4.7 Article

Antibiofilm and Membrane-Damaging Potential of Cuprous Oxide Nanoparticles against Staphylococcus aureus with Reduced Susceptibility to Vancomycin

Journal

ANTIMICROBIAL AGENTS AND CHEMOTHERAPY
Volume 59, Issue 11, Pages 6882-6890

Publisher

AMER SOC MICROBIOLOGY
DOI: 10.1128/AAC.01440-15

Keywords

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Funding

  1. SGPGIMS [2013-30-IMP-EXP/177]
  2. Indian Council of Medical Research (ICMR), Government of India, New Delhi [80/675/10-ECD-I, 80/829/2003-ECD-I]
  3. CSIR, Government of India [CSIR JRF-09/590(0147)/2010-EMR-1]

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The antimicrobial effects of copper ions and salts are well known, but the effects of cuprous oxide nanoparticles (Cu2O-NPs) on staphylococcal biofilms have not yet been clearly revealed. The present study evaluated Cu2O-NPs for their antibacterial and antibiofilm activities against heterogeneous vancomycin-intermediate Staphylococcus aureus (hVISA) and vancomycin-intermediate S. aureus (VISA). Nanoscaled Cu2O, generated by solution phase technology, contained Cu2O octahedral nanoparticles. Field emission electron microscopy demonstrated particles with sizes ranging from 100 to 150 nm. Cu2O-NPs inhibited the growth of S. aureus and showed antibiofilm activity. The MICs and minimum biofilm inhibitory concentrations ranged from 625 mu g/ml to 5,000 mu g/ml and from 2,500 mu g/ml to 10,000 mu g/ml, respectively. Exposure of S. aureus to Cu2O-NPs caused leakage of the cellular constituents and increased uptake of ethidium bromide and propidium iodide. Exposure also caused a significant reduction in the overall vancomycin-BODIPY (dipyrromethene boron difluoride [4,4-difluoro-4-bora-3a, 4a-diaza-s-indacene]fluorescent dye) binding and a decrease in the viable cell count in the presence of 7.5% sodium chloride. Cu2O-NP toxicity assessment by hemolysis assay showed no cytotoxicity at 625 to 10,000 mu g/ml concentrations. The results suggest that Cu2O-NPs exert their action by disruption of the bacterial cell membrane and can be used as effective antistaphylococcal and antibiofilm agents in diverse medical devices.

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