Mechanism insight into the high-efficiency catalytic killing of E. coli by metal-phenolic network as a nanozyme

金属酚网络纳米酶高效催化杀灭大肠杆菌的机理解析

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作者:Weiyun Guo, Chaoyun Wu, Guanghui Li, Yonghui Wang, Shenghua He, Jihong Huang, Xueli Gao, Xiaoyue Yue

Abstract

Glutathione (GSH) as an antioxidant greatly attenuates the reactive oxygen species (ROS) treatment strategy based on peroxidase-activity nanozymes. Therefore, nanozymes with multiple properties that generate ROS and further GSH-depletion functions would be of great benefit to improve antimicrobial efficacy. Herein, focusing on the green, safe and abundant functional prospects of metal-phenolic networks (MPNs) and the strong prospect of biomedical applications, we have synthesized copper tannic acid (CuTA) nanozymes with dual functional properties similar to peroxidase-like activity and GSH depletion. CuTA can catalyze the decomposition of H2O2 to hydroxyl radicals (˙OH). In addition, CuTA nanozymes can efficiently deplete available GSH, thus enhancing ROS-mediated antimicrobial therapy. The antibacterial results show that CuTA has an excellent antibacterial effect against E. coli.

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