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Research ArticleResearch

Cold Plasma Technology: Bactericidal Effects on Geobacillus Stearothermophilus and Bacillus Cereus Microorganisms

Angela D. Morris, Gayle B. McCombs, Tamer Akan, Wayne Hynes, Mounir Laroussi and Susan L. Tolle
American Dental Hygienists' Association March 2009, 83 (2) 55-61;
Angela D. Morris
RDH, MS
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Gayle B. McCombs
RDH, MS
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Tamer Akan
PhD
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Wayne Hynes
PhD
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Mounir Laroussi
PhD
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Susan L. Tolle
RDH, MS
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Abstract

Introduction: Cold plasma, also known as Low Temperature Atmospheric Pressure Plasma (LTAPP) is a novel technology consisting of neutral and charged particles, including free radicals, which can be used to destroy or inactivate microorganisms. Research has been conducted regarding the effect of cold plasma on gram-positive bacteria; however, there is limited research regarding its ability to inactivate the spore-formers Geobacillus stearothermophilus and Bacillus cereus.

Purpose: The purpose of this study was to determine if cold plasma inactivates G. stearothermophilus and B. cereus vegetative cells and spores.

Methods: Nine hundred eighty-one samples were included in this study (762 experimental and 219 controls). Experimental samples were exposed indirectly or directly to cold plasma, before plating and incubating for 16 hours. Control samples were not exposed to cold plasma. The percentage-kill and cell number reductions were calculated from Colony Forming Units (CFU). Data were statistically analyzed at the .05 level using one-way ANOVA, Kruskal Wallis and Tukey's tests.

Results: There was a statistically significant difference in the inactivation of G. stearothermophilus vegetative cells receiving indirect and direct exposure (p=0.0001 and p=0.0013, respectively), as well as for B. cereus vegetative cells and spores (p=0.0001 for direct and indirect). There was no statistically significant difference in the inactivation of G. stearothermophilus spores receiving indirect exposure (p=0.7208) or direct exposure (p=0.0835).

Conclusion: Results demonstrate that cold plasma exposure effectively kills G. stearothermophilus vegetative cells and B. cereus vegetative cells and spores; however, G. stearothermophilus spores were not significantly inactivated.

  • Cold plasma
  • Low Temperature Atmospheric Pressure Plasma (LTAPP)
  • bacteria
  • spores
  • sterilization
  • Copyright © 2009 The American Dental Hygienists' Association
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American Dental Hygienists Association: 83 (2)
American Dental Hygienists' Association
Vol. 83, Issue 2
Spring 2009
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Cold Plasma Technology: Bactericidal Effects on Geobacillus Stearothermophilus and Bacillus Cereus Microorganisms
Angela D. Morris, Gayle B. McCombs, Tamer Akan, Wayne Hynes, Mounir Laroussi, Susan L. Tolle
American Dental Hygienists' Association Mar 2009, 83 (2) 55-61;

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Cold Plasma Technology: Bactericidal Effects on Geobacillus Stearothermophilus and Bacillus Cereus Microorganisms
Angela D. Morris, Gayle B. McCombs, Tamer Akan, Wayne Hynes, Mounir Laroussi, Susan L. Tolle
American Dental Hygienists' Association Mar 2009, 83 (2) 55-61;
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Keywords

  • Cold plasma
  • Low Temperature Atmospheric Pressure Plasma (LTAPP)
  • bacteria
  • spores
  • sterilization

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