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用于增强协同化学光热疗法的近红外响应双金属纳米囊泡

Near-Infrared Responsive Bimetallic Nanovesicles for Enhanced Synergistic Chemophotothermal Therapy.

作者信息

Luo Liyao, He Hongyu, Li Chunhui, He Yaqian, Hao Zining, Wang Shuai, Zhao Qianqian, Liu Zhiwei, Gao Dawei

出版信息

ACS Biomater Sci Eng. 2019 Mar 11;5(3):1321-1331. doi: 10.1021/acsbiomaterials.8b01534. Epub 2019 Feb 20.

Abstract

Limited therapeutic effects and obvious side effects are two critical problems affecting tumor therapy. Herein, we designed an ingenious nanocarrier, platinum/gold bimetallic-nanoshell-coated triptolide liposomes (Pt@Au-TP-Lips), to achieve enhanced chemophotothermal therapy against cancer. Compared to conventional gold nanoflower structures, the platinum/gold bimetallic (Pt@Au) core-shells exhibited broader near-infrared (NIR) absorption due to the ultrastrong plasmonic coupling effect. With NIR light irradiation, the Pt@Au nanostructure could efficiently and sustainably convert light energy into substantial heat. The ultrahigh photothermal conversion efficiency (56.5%) of Pt@Au-TP-Lips was significantly higher than that of gold nanoflowers (35.7%). Specifically, hyperthermia could induce a phase change in the liposome membrane to accelerate the release of triptolide (TP); meanwhile, it could ablate tumor cells directly and facilitate the cellular uptake of drugs to enhance chemotherapy. More importantly, owing to the cooperation of TP and platinum, Pt@Au-TP-Lips exhibited significant tumor growth suppression with a high inhibitory rate of 90.7%, achieving superior chemophotothermal combination therapy. This work provides new insight into the development of a cooperative theranostic agent for oncotherapy.

摘要

有限的治疗效果和明显的副作用是影响肿瘤治疗的两个关键问题。在此,我们设计了一种巧妙的纳米载体,铂/金双金属纳米壳包覆雷公藤内酯醇脂质体(Pt@Au-TP-Lips),以实现增强的癌症化学光热疗法。与传统的金纳米花结构相比,铂/金双金属(Pt@Au)核壳由于超强的等离子体耦合效应而表现出更宽的近红外(NIR)吸收。在近红外光照射下,Pt@Au纳米结构能够高效且持续地将光能转化为大量的热。Pt@Au-TP-Lips的超高光热转换效率(56.5%)显著高于金纳米花(35.7%)。具体而言,热疗可诱导脂质体膜发生相变以加速雷公藤内酯醇(TP)的释放;同时,它可直接消融肿瘤细胞并促进药物的细胞摄取以增强化疗效果。更重要的是,由于TP和铂的协同作用,Pt@Au-TP-Lips表现出显著的肿瘤生长抑制作用,抑制率高达90.7%,实现了卓越的化学光热联合治疗。这项工作为开发用于肿瘤治疗的协同诊疗剂提供了新的见解。

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