抗菌剂
化学
食物腐败
磷酸酶
脱磷
防腐剂
碳纤维
药品
磷酸盐
生物化学
食品防腐剂
组合化学
减压
纳米技术
活性包装
细菌生长
氯
膜
食品科学
抗生素
抗生素耐药性
活性氧
作者
Evans O. Asare,Enrico Benassi,Tri Thanh Pham,Enrico Marsili,Haiyan Fan
摘要
. As opposed to the most conventional reactive oxygen species (ROS)-based antimicrobial mechanism, the present work proposed a mechanism based on robust phosphatase-mimetic activity. It catalyzes the non-specific dephosphorylation of phosphate groups in the bacterial outer membrane and cell wall, and pioneers the development of antimicrobial agents against Gram-negative bacteria. The L-Cys-derived CNPs demonstrated superior phosphatase activity and correspondingly stronger antibacterial efficacy. At the MIC, this nanozyme effectively prevented mold growth on tomatoes for 14 days, significantly extending their shelf life. This work highlights the promise of carbon phosphatase nanozymes as a novel class of potential resistance-resistant antimicrobial agents for agricultural applications.
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