光热治疗
材料科学
表面等离子共振
活性氧
纳米颗粒
过氧化氢酶
纳米复合材料
生物物理学
壳聚糖
葡萄糖氧化酶
纳米技术
化学工程
化学
氧化应激
生物化学
生物传感器
生物
工程类
作者
Yang Li,Limin Wang,Keke Kang,Yajie Ma,Kai Yu,Tiecheng Lu,Fengyu Qu,Huiming Lin
标识
DOI:10.1016/j.cej.2021.132330
摘要
MoSe2/[email protected] nanoheterostructure were synthesized to integrate multi-imaging and therapeutic strategies into one nanoplatform. These Au nanoparticles were deposited on the surface of MoSe2 hollow nanospheres (250 nm) to reveal the enhanced NIR harvest owing to localized surface plasma resonance of Au, which could be varied with the particle sizes and the distance of Au nanoparticles. Therefore, MoSe2/[email protected] nanocomposites revealed the great photothermal conversion efficiency to 73.0 %. In addition, they also exhibited the promoted reactive oxygen species (ROS) generation about 4-times as the pure sample, owing to the plasmon-mediated electron-transfer between the two components. Besides, the peroxidase and catalase activity of MoSe2 could convert the intracellular H2O2 to ·OH and O2 for chemotherapy. In addition, the glucose oxidase activity of Au made the H2O2 supplement for promoted chemodynamic therapy (CDT) and the glucose consumption for starvation therapy. It noted that the MoSe2/[email protected] heterostructure also increased the nanozyme activity (2 times), ascribing to the decreased resistant of the charge transfer. The photothermal/photodynamic/starvation therapy combined with CDT could bring the immunogenic cell death that was associated with anti-CTLA4 to further arouse immune response to eliminate the primary as well as metastatic tumors. In addition, the novel biodegradation of the nanocomposite made the elimination via urine and feces within 18 d.
科研通智能强力驱动
Strongly Powered by AbleSci AI