合理设计
纳米技术
材料科学
抗菌剂
利用
纳米颗粒
抗菌活性
生化工程
生物膜
设计要素和原则
氧化物
抗菌剂
膜
作者
Dan Cheng,Yuchao Gu,Chengzhong Yu
出处
期刊:Small
[Wiley]
日期:2026-03-24
卷期号:22 (26): e00038-e00038
被引量:1
标识
DOI:10.1002/smll.202600038
摘要
The escalating global crisis of antimicrobial resistance urgently demands innovative antimicrobial agents beyond conventional antibiotics. Metal-based nanomaterials, including metal/metal oxide nanoparticles (NPs) and metal-organic frameworks (MOFs), represent a promising class of broad-spectrum antibacterial agents. However, their practical application is often hindered by intrinsic limitations such as aggregation, instability, and cytotoxicity. Integrating them with structurally and chemically tunable silica nanoparticles has been demonstrated as a promising strategy to mitigate the limitations and engineer advanced nanohybrids with synergistic functionalities. This review highlights how tailored interfacial chemistry achieves precise architectural control over silica&metal-based nanohybrids. The controlled nanoarchitecture is essential to fully exploit the structural and functional contributions of silica components to overcome the physiochemical limitations of meta-based material. We then examine the biological performance of these heterostructures mainly in antibacterial fields, including membrane disruption, stimuli-responsive activation, biofilm penetration/eradication, and receptor-mediated active targeting to pathogenic bacteria. Finally, challenges and future research directions are outlined based on our own perspectives, providing a design framework for next-generation antimicrobial nanotherapeutics.
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