Author:
Steppert Isabel,Schönfelder Jessy,Schultz Carolyn,Kuhlmeier Dirk
Abstract
AbstractRapid screening of infected people plays a crucial role in interrupting infection chains. However, the current methods for identification of bacteria are very tedious and labor intense. Fast on-site screening for pathogens based on volatile organic compounds (VOCs) by ion mobility spectrometry (IMS) could help to differentiate between healthy and potentially infected subjects. As a first step towards this, the feasibility of differentiating between seven different bacteria including resistant strains was assessed using IMS coupled to multicapillary columns (MCC-IMS). The headspace above bacterial cultures was directly drawn and analyzed by MCC-IMS after 90 min of incubation. A cluster analysis software and statistical methods were applied to select discriminative VOC clusters. As a result, 63 VOC clusters were identified, enabling the differentiation between all investigated bacterial strains using canonical discriminant analysis. These 63 clusters were reduced to 7 discriminative VOC clusters by constructing a hierarchical classification tree. Using this tree, all bacteria including resistant strains could be classified with an AUC of 1.0 by receiver-operating characteristic analysis. In conclusion, MCC-IMS is able to differentiate the tested bacterial species, even the non-resistant and their corresponding resistant strains, based on VOC patterns after 90 min of cultivation. Although this result is very promising, in vivo studies need to be performed to investigate if this technology is able to also classify clinical samples. With a short analysis time of 5 min, MCC-IMS is quite attractive for a rapid screening for possible infections in various locations from hospitals to airports.Key Points• Differentiation of bacteria by MCC-IMS is shown after 90-min cultivation.• Non-resistant and resistant strains can be distinguished.• Classification of bacteria is possible based on metabolic features.
Publisher
Springer Science and Business Media LLC
Subject
Applied Microbiology and Biotechnology,General Medicine,Biotechnology
Reference40 articles.
1. Becher G, Purkhart R, Viertel B, Graupner R (2012) Device and method for analyzing volatile organic compounds in gaseous samples. DE201110106717;WO2012IB01924 G01N33/497
2. Becher G, Purkhart R, Raessler T, Schueler W, Steppert C (2016) An alternative method to the infection detection for differentiation of 3 and 4 MRGN germs by use of GC IMS. Eur Respir J 48:OA4993
3. Boots AW, Smolinska A, van Berkel JJBN, Fijten RRR, Stobberingh EE, Boumans MLL, Moonen EJ, Wouters EFM, Dallinga JW, van Schooten FJ (2014) Identification of microorganisms based on headspace analysis of volatile organic compounds by gas chromatography-mass spectrometry. J Breath Res 8:27106
4. Cumeras R, Figueras E, Davis CE, Baumbach JI, Gràcia I (2015) Review on ion mobility spectrometry. Part 1: current instrumentation. Analyst 140:1376–1390
5. Drees C, Vautz W, Liedtke S, Rosin C, Althoff K, Lippmann M, Zimmermann S, Legler TJ, Yildiz D, Perl T, Kunze-Szikszay N (2019) GC-IMS headspace analyses allow early recognition of bacterial growth and rapid pathogen differentiation in standard blood cultures. Appl Microbiol Biotechnol 103:9091–9101
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