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Real-time detection of volatile metabolites enabling species-level discrimination of bacterial biofilms associated with wound infection

Slade, Elisabeth; Thorn, Robin; Young, Amber; Reynolds, Darren

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Authors

Elisabeth Slade

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

Amber Young



Abstract

Aims: The main aim of this study was to investigate the real-time detection of volatile metabolites for the species-level discrimination of pathogens associated with clinically relevant wound infection, when grown in a collagen wound biofilm model. Methods and Results: This work shows that Staphylococcus aureus, Pseudomonas aeruginosa and Streptococcus pyogenes produce a multitude of volatile compounds when grown as biofilms in a collagen-based biofilm model. The real-time detection of these complex volatile profiles using selected ion flow tube mass spectrometry and the use of multivariate statistical analysis on the resulting data can be used to successfully differentiate between the pathogens studied. Conclusions: The range of bacterial volatile compounds detected between the species studied vary and are distinct. Discrimination between bacterial species using real-time detection of volatile metabolites and multivariate statistical analysis was successfully demonstrated. Significance and Impact of the Study: Development of rapid point-of-care diagnostics for wound infection would improve diagnosis and patient care. Such technological approaches would also facilitate the appropriate use of antimicrobials, minimizing the emergence of antimicrobial resistance. This study further develops the use of volatile metabolite detection as a new diagnostic approach for wound infection.

Citation

Slade, E., Thorn, R., Young, A., & Reynolds, D. (2022). Real-time detection of volatile metabolites enabling species-level discrimination of bacterial biofilms associated with wound infection. Journal of Applied Microbiology, 132(3), 1558-1572. https://doi.org/10.1111/jam.15313

Journal Article Type Article
Acceptance Date Sep 13, 2021
Online Publication Date Oct 7, 2021
Publication Date 2022-03
Deposit Date Oct 4, 2021
Publicly Available Date Mar 18, 2022
Journal Journal of Applied Microbiology
Print ISSN 1364-5072
Electronic ISSN 1365-2672
Publisher Wiley
Peer Reviewed Peer Reviewed
Volume 132
Issue 3
Pages 1558-1572
DOI https://doi.org/10.1111/jam.15313
Public URL https://uwe-repository.worktribe.com/output/7899089

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