Combined application of sub-toxic level of silver nanoparticles with low powers of 2450 MHz microwave radiation lead to kill Escherichia coli in a short time

  Objective(s): Electromagnetic radiations which have lethal effects on the living cells are currently also considered as a disinfective physical agent.   Materials and Methods: In this investigation, silver nanoparticles were applied to enhance the lethal action of low powers (100 and 180 W) of 245...

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Main Authors: Ahmad Reza Shahverdi, Bijan Zare, Jegatheesan Kalirajan, Eswarapriya Balu, Bardia Varastehmoradi, Reza Davoodi
Format: Article
Language:English
Published: Mashhad University of Medical Sciences 2013-09-01
Series:Nanomedicine Journal
Subjects:
Online Access:http://nmj.mums.ac.ir/?_action=showPDF&article=1699&_ob=6a7a9147abc188c6c7c352757e47b623&fileName=full_text.pdf
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spelling doaj-b34be0c201014001ab9b123f009b2b0d2020-11-24T23:43:33ZengMashhad University of Medical SciencesNanomedicine Journal2322-30492322-59042013-09-01126370Combined application of sub-toxic level of silver nanoparticles with low powers of 2450 MHz microwave radiation lead to kill Escherichia coli in a short timeAhmad Reza ShahverdiBijan ZareJegatheesan KalirajanEswarapriya BaluBardia VarastehmoradiReza Davoodi  Objective(s): Electromagnetic radiations which have lethal effects on the living cells are currently also considered as a disinfective physical agent.   Materials and Methods: In this investigation, silver nanoparticles were applied to enhance the lethal action of low powers (100 and 180 W) of 2450 MHZ electromagnetic radiation especially against Escherichia coli ATCC 8739. Silver nanoparticles were biologically prepared and used for next experiments. Sterile normal saline solution was prepared and supplemented by silver nanoparticles to reach the sub-inhibitory concentration (6.25 μg/mL). Such diluted silver colloid as well as free-silver nanoparticles solution was inoculated along with test microorganisms, particularly E. coli. These suspensions were separately treated by 2450 MHz electromagnetic radiation for different time intervals in a microwave oven operated at low powers (100 W and 180 W). The viable counts of bacteria before and after each radiation time were determined by colony-forming unit (CFU) method. Results: Results showed that the addition of silver nanoparticles significantly decreased the required radiation time to kill vegetative forms of microorganisms. However, these nanoparticles had no combined effect with low power electromagnetic radiation when used against Bacillus subtilis spores. Conclusion: The cumulative effect of silver nanoparticles and low powers electromagnetic radiation may be useful in medical centers to reduce contamination in polluted derange and liquid wastes materials and some devices. http://nmj.mums.ac.ir/?_action=showPDF&article=1699&_ob=6a7a9147abc188c6c7c352757e47b623&fileName=full_text.pdfElectromagnetic RadiationSilver nanoparticlesdisinfection processcombined effect *Corresponding
collection DOAJ
language English
format Article
sources DOAJ
author Ahmad Reza Shahverdi
Bijan Zare
Jegatheesan Kalirajan
Eswarapriya Balu
Bardia Varastehmoradi
Reza Davoodi
spellingShingle Ahmad Reza Shahverdi
Bijan Zare
Jegatheesan Kalirajan
Eswarapriya Balu
Bardia Varastehmoradi
Reza Davoodi
Combined application of sub-toxic level of silver nanoparticles with low powers of 2450 MHz microwave radiation lead to kill Escherichia coli in a short time
Nanomedicine Journal
Electromagnetic Radiation
Silver nanoparticles
disinfection process
combined effect *Corresponding
author_facet Ahmad Reza Shahverdi
Bijan Zare
Jegatheesan Kalirajan
Eswarapriya Balu
Bardia Varastehmoradi
Reza Davoodi
author_sort Ahmad Reza Shahverdi
title Combined application of sub-toxic level of silver nanoparticles with low powers of 2450 MHz microwave radiation lead to kill Escherichia coli in a short time
title_short Combined application of sub-toxic level of silver nanoparticles with low powers of 2450 MHz microwave radiation lead to kill Escherichia coli in a short time
title_full Combined application of sub-toxic level of silver nanoparticles with low powers of 2450 MHz microwave radiation lead to kill Escherichia coli in a short time
title_fullStr Combined application of sub-toxic level of silver nanoparticles with low powers of 2450 MHz microwave radiation lead to kill Escherichia coli in a short time
title_full_unstemmed Combined application of sub-toxic level of silver nanoparticles with low powers of 2450 MHz microwave radiation lead to kill Escherichia coli in a short time
title_sort combined application of sub-toxic level of silver nanoparticles with low powers of 2450 mhz microwave radiation lead to kill escherichia coli in a short time
publisher Mashhad University of Medical Sciences
series Nanomedicine Journal
issn 2322-3049
2322-5904
publishDate 2013-09-01
description   Objective(s): Electromagnetic radiations which have lethal effects on the living cells are currently also considered as a disinfective physical agent.   Materials and Methods: In this investigation, silver nanoparticles were applied to enhance the lethal action of low powers (100 and 180 W) of 2450 MHZ electromagnetic radiation especially against Escherichia coli ATCC 8739. Silver nanoparticles were biologically prepared and used for next experiments. Sterile normal saline solution was prepared and supplemented by silver nanoparticles to reach the sub-inhibitory concentration (6.25 μg/mL). Such diluted silver colloid as well as free-silver nanoparticles solution was inoculated along with test microorganisms, particularly E. coli. These suspensions were separately treated by 2450 MHz electromagnetic radiation for different time intervals in a microwave oven operated at low powers (100 W and 180 W). The viable counts of bacteria before and after each radiation time were determined by colony-forming unit (CFU) method. Results: Results showed that the addition of silver nanoparticles significantly decreased the required radiation time to kill vegetative forms of microorganisms. However, these nanoparticles had no combined effect with low power electromagnetic radiation when used against Bacillus subtilis spores. Conclusion: The cumulative effect of silver nanoparticles and low powers electromagnetic radiation may be useful in medical centers to reduce contamination in polluted derange and liquid wastes materials and some devices.
topic Electromagnetic Radiation
Silver nanoparticles
disinfection process
combined effect *Corresponding
url http://nmj.mums.ac.ir/?_action=showPDF&article=1699&_ob=6a7a9147abc188c6c7c352757e47b623&fileName=full_text.pdf
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