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A novel in vitro flat-bed perfusion biofilm model for determining the potential antimicrobial efficacy of topical wound treatments

Thorn, Robin; Greenman, J.

Authors

Dr Robin Thorn Robin2.Thorn@uwe.ac.uk
Director of Research and Enterprise



Abstract

Aims: To develop an in vitro flat-bed perfusion biofilm model that could be used to determine the antimicrobial efficacy of topically applied treatments. Methods and Results: Pseudomonas aeruginosa and Staphylococcus aureus biofilms were grown within continuously perfused cellulose matrices. Enumeration of the biofilm density and eluate was performed at various sampling times, enabling determination of the biofilm growth rate. Two antimicrobial wound dressings were applied to the surface of mature biofilms and periodically sampled. To enable real-time imaging of biofilm growth and potential antimicrobial kinetics, a bioluminescent Ps. aeruginosa biofilm was monitored using low-light photometry. Target species produced reproducible steady-state biofilms at a density of c. 107 per biofilm support matrix, after 24-h perfusion. Test dressings elicited significant antimicrobial effects, producing differing kill kinetic profiles. There was a good correlation between photon and viable count data. Conclusions: The model enables determination of the antimicrobial profile of topically applied treatments against target species biofilms, accurately differentiating bactericidal from bacteriostatic effects. Moreover, these effects could be monitored in real time using bioluminescence. Significance and Impact of the Study: This is the first in vitro biofilm model which can assess the antimicrobial potential of topical therapies in a dynamic growth environment. © 2009 The Society for Applied Microbiology.

Citation

Thorn, R., & Greenman, J. (2009). A novel in vitro flat-bed perfusion biofilm model for determining the potential antimicrobial efficacy of topical wound treatments. Journal of Applied Microbiology, 107(6), 2070-2079. https://doi.org/10.1111/j.1365-2672.2009.04398.x

Journal Article Type Article
Publication Date Dec 1, 2009
Journal Journal of Applied Microbiology
Print ISSN 1364-5072
Electronic ISSN 1365-2672
Publisher Wiley
Peer Reviewed Peer Reviewed
Volume 107
Issue 6
Pages 2070-2079
DOI https://doi.org/10.1111/j.1365-2672.2009.04398.x
Keywords biofilm, bioluminescence, perfusion, specific growth rate, topical wound treatments
Public URL https://uwe-repository.worktribe.com/output/1006013
Publisher URL http://dx.doi.org/10.1111/j.1365-2672.2009.04398.x