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Self-activated hydrogel cascade reactor integrated with glucose oxidase and silver nanoparticle for enhanced treatment of bacterial infection. | LitMetric

Self-activated hydrogel cascade reactor integrated with glucose oxidase and silver nanoparticle for enhanced treatment of bacterial infection.

Int J Biol Macromol

Jiangxi Provincial Key Laboratory of Natural and Biomimetic Drugs Research, College of Chemistry and Materials, Jiangxi Normal University, Nanchang 330022, PR China. Electronic address:

Published: October 2024

AI Article Synopsis

  • Silver nanoparticles (AgNPs) are recognized for their potential as nanozymes due to their peroxidase-like activity, which can help combat bacterial resistance and mitigate risks like argyria.
  • A new self-activated hydrogel cascade reactor (AUGP) has been developed to improve bacterial infection treatment by integrating glucose oxidase (GOx) with polyacrylamide (pAAm) hydrogel microspheres, allowing for a controlled acidic environment to enhance AgNP activity.
  • This system generates hydroxyl radicals (•OH) without needing external hydrogen peroxide, with the combined effects of Ag and •OH providing strong antibacterial properties while minimizing toxicity and eliminating residual AgNPs to avoid argyria risk.

Article Abstract

The recognition of silver nanoparticles (AgNPs) as a nanozyme with peroxidase-like activity has offered a promising solution to address the challenges of bacterial resistance and argyria risk. However, the catalytic efficacy of AgNPs is limited by the need for a strong acidic environment and high concentrations of hydrogen peroxide (HO). In this work, we developed a self-activated hydrogel cascade reactor (AUGP) for enhanced treatment of bacterial infection. The AUGP integrates the properties of glucose oxidase (GOx) and polyacrylamide (pAAm) hydrogel microsphere. The confinement effect of pAAm hydrogel microsphere enables glucose oxidation to occur in a confined space, which creates an acidic environment to activate AgNPs activity, initiating the cascade reaction between GOx and AgNPs. Meanwhile, the confinement effect facilitates the accumulation of a high local concentration of HO, allowing AUGP to generate hydroxyl radicals (•OH) without the need for external HO. Additionally, the release of Ag from AUGP is achieved upon the generation of •OH. The synergistic action of Ag and •OH confers exceptional antibacterial efficacy to AUGP. Importantly, the etching effect of HO ensures the absence of any residual AgNPs, reducing the risk of argyria. In vivo studies validated the efficacy of AUGP in wound disinfection with minimal toxicity.

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Source
http://dx.doi.org/10.1016/j.ijbiomac.2024.134081DOI Listing

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