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  • Magnetic Nanoparticle Targe...
    Kim, Min-Ho; Yamayoshi, Itsukyo; Mathew, Steven; Lin, Hubert; Nayfach, Joseph; Simon, Scott I.

    Annals of biomedical engineering, 03/2013, Letnik: 41, Številka: 3
    Journal Article

    The incidence of wound infections that do not adequately respond to standard-of-care antimicrobial treatment has been increasing. To address this challenge, a novel antimicrobial magnetic thermotherapy platform has been developed in which a high-amplitude, high-frequency, alternating magnetic field is used to rapidly heat magnetic nanoparticles that are bound to Staphylococcus aureus ( S. aureus ). The antimicrobial efficacy of this platform was evaluated in the treatment of both an in vitro culture model of S. aureus biofilm and a mouse model of cutaneous S. aureus infection. We demonstrated that an antibody-targeted magnetic nanoparticle bound to S. aureus was effective at thermally inactivating S. aureus and achieving accelerated wound healing without causing tissue injury.