光热治疗
纳米点
光动力疗法
三氧化钼
材料科学
多重耐药
三氧化物
钼
纳米技术
微生物学
化学
抗生素
生物
有机化学
冶金
硫黄
作者
Yan Zhang,Danxia Li,Jinshan Tan,Zhishang Chang,Xiangyong Liu,Weishuai Ma,Yuanhong Xu
出处
期刊:Small
[Wiley]
日期:2020-12-07
卷期号:17 (1)
被引量:155
标识
DOI:10.1002/smll.202005739
摘要
Abstract Bacterial infections have become a major danger to public health because of the appearance of the antibiotic resistance. The synergistic combination of multiple therapies should be more effective compared with the respective one alone, but has been rarely demonstrated in combating bacterial infections till now. Herein, oxygen‐vacancy molybdenum trioxide nanodots (MoO 3− x NDs) are proposed as an efficient and safe bacteriostatic. The MoO 3− x NDs alone possess triple‐therapy synergistic efficiency based on the single near‐infrared irradiation (808 nm) regulated combination of photodynamic, photothermal, and peroxidase‐like enzymatic activities. Therein, photodynamic and photothermal therapies can be both achieved under the excitation of a single wavelength light source (808 nm). Both the photodynamic and nanozyme activity can result in the generation of reactive oxygen species (ROS) to reach the broad‐spectrum sterilization. Interestingly, the photothermal effect can regulate the MoO 3− x NDs to their optimum enzymatic temperature (50 °C) to give sufficient ROS generation in low concentration of H 2 O 2 (100 µ m ). The MoO 3− x NDs show excellent antibacterial efficiency against drug‐resistance extended spectrum β‐lactamases producing Escherichia coli and methicillin‐resistant Staphylococcus aureus (MRSA). Animal experiments further indicate that the MoO 3− x NDs can effectively treat wounds infected with MRSA in living systems.
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