伤口愈合
细菌
激进的
抗菌活性
生物膜
体内
抗生素
生物物理学
化学
光化学
组合化学
生物
生物化学
免疫学
遗传学
医学
生物技术
作者
Xueliang Liu,Qian Liu,Xiaojun He,Gaojie Yang,Xing Chen,Jiashen Meng,Bin Hu,Yuna Qian,Jianliang Shen,Lin Jin,Xingcai Zhang
标识
DOI:10.1016/j.apsusc.2022.155866
摘要
We developed a Co single-atom catalyst (Co-SAC) containing atomically dispersed Co atoms that exhibited intrinsic oxidase-like activity for sustainable antibacterial activity and wound healing. Benefiting from the good photothermal effect, the Co-SAC nanozyme presented enhanced oxidase-like activity and antibacterial efficiency via the generation of heat and superoxide radicals under near-infrared II laser light (1064 nm). In virtue of the outstanding oxidase-like activity, the Co-SAC nanozyme could eliminate pathogenic bacteria and disrupt the formation of biofilm without any additional H2O2. The accelerated wound healing was achieved in an in vivo wound model infected by S. aureus without significant side effects, which showed promising applications in antibacterials and wound healing. Such a strategy would possibly open a new window for translational medicine of Co-SAC nanozyme.
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