Luo Liyao, He Hongyu, Li Chunhui, He Yaqian, Hao Zining, Wang Shuai, Zhao Qianqian, Liu Zhiwei, Gao Dawei
ACS Biomater Sci Eng. 2019 Mar 11;5(3):1321-1331. doi: 10.1021/acsbiomaterials.8b01534. Epub 2019 Feb 20.
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.
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。