化学
金黄色葡萄球菌
过氧化氢
抗菌活性
硫化钴
生物相容性
大肠杆菌
抗菌剂
体内
活性氧
抗生素
钴
硫化物
酶
组合化学
细胞毒性
硫化氢
细菌
微生物学
体外
生物化学
有机化学
硫黄
遗传学
电化学
生物技术
生物
物理化学
电极
基因
作者
Ruibang Wu,Zheng Liu,Yong Huang,Leizhen Huang,Juehan Wang,Hong Ding,Zhe Wang,Qiujiang Li,Ce Zhu,Limin Liu,Li Zhang,Ganjun Feng
标识
DOI:10.1021/acs.bioconjchem.3c00403
摘要
The emergence of nanozymes presents a promising alternative to antibiotics for reactive oxygen species-mediated broad-spectrum antimicrobial purposes, but nanozymes still face challenges of low therapeutic efficiency and poor biocompatibility. Herein, we creatively prepared a novel kind of hollow cobalt sulfide (CoS) nanospheres with a unique mesoporous structure that is able to provide numerous active sites for enzyme-like reactions. The results revealed that 50 μg/mL of CoS nanospheres exhibited strong peroxidase- and oxidase-like activities under physiological conditions with the assistance of a low concentration of hydrogen peroxide (H2O2, 100 μM) while possessing highly efficient GSH-depletion ability, which endowed CoS nanospheres with triple enzyme-like properties to combat bacterial infections. The in vitro experiments demonstrated that the CoS nanozyme displayed significant antibacterial effects against both Gram-positive Staphylococcus aureus (S. aureus) and Gram-negative Escherichia coli (E. coli). The in vivo implantation showed that the synthesized CoS effectively eliminated bacteria and promoted the recovery of infected wounds in rats while exhibiting a low cytotoxicity. This study provides a promising treatment strategy to accelerate infected wound healing.
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