4.6 Article

Graphene Matrices as Carriers for Metal Ions against Antibiotic Susceptible and Resistant Bacterial Pathogens

期刊

COATINGS
卷 11, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/coatings11030352

关键词

metal ions; graphene; antibiotic resistance; foams; biomaterials

资金

  1. Health Research Accelerator Award courtesy of the University of Manchester

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This study evaluated the antimicrobial efficacy of ionic metals in combination with graphene matrices and found that ionic gold, palladium, and platinum demonstrated the greatest antimicrobial activity against both susceptible and resistant bacterial strains. The use of graphene foam as a carrier could potentially promote antimicrobial activity, provide sustained release, and reduce resistance acquisition.
Due to the ever-increasing burden of antimicrobial-resistant (AMR) bacteria, the development of novel antimicrobial agents and biomaterials to act as carriers and/or potentiate antimicrobial activity is essential. This study assessed the antimicrobial efficacy of the following ionic metals, silver, gold, palladium, platinum, zinc, and gallium alone and in combination with graphene matrices (which were coated via a drop casting coating method). The graphene foam was utilized as a carrier for the ionic metals against both, antibiotic susceptible and resistant bacterial strains of Acinetobacter baumannii, Staphylococcus aureus, Klebsiella pneumoniae and Pseudomonas aeruginosa. Ionic gold, palladium and platinum demonstrated the greatest antimicrobial activity against the susceptible and resistant strains. Scanning electron microscopy (SEM) visualized cellular ultrastructure damage, when the bacteria were incubated upon the graphene foam alone. This study suggests that specific metal ions applied in combination with graphene foam could present a potential therapeutic option to treat AMR bacterial infections. The application of the graphene foam as a potential carrier could promote antimicrobial activity, provide a sustained release approach and reduce possible resistance acquisition. In light of this study, the graphene foam and ionic metal combinations could potentially be further developed as part of a wound dressing.

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