Effect of negative air ions on the potential for bacterial contamination of plastic medical equipment
<p>Abstract</p> <p>Background</p> <p>In recent years there has been renewed interest in the use of air ionizers to control the spread of infection in hospitals and a number of researchers have investigated the biocidal action of ions in both air and nitrogen. By compari...
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doaj-2b580d54675347c6b1881ccc7acfda1a2020-11-25T01:59:20ZengBMCBMC Infectious Diseases1471-23342010-04-011019210.1186/1471-2334-10-92Effect of negative air ions on the potential for bacterial contamination of plastic medical equipmentKerr Kevin GSmith Caroline FBeggs Clive BShepherd Simon JNoakes Catherine JSleigh P Andrew<p>Abstract</p> <p>Background</p> <p>In recent years there has been renewed interest in the use of air ionizers to control the spread of infection in hospitals and a number of researchers have investigated the biocidal action of ions in both air and nitrogen. By comparison, the physical action of air ions on bacterial dissemination and deposition has largely been ignored. However, there is clinical evidence that air ions might play an important role in preventing the transmission of <it>Acinetobacter </it>infection. Although the reasons for this are unclear, it is hypothesized that a physical effect may be responsible: the production of air ions may negatively charge items of plastic medical equipment so that they repel, rather than attract, airborne bacteria. By negatively charging both particles in the air and items of plastic equipment, the ionizers minimize electrostatic deposition on these items. In so doing they may help to interrupt the transmission <it>of Acinetobacter </it>infection in certain healthcare settings such as intensive care units.</p> <p>Methods</p> <p>A study was undertaken in a mechanically ventilated room under ambient conditions to accurately measure changes in surface potential exhibited by items of plastic medical equipment in the presence of negative air ions. Plastic items were suspended on nylon threads, either in free space or in contact with a table surface, and exposed to negative ions produced by an air ionizer. The charge build-up on the specimens was measured using an electric field mill while the ion concentration in the room air was recorded using a portable ion counter.</p> <p>Results</p> <p>The results of the study demonstrated that common items of equipment such as ventilator tubes rapidly developed a large negative charge (i.e. generally >-100V) in the presence of a negative air ionizer. While most items of equipment tested behaved in a similar manner to this, one item, a box from a urological collection and monitoring system (the only item made from styrene acrylonitrile), did however develop a positive charge in the presence of the ionizer.</p> <p>Conclusion</p> <p>The findings of the study suggest that the action of negative air ionizers significantly alters the electrostatic landscape of the clinical environment, and that this has the potential to cause any <it>Acinetobacter</it>-bearing particles in the air to be strongly repelled from some plastic surfaces and attracted to others. In so doing, this may prevent critical items of equipment from becoming contaminated with the bacterium.</p> http://www.biomedcentral.com/1471-2334/10/92 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kerr Kevin G Smith Caroline F Beggs Clive B Shepherd Simon J Noakes Catherine J Sleigh P Andrew |
spellingShingle |
Kerr Kevin G Smith Caroline F Beggs Clive B Shepherd Simon J Noakes Catherine J Sleigh P Andrew Effect of negative air ions on the potential for bacterial contamination of plastic medical equipment BMC Infectious Diseases |
author_facet |
Kerr Kevin G Smith Caroline F Beggs Clive B Shepherd Simon J Noakes Catherine J Sleigh P Andrew |
author_sort |
Kerr Kevin G |
title |
Effect of negative air ions on the potential for bacterial contamination of plastic medical equipment |
title_short |
Effect of negative air ions on the potential for bacterial contamination of plastic medical equipment |
title_full |
Effect of negative air ions on the potential for bacterial contamination of plastic medical equipment |
title_fullStr |
Effect of negative air ions on the potential for bacterial contamination of plastic medical equipment |
title_full_unstemmed |
Effect of negative air ions on the potential for bacterial contamination of plastic medical equipment |
title_sort |
effect of negative air ions on the potential for bacterial contamination of plastic medical equipment |
publisher |
BMC |
series |
BMC Infectious Diseases |
issn |
1471-2334 |
publishDate |
2010-04-01 |
description |
<p>Abstract</p> <p>Background</p> <p>In recent years there has been renewed interest in the use of air ionizers to control the spread of infection in hospitals and a number of researchers have investigated the biocidal action of ions in both air and nitrogen. By comparison, the physical action of air ions on bacterial dissemination and deposition has largely been ignored. However, there is clinical evidence that air ions might play an important role in preventing the transmission of <it>Acinetobacter </it>infection. Although the reasons for this are unclear, it is hypothesized that a physical effect may be responsible: the production of air ions may negatively charge items of plastic medical equipment so that they repel, rather than attract, airborne bacteria. By negatively charging both particles in the air and items of plastic equipment, the ionizers minimize electrostatic deposition on these items. In so doing they may help to interrupt the transmission <it>of Acinetobacter </it>infection in certain healthcare settings such as intensive care units.</p> <p>Methods</p> <p>A study was undertaken in a mechanically ventilated room under ambient conditions to accurately measure changes in surface potential exhibited by items of plastic medical equipment in the presence of negative air ions. Plastic items were suspended on nylon threads, either in free space or in contact with a table surface, and exposed to negative ions produced by an air ionizer. The charge build-up on the specimens was measured using an electric field mill while the ion concentration in the room air was recorded using a portable ion counter.</p> <p>Results</p> <p>The results of the study demonstrated that common items of equipment such as ventilator tubes rapidly developed a large negative charge (i.e. generally >-100V) in the presence of a negative air ionizer. While most items of equipment tested behaved in a similar manner to this, one item, a box from a urological collection and monitoring system (the only item made from styrene acrylonitrile), did however develop a positive charge in the presence of the ionizer.</p> <p>Conclusion</p> <p>The findings of the study suggest that the action of negative air ionizers significantly alters the electrostatic landscape of the clinical environment, and that this has the potential to cause any <it>Acinetobacter</it>-bearing particles in the air to be strongly repelled from some plastic surfaces and attracted to others. In so doing, this may prevent critical items of equipment from becoming contaminated with the bacterium.</p> |
url |
http://www.biomedcentral.com/1471-2334/10/92 |
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