• Title of article

    Effect of Benzalkonium Chloride on Biofilm of Bacteria Causing Nosocomial Infectionstions

  • Author/Authors

    Ebrahimi kahrizsangi ، Azizollah Department of Pathobiology - Faculty of Veterinary Medicine - Shahrekord University , Habibian Dehkordi ، Saied Department of Basic Sciences - Faculty of Veterinary Medicine - Shahrekord University , Shabanpur ، Ziba Department of Bacteriology - Faculty of Veterinary Medicine - Shahrekord University , Hakimi Alni ، Reza Department of Bacteriology - Faculty of Paraveterinary - Bu-Ali Sina University , Hemati ، Majid Department of Bacteriology - Faculty of Veterinary Medicine - Shahid Bahonar University of Kerman

  • From page
    14
  • To page
    20
  • Abstract
    Background and Objective: Biofilms are community of bacteria that attach to inanimate surfaces or living tissues via production of extracellular polymers and exopolysaccharide matrix. Microbial biofilms on various surfaces of the hospital environment are considered as a reservoir of infection spread. The present study aimed to evaluate the disinfecting effect of benzalkonium chloride on some bacterial isolates causing nosocomial infections. Methods: First, 13 isolates from four bacteria including Pseudomonas aeruginosa, Staphylococcus aureus, Acinetobacter and Enterobacter were obtained from Microbiology Laboratory of Al-Zahra Hospital in Isfahan, Iran. The samples were transferred to Microbiology Laboratory of Faculty of Veterinary Medicine of Shahrekord University for testing. Evaluation of biofilm formation and determination of minimum inhibitory concentration (MIC) of the disinfectant and effect of the disinfectant on planktonic growth and biofilm formation were performed. Results: All bacterial isolates (52 cases) produced biofilm. Mean MIC of benzalkonium chloride for P. aeruginosa, S. aureus, Enterobacter and Acinetobacter was 0.14, 0.2, 0.18, 0.17 g/ml, respectively. Planktonic growth of all four bacteria was inhibited at concentrations of 2MIC, MIC and 1/2MIC. Biofilm was not produced in MIC and 2MIC concentrations, and biofilm formation capability increased by reducing the concentration of benzalkonium chloride. Conclusion: The results show that the use of appropriate concentration of benzalkonium chloride can prevent the growth of different bacterial species, but sub-MIC dose of this disinfectant may stimulate biofilm formation.
  • Keywords
    Biofilm , Benzalkonium Chloride , Pseudomonas Aeruginosa , Staphylococcus Aureus , Enterobacter , Acinetobacter
  • Journal title
    Medical Laboratory Journal
  • Journal title
    Medical Laboratory Journal
  • Record number

    2506442