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Antibacterial Activity and Mechanism of Action of the Silver Ion in <i>Staphylococcus aureus</i> and <i>Escherichia coli</i>

Applied and Environmental Microbiology · 2008 · Vol. 74(7) · pp. 2171–2178
Woo Kyung JungHye Cheong KooKi Woo KimSook ShinKim YsYong Ho Park

Abstract

The antibacterial effect and mechanism of action of a silver ion solution that was electrically generated were investigated for Staphylococcus aureus and Escherichia coli by analyzing the growth, morphology, and ultrastructure of the bacterial cells following treatment with the silver ion solution. Bacteria were exposed to the silver ion solution for various lengths of time, and the antibacterial effect of the solution was tested using the conventional plate count method and flow cytometric (FC) analysis. Reductions of more than 5 log(10) CFU/ml of both S. aureus and E. coli bacteria were confirmed after 90 min of treatment with the silver ion solution. Significant reduction of S. aureus and E. coli cells was also observed by FC analysis; however, the reduction rate determined by FC analysis was less than that determined by the conventional plate count method. These differences may be attributed to the presence of bacteria in an active but nonculturable (ABNC) state after treatment with the silver ion solution. Transmission electron microscopy showed considerable changes in the bacterial cell membranes upon silver ion treatment, which might be the cause or consequence of cell death. In conclusion, the results of the present study suggest that silver ions may cause S. aureus and E. coli bacteria to reach an ABNC state and eventually die.

Nanoparticles: synthesis and applicationsBiosensors and Analytical DetectionBacterial biofilms and quorum sensingEscherichia coliStaphylococcus aureusBacteriaMicrobiologyAntibacterial activityChemistryTransmission electron microscopySilver nanoparticleBacterial cell structureIon

MeSH terms

Anti-Bacterial AgentsCell MembraneDNA, BacterialEscherichia coliSilverSilver NitrateStaphylococcus aureusMicroscopy, Electron, Transmission

Funding

  • Seoul National University
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Antibacterial Activity and Mechanism of Action of the Silver Ion in <i>Staphylococcus aureus</i> and <i>Escherichia coli</i> · Scinovex