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Fe3O4/ZnO@ZnS/Cu2S复合材料协同利福平高抗菌活性

张艳艳 熊滢 郭少波 张滢 冯凡 魏艳妮 张萌萌 房宇 袁浩博 侯鸿飞 郭妮婷

应用化学2026,Vol.43Issue(7):1103-1115,中插27-中插28,15.
应用化学2026,Vol.43Issue(7):1103-1115,中插27-中插28,15.DOI:10.19894/j.issn.1000-0518.250357

Fe3O4/ZnO@ZnS/Cu2S复合材料协同利福平高抗菌活性

Synergistic High-Antibacterial Activity of Fe3O4/ZnO@ZnS/Cu2S Nanocomposites Loaded with Rifampicin

张艳艳 1熊滢 2郭少波 3张滢 1冯凡 1魏艳妮 1张萌萌 1房宇 1袁浩博 4侯鸿飞 5郭妮婷5

作者信息

  • 1. 汉中职业技术学院药学院,汉中 723001
  • 2. 西安市排水管理中心,西安 710000
  • 3. 陕西理工大学化学与环境科学学院,汉中 723000
  • 4. 陕西理工大学生物科学与工程学院,汉中 723000
  • 5. 汉中市食品药品监督检验检测中心,汉中 723000
  • 折叠

摘要

Abstract

Bleeding and bacterial infection are critical factors influencing wound healing,and antibiotics play a significant role in their management.Rifampicin(RIF),a macrocyclic antibiotic,is commonly employed in the first-line treatment of infected wounds.However,the rapid rise in cases of multidrug-resistant bacteria(MDR)globally has led to a gradual decline in the medicinal efficacy of rifampicin,resulting in substantial economic losses.Consequently,it is essential to enhance the therapeutic value of traditional antibiotics and to develop bacteriostatic agents with highly effective antibacterial properties for wound treatment.In this study,Fe3O4/ZnO@ZnS/Cu2S@RIF nanocomposites were synthesized,utilizing Fe3O4/ZnO as the core and ZnS as the shell,with RIF loaded onto the surface.The antibacterial efficacy against Escherichia coli(E.coli),Staphylococcus aureus(S.aureus),and drug-resistant Salmonella(T-Salmonella)was evaluated.The results indicated that the composite material exhibited exceptional antibacterial activity,achieving an inhibition rate of 99.99%against all three bacterial strains at a concentration of 100 μg/mL within 40 min.This composite effectively compromised the integrity of the bacterial cell wall,altered cell membrane permeability,and induced bacterial apoptosis.Furthermore,in vivo experiments demonstrated that the composite material achieved a wound healing rate of(80±0.9)%by the ninth day post-infection,indicating a significant reparative effect.These findings provide a theoretical foundation and experimental support for the clinical application of advanced wound dressings.

关键词

Fe3O4/ZnO/利福平/协同抑菌/抑菌性能/伤口感染愈合

Key words

Fe3O4/ZnO/Rifampicin/Synergistic antibacterial/Bacteriostatic properties/Wound infection healing

分类

化学化工

引用本文复制引用

张艳艳,熊滢,郭少波,张滢,冯凡,魏艳妮,张萌萌,房宇,袁浩博,侯鸿飞,郭妮婷..Fe3O4/ZnO@ZnS/Cu2S复合材料协同利福平高抗菌活性[J].应用化学,2026,43(7):1103-1115,中插27-中插28,15.

基金项目

陕西省教育厅专项科研计划项目(No.22JK0257)资助 Supported by the Special Research Project of Shaanxi Provincial Department of Education(No.22JK0257) (No.22JK0257)

应用化学

1000-0518

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