• Title of article

    Antibacterial Activity and Toxicity of Zinc Oxide Nanoparticles Combined with Supernatants of lt;i gt;Lactobacillus lt;/i gt; spp. Against ESKAPE Bacteria: A Novel Mixture

  • Author/Authors

    Soleymanzadeh Moghadam ، Somayeh Department of Microbiology - Faculty of Advanced Science and Technology - Islamic Azad University , Hosseini Doust ، Reza Department of Microbiology - Faculty of Advanced Science and Technology - Islamic Azad University , Majidpour ، Ali Antimicrobial Resistance Research Center, Institute of Immunology and Infectious Diseases - Iran University of Medical Sciences , Adabi ، Mahdi Department of Medical Nanotechnology - School of Advanced Technologies in Medicine - Tehran University of Medical Sciences , Minaeian ، Sara Antimicrobial Resistance Research Center, Institute of Immunology and Infectious Diseases - Iran University of Medical Sciences

  • From page
    1
  • To page
    11
  • Abstract
    Background: The emergence of multidrug resistance among nosocomial pathogens has prompted researchers to look for new antibacterial sources. Metal nanoparticles and probiotic products have attracted the attention of researchers. However, combination therapy is an attractive alternative in this field. Objectives: This study evaluated the antibacterial activity and toxicity of Zinc Oxide nanoparticles (ZnO-NPs) combined with cell-free supernatant (CFS) of Lactobacillus plantarumand Lactobacillus acidophilusalone and in a novel mixture. Methods: Antibacterial effects and cytotoxic properties of ZnO-NPs, CFS of L. plantarum(SLP), and CFS of L. acidophilus(SLA) were determined alone and in a mixture against ESKAPE strains. In addition, the viability percentage of the cells was evaluated after exposure to these agents. Results: Antibacterial mixtures (ZnO-NPs with SLP or ZnO-NPs with SLA) demonstrated synergistic and additive effects against Pseudomonas aeruginosa (FIC≤0.75), Acinetobacter baumannii (FIC = 1), and Escherichia coli (FIC≤0.75). The viability percentage of the cells after 24 h of exposure to a mixture of ZnO-NPs and SLA (about 50%) was more than when the cells were exposed to ZnO-NPs alone (about 30%) at the same concentration. Conclusions: A mixture of ZnO-NPs and CFS of probiotics can be an alternative to antibiotics, with more effectiveness and fewer side effects.
  • Keywords
    Lactobacillus acidophilus , ESKAPE Pathogens , Lactobacillus plantarum , Zinc Oxide Nanoparticles
  • Journal title
    Iranian Journal of Pharmaceutical Research(IJPR)
  • Journal title
    Iranian Journal of Pharmaceutical Research(IJPR)
  • Record number

    2763330