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新型磁电催化纳米粒子的活性氮释放与抗菌性能研究

  • Zhimin Zhang
  • , Min Ge
  • , Han Lin*
  • , Jianlin Shi
  • *此作品的通讯作者
  • CAS - Shanghai Institute of Ceramics
  • University of Chinese Academy of Sciences

科研成果: 期刊稿件文章同行评审

摘要

Compared with antibiotics and other drugs with poor functionalities and risk to induce bacterial resistance, inorganic functional nanomaterials with catalytic activity occupy an increasingly important position in the treatment of pathogenic infections by advantages of high response to the infected microenvironment (e.g. weak acid, high H2O2 concentration) or external physical stimuli (e.g. laser, ultrasound) and broad-spectrum sterilization. However, the acidic infection microenvironment is weak and unstable, and light or sound signals with high power density will cause damage to human cells. In addition, antimicrobial applications of alternative magnetic field (AMF), a non-invasive signal type with high tissue penetration, convenience to be remotely controlled, and effective magnetoelectric catalysis based on AMF have not been reported. In this study, an AMF-responsive nanocatalytic strategy based on the magnetostrictive-piezoelectric catalytic effect was applied to antibacterial research, and the surface of CoFe2O4-BiFeO3 magnetoelectric nanoparticles (BCFO) was modified with the nitrogen-containing group L-arginine (LA) to achieve a magneto-electric responsive controlled release of powerful bactericide reactive nitrogen species (RNS). In AMF, BCFO simultaneously generates reactive oxygen species (ROS) hydroxyl radical (OH) and superoxide anion (O2). The former reacts with LA to release nitric oxide (NO), and the latter combines with NO to produce peroxynitrite (ONOO), a typical RNS. As a highly active nitrification and oxidation agent, ONOO could exhibit stronger antibacterial activity than ROS under biofriendly AMF. Successful production of ONOO and achievement of stronger bactericidal efficiency were validated in this study. This work not only applies magnetoelectric nanocatalysis for antibacterial purposes, but also significantly improves the antibacterial ability through the conversion of ROS to RNS.

投稿的翻译标题Novel Magnetoelectric Catalytic Nanoparticles: RNS Release and Antibacterial Efficiency
源语言繁体中文
页(从-至)1114-1124
页数11
期刊Wuji Cailiao Xuebao/Journal of Inorganic Materials
39
10
DOI
出版状态已出版 - 1 10月 2024
已对外发布

关键词

  • antibacterial
  • magnetoelectric response
  • nanocatalytic medicine
  • reactive nitrogen species

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