Ag-Activated Metal−Organic Framework with Peroxidase-like Activity Synergistic Ag+ Release for Safe Bacterial Eradication and Wound Healing

J Zhou, N Chen, J Liao, G Tian, L Mei, G Yang, Q Wang… - Nanomaterials, 2022 - mdpi.com
Silver nanoparticles (Ag NPs), a commonly used antibacterial nanomaterial, exhibit broad-
spectrum antibacterial activity to combat drug-resistant bacteria. However, the Ag NPs often …

Ionic silver-infused peroxidase-like metal–organic frameworks as versatile “antibiotic” for enhanced bacterial elimination

W Zhang, X Ren, S Shi, M Li, L Liu, X Han, W Zhu… - Nanoscale, 2020 - pubs.rsc.org
The fabrication of multiple antibacterial modalities for combating bacterial pathogens and
treating infected wounds is of vital importance. Accordingly, nanozymes have emerged as a …

Silver‐infused porphyrinic metal–organic framework: Surface‐adaptive, on‐demand nanoplatform for synergistic bacteria killing and wound disinfection

Y Zhang, P Sun, L Zhang, Z Wang… - Advanced functional …, 2019 - Wiley Online Library
The fabrication of functional nanoplatforms for combating multidrug‐resistant bacteria is of
vital importance. Among them, silver nanoparticles (Ag NPs) have shown an antibacterial …

[HTML][HTML] One-pot assembly of gold nanoparticles in different dimensional MOFs with peroxidase-like activity for enhanced bacterial eradication

D Sun, F Mo, Y Zhou, J Lu, H Duan - Materials & Design, 2024 - Elsevier
Bacterially infected wounds are a hidden danger to human health, and the elimination of
invasive wound bacteria is critical for proper wound healing. Nanozymes with peroxidase …

Copper-based polymer-metal–organic framework embedded with Ag nanoparticles: Long-acting and intelligent antibacterial activity and accelerated wound healing

C Guo, F Cheng, G Liang, S Zhang, Q Jia, L He… - Chemical Engineering …, 2022 - Elsevier
Herein, we provided a novel copper-based polymer-metal–organic framework (polyCu-
MOF) as an efficient scaffold for loading silver nanoparticles (denoted as polyCu-MOF …

Ultrafine silver nanoparticles embedded in cyclodextrin metal‐organic frameworks with GRGDS functionalization to promote antibacterial and wound healing …

S Shakya, Y He, X Ren, T Guo, A Maharjan, T Luo… - Small, 2019 - Wiley Online Library
The challenge of bacterial infection increases the risk of mortality and morbidity in acute and
chronic wound healing. Silver nanoparticles (Ag NPs) are a promising new version of …

Reactive organic radical-doped Ag (I)-based coordination compounds for highly efficient antibacterial wound therapy

F Hu, S Xia, Y He, Z Huang, H Ke, JZ Liao - Colloids and Surfaces B …, 2022 - Elsevier
Antibiotics, being critical antimicrobial agents, have been widely used for treating bacterial
infections. However, prolonged use of antibiotics can induce drug resistance resulting in …

Metal-organic framework-modulated Fe3O4 composite au nanoparticles for antibacterial wound healing via synergistic peroxidase-like nanozymatic catalysis

C Liu, X Zhao, Z Wang, Y Zhao, R Li, X Chen… - Journal of …, 2023 - Springer
Bacterial wound infections are a serious threat due to the emergence of antibiotic resistance.
Herein, we report an innovative hybrid nanozyme independent of antibiotics for antimicrobial …

A silver-functionalized metal–organic framework with effective antibacterial activity

YM Wu, PC Zhao, B Jia, Z Li, S Yuan… - New Journal of Chemistry, 2022 - pubs.rsc.org
Ag nanoparticles have attracted wide research interest due to their broad spectrum of
antimicrobial activities. However, Ag nanoparticles are prone to aggregate, which decreases …

Constructing multifunctional Cu single-atom nanozyme for synergistic nanocatalytic therapy-mediated multidrug-resistant bacteria infected wound healing

X Qiu, L Zhuang, J Yuan, H Wang, X Dong, S He… - Journal of Colloid and …, 2023 - Elsevier
Developing an effective strategy to combat multi-drug-resistant (MDR) bacteria and promote
wound healing without overuse of antibiotics remains an important and challenging goal …