中光穿透极差的限制。在此,我们开发了一种基于脂质(LP)的胶束纳米载体,将声敏剂氯己定(Ce6)包封在核心中,通过 MMP-2 可切割肽将抗 PD-L1 抗体(aPD-L1)连接到夹层中,并带有在肿瘤微环境的低 pH 值(约 6.5)下可脱落的聚乙二醇(PEG)涂层。独特的纳米载体设计允许肿瘤靶向递送来激活抗肿瘤免疫,同时减少免疫相关不良事件(irAEs)。此外,声动力学疗法(SDT)可通过超声空化触发产生杀伤肿瘤的活性氧(ROS),从而绕过限制 PDT 在黑色素瘤中应用的光穿透极差的问题。SDT 与 aPD-L1 免疫疗法的联合有效地促进了肿瘤浸润和细胞毒性 T 细胞的激活,从而产生了强大的抗癌免疫和长期免疫记忆,有效地抑制了黑色素瘤的生长和术后复发。这种用于免疫检查点抑制剂和 SDT 制剂的肿瘤靶向共递药策略可以很容易地扩展到其他肿瘤类型,以获得更好的免疫治疗效果和减少 irAEs。

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