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Prevention of nosocomial transmission and biofilm formation on novel biocompatible antimicrobial gloves impregnated with biosynthesized silver nanoparticles synthesized using Eucalyptus citriodora leaf extract
Authors:Supakit Paosen  Sakkarin Lethongkam  Suttiwan Wunnoo  Nussana Lehman  Ekwipoo Kalkornsurapranee  Abdi Wira Septama  Supayang Piyawan Voravuthikunchai
Affiliation:1. Division of Biological Science, Faculty of Science I Center of Antimicrobial Biomaterial Innovation-Southeast Asia, Prince of Songkla University, Songkhla, Thailand;2. Division of Physical Science, Faculty of Science, Prince of Songkla University, Songkhla, Thailand;3. Research Center for Chemistry, Kawasan Puspitek Serpong, Indonesian Institute of Sciences, Tangerang Selatan, Indonesia
Abstract:Failure in the prevention of cross-transmission from contaminated gloves has been recognized as an important factor that contributes to the spread of several healthcare-associated infections. Ex situ coating process with silver nanoparticles (AgNPs) using Eucalyptus citriodora ethanolic leaf extract as reducing and capping agents to coat glove surfaces has been developed to prevent this mode of transmission. Elemental analysis of coated gloves showed 24.8 Wt% silver densely adhere on the surface. The coated gloves fully eradicated important hospital-acquired pathogens including Gram-positive bacteria, Gram-negative bacteria, and yeasts within 1 h. The coated gloves showed significant reduction, an average of five logs when tested against all standard strains and most clinical isolates (< 0.01). Following prolonged exposure, the coating significantly reduced the numbers of most adhered pathogenic species, compared with uncoated gloves (p < 0.0001). AgNPs-coated gloves reduced microbial adhesion of mixed-species biofilms. A series of contamination and transmission assays demonstrated no transmission of viable organisms. Biocompatibility analysis confirmed high viability of HaCaT and L929 cells at all concentrations of AgNPs tested. The coated gloves were non-toxic with direct contact with L929 cells. The highly efficacious AgNPs-coated gloves potentially provide additional protection against transmission of healthcare-associated infections.
Keywords:cytotoxicity  Eucalyptus citriodora  gloves  healthcare-associated infections  silver nanoparticles
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