刺猬
细菌
耐甲氧西林金黄色葡萄球菌
巨噬细胞
致病菌
抗生素
金黄色葡萄球菌
刺猬信号通路
抗药性
化学
抗生素耐药性
催化作用
微生物学
生物
药品
药理学
生物化学
信号转导
遗传学
体外
作者
Yanping Long,Ling Li,Tao Xu,Xizheng Wu,Yun Gao,Jianbo Huang,Chao He,Tian Ma,Lang Ma,Chong Cheng,Changsheng Zhao
标识
DOI:10.1038/s41467-021-26456-9
摘要
Pathogenic drug-resistant bacteria represent a threat to human health, for instance, the methicillin-resistant Staphylococcus aureus (MRSA). There is an ever-growing need to develop non-antibiotic strategies to fight bacteria without triggering drug resistance. Here, we design a hedgehog artificial macrophage with atomic-catalytic centers to combat MRSA by mimicking the "capture and killing" process of macrophages. The experimental studies and theoretical calculations reveal that the synthesized materials can efficiently capture and kill MRSA by the hedgehog topography and substantial generation of •O2- and HClO with its Fe2N6O catalytic centers. The synthesized artificial macrophage exhibits a low minimal inhibition concentration (8 μg/mL Fe-Art M with H2O2 (100 μM)) to combat MRSA and rapidly promote the healing of bacteria-infected wounds on rabbit skin. We suggest that the application of this hedgehog artificial macrophage with "capture and killing" capability and high ROS-catalytic activity will open up a promising pathway to develop antibacterial materials for bionic and non-antibiotic disinfection strategies.
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