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New antimicrobial contact catalyst killing antibiotic resistant clinical and waterborne pathogens

  • Microbial growth on medical and technical devices is a big health issue, particularly when microorganisms aggregate to form biofilms. Moreover, the occurrence of antibiotic-resistant bacteria in the clinical environment is dramatically growing, making treatment of bacterial infections very challenging. In search of an alternative, we studied a novel antimicrobial surface coating based on microMicrobial growth on medical and technical devices is a big health issue, particularly when microorganisms aggregate to form biofilms. Moreover, the occurrence of antibiotic-resistant bacteria in the clinical environment is dramatically growing, making treatment of bacterial infections very challenging. In search of an alternative, we studied a novel antimicrobial surface coating based on micro galvanic elements formed by silver and ruthenium with surface catalytic properties. The antimicrobial coating efficiently inhibited the growth of the nosocomial pathogens Staphylococcus aureus, Staphylococcus epidermidis, Enterococcus faecalis and Enterococcus faecium as demonstrated by the growth inhibition on agar surface and in biofilms of antibiotic resistant clinical E. faecalis, E. faecium, and S. aureus isolates. It also strongly reduced the growth of Legionella in a drinking water pipeline and of Escherichia coli in urine. We postulate a mode of action of the antimicrobial material, which is independent of the release of silver ions. Thus, the novel antimicrobial coating could represent an alternative to combat microbial growth avoiding the toxic side effects of high levels of silver ions on eukaryotic cells.zeige mehrzeige weniger

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Metadaten
Dokumentart:Zeitschriftenartikel, wissenschaftlich
Review-Status:Begutachtet (reviewed)
Zitierlink: https://opus.hs-offenburg.de/9107
Bibliografische Angaben
Titel (Englisch):New antimicrobial contact catalyst killing antibiotic resistant clinical and waterborne pathogens
Verfasserangaben:Andrea Guridi, Ann-Kristin Diederich, Sandra Aguila-Arcos, Marina Garcia-Moreno, Ronja Blasi, Melanie BroszatStaff MemberORCiDGND, Wilhelm Schmieder, Emanuel Clauss-Lendzian, Türkân Sakinç-Güler, Ricardo Andrade, Itziar Alkorta, Carsten Meyer, Uwe Landau, Elisabeth Grohmann
Erscheinungsjahr:2015
Verlag:Elsevier
Erste Seite:1
Letzte Seite:11
Titel des übergeordneten Werkes (Englisch):Materials Science and Engineering: C
Jahrgang (Band):50
ISSN:0928-4931
DOI:https://doi.org/10.1016/j.msec.2015.01.080
Sprache:Englisch
Inhaltliche Informationen
Fakultäten / Einrichtungen:Veröffentlichungen außerhalb der Hochschulzeit
Freies Schlagwort / Tag:Antimicrobials; Disinfection; Drinking water; Legionella; Mechanism of action; Staphylococcus
Formale Angaben
Open-Access-Status: Closed 
Lizenz (Deutsch):License LogoUrheberrechtlich geschützt