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Delivery and quantification of hydrogen peroxide generated via cold atmospheric pressure plasma through biological material

Authors :
Bethany L. Patenall
George T. Williams
A.T.A. Jenkins
Sarah L. Allinson
Adam C. Sedgwick
Hollie Hathaway
Naing Tun Thet
Robert D. Short
Publication Year :
2019

Abstract

The ability of plasma-generated hydrogen peroxide (H 2O 2) to traverse bacterial biofilms and the subsequent fate of the generated H 2O 2 has been investigated. An in vitro model, comprising a nanoporous membrane impregnated with artificial wound fluid and biofilms of varying maturity was treated with a helium-driven, cold atmospheric pressure plasma (CAP) jet. The concentration of H 2O 2 generated below the biofilms was quantified. The results showed that the plasma-generated H 2O 2 interacted significantly with the biofilm, thus exhibiting a reduction in concentration across the underlying nanoporous membrane. Biofilm maturity exhibited a significant effect on the penetration depth of H 2O 2, suggesting that well established, multilayer biofilms are likely to offer a shielding effect with respect to cells located in the lower layers of the biofilm, thus rendering them less susceptible to plasma disinfection. This may prove clinically significant in the plasma treatment of chronic, deep tissue infections such as diabetic and venous leg ulcers. Our results are discussed in the context of plasma-biofilm interactions, with respect to the fate of the longer lived reactive species generated by CAP, such as H 2O 2

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....c67e2cfc6c883e5e0177b30be479065e
Full Text :
https://doi.org/10.1088/1361-6463/ab4539