Molybdenum Diphosphide Nanorods with Laser-Potentiated Peroxidase Catalytic/Mild-Photothermal Therapy of Oral Cancer

被引:35
作者
Qian, Min [1 ]
Cheng, Ziqiang [2 ]
Luo, Guanghong [3 ]
Galluzzi, Massimiliano [2 ]
Shen, Yuehong [1 ]
Li, Zhibin [2 ]
Yang, Hongyu [1 ]
Yu, Xue-Feng [2 ]
机构
[1] Peking Univ, Guangdong Prov Engn Res Ctr Oral Dis Diag & Treat, Guangdong Prov High Level Clin Key Specialty, Dept Oral & Maxillofacial Surg,Shenzhen Hosp, Guangzhou 518036, Guangdong, Peoples R China
[2] Chinese Acad Sci, Mat & Interfaces Ctr, Shenzhen Inst Adv Technol, Shenzhen 518055, Guangdong, Peoples R China
[3] Jinan Univ, Clin Med Coll 2, Dept Radiat Oncol, Shenzhen Peoples Hosp, Shenzhen 518020, Guangdong, Peoples R China
基金
中国博士后科学基金;
关键词
chemodynamic therapy; mild-photothermal therapy; molybdenum diphosphide nanorods; oral cancer; peroxidase-like catalytic; SEMIMETALLIC MOP2; MICROBIOME; ELECTROCATALYST; NANOPLATFORM; NANOSHEETS;
D O I
10.1002/advs.202101527
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Chemodynamic therapy (CDT) is an emerging treatment that usually employs chemical agents to decompose hydrogen peroxide (H2O2) into hydroxyl radical (center dot OH) via Fenton or Fenton-like reactions, inducing cell apoptosis or necrosis by damaging biomacromolecules such as, lipids, proteins, and DNA. Generally, CDT shows high tumor-specificity and minimal-invasiveness in patients, thus it has attracted extensive research interests. However, the catalytic reaction efficiency of CDT is largely limited by the relatively high pH at the tumor sites. Herein, a 808 nm laser-potentiated peroxidase catalytic/mild-photothermal therapy of molybdenum diphosphide nanorods (MoP2 NRs) is developed to improve CDT performance, and simultaneously achieve effective tumor eradication and anti-infection. In this system, MoP2 NRs exhibit a favorable cytocompatibility due to their inherent excellent elemental biocompatibility. Upon irradiation with an 808 nm laser, MoP2 NRs act as photosensitizers to efficiently capture the photo-excited band electrons and valance band holes, exhibiting enhanced peroxidase-like catalytic activity to sustainedly decompose tumor endogenous H2O2 to center dot OH, which subsequently destroy the cellular biomacromolecules both in tumor cells and bacteria. As demonstrated both in vitro and in vivo, this system exhibits a superior therapeutic efficiency with inappreciable toxicity. Hence, the work may provide a promising therapeutic technique for further clinical applications.
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页数:14
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