谷胱甘肽
抗菌活性
细菌
活性氧
催化作用
纳米反应器
微生物学
致病菌
抗生素
材料科学
组合化学
化学
生物
生物化学
酶
遗传学
作者
Xi Zhou,Shuai Zhang,Yan Liu,Jiashen Meng,Wei Wang,Yaoji Sun,Linbo Xia,Zhaozhi He,Wenxin Hu,Lei Ren,Zhiwei Chen,Xingcai Zhang
标识
DOI:10.1021/acsami.1c24231
摘要
Nanozymes with peroxidase-like activity have great application potential in combating pathogenic bacterial infections and are expected to become an alternative to antibiotics. However, the near-neutral pH and high glutathione (GSH) levels in the bacterial infection microenvironment severely limit their applications in antibacterial therapy. In this work, a metal–organic framework (MOF)-based cascade catalytic glutathione-depleting system named MnFe2O4@MIL/Au&GOx (MMAG) was constructed. The MMAG cascade-catalyzed glucose to provide H+ and produces a large amount of toxic reactive oxygen species. In addition, MMAG consumed GSH, which can result in bacterial death more easily. Systematic antibacterial experiments illustrated that MMAG has superior antibacterial effects on both Gram-positive bacteria and Gram-negative bacteria.
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