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A European multicenter evaluation study to investigate the performance on commercially available selective agar plates for the detection of carbapenemase producing Enterobacteriaceae

Zugehörigkeit
National Institute for Public Health and the Environment, Antonie van Leeuwenhoeklaan 9, Bilthoven, Netherlands
Dierikx, Cindy;
Zugehörigkeit
National Veterinary Institute (SVA), Uppsala, Sweden
Börjesson, Stefan;
Zugehörigkeit
French Agency for Food, Environmental and Occupational Health & Safety, Fougères Laboratory, 10B rue Claude Bourgelat, Javené CS 40608 35306 Fougères Cedex, France
Perrin-Guyomard, Agnès;
Zugehörigkeit
French Agency for Food, Environmental and Occupational Health & Safety, Fougères Laboratory, 10B rue Claude Bourgelat, Javené CS 40608 35306 Fougères Cedex, France
Haenni, Marisa;
Zugehörigkeit
Norwegian Veterinary Institute, P.O. Box 64, Ås, Norway
Norström, Madelaine;
Zugehörigkeit
Norwegian Veterinary Institute, P.O. Box 64, Ås, Norway
Divon, Hege H.;
Zugehörigkeit
Norwegian Veterinary Institute, P.O. Box 64, Ås, Norway
Ilag, Hanna Karin;
Zugehörigkeit
French Agency for Food, Environmental and Occupational Health & Safety, Fougères Laboratory, 10B rue Claude Bourgelat, Javené CS 40608 35306 Fougères Cedex, France
Granier, Sophie A.;
Zugehörigkeit
Statens Serums Institut, Artillerivej 5, Copenhagen S, Denmark
Hammerum, Annette;
Zugehörigkeit
Technical University of Denmark, DTU Fødevareinstituttet, Kemitorvet, Bygning 202, Kgs Lyngby, Denmark
Kjeldgaard, Jette Sejer;
Zugehörigkeit
German Federal Institute for Risk Assessment (BfR), Department 4 Biological Safety, Unit 43 Epidemiology, Zoonoses and Antimicrobial Resistance, Berlin, Germany
Pauly, Natalie;
Zugehörigkeit
Animal and Plant Health Agency, Woodham Ln, Addlestone, United Kingdom
Randall, Luke;
Zugehörigkeit
Animal and Plant Health Agency, Woodham Ln, Addlestone, United Kingdom
Anjum, Muna F.;
Zugehörigkeit
National Veterinary Research Institute, 57 Partyzantów Avenue, PUŁAWY, Poland
Smialowska, Aleksandra;
Zugehörigkeit
Istituto Zooprofilattico Sperimentale del Lazio e della Toscana M. Aleandri, via Appia Nuova, Roma, Italy
Franco, Alessia;
Zugehörigkeit
Wageningen Bioveterinary Research, P.O. Box 65, Lelystad, Netherlands
Veldman, Kees;
Zugehörigkeit
Norwegian Veterinary Institute, P.O. Box 64, Ås, Norway
Slettemeås, Jannice Schau

The European Food Safety Authority (EFSA) advised to prioritize monitoring carbapenemase producing Enterobacteriaceae (CPE) in food producing animals. Therefore, this study evaluated the performance of different commercially available selective agars for the detection of CPE using spiked pig caecal and turkey meat samples and the proposed EFSA cultivation protocol. Eleven laboratories from nine countries received eight samples (four caecal and four meat samples). For each matrix, three samples contained approximately 100 CFU/g CPE, and one sample lacked CPE. After overnight enrichment in buffered peptone water, broths were spread upon Brilliance™ CRE Agar (1), CHROMID® CARBA (2), CHROMagar™ mSuperCARBA™ (3), Chromatic™ CRE (4), CHROMID® OXA-48 (5) and Chromatic™ OXA-48 (6). From plates with suspected growth, one to three colonies were selected for species identification, confirmation of carbapenem resistance and detection of carbapenemase encoding genes, by methods available at participating laboratories. Of the eleven participating laboratories, seven reported species identification, susceptibility tests and genotyping on isolates from all selective agar plates. Agars 2, 4 and 5 performed best, with 100% sensitivity. For agar 3, a sensitivity of 96% was recorded, while agar 1 and 6 performed with 75% and 43% sensitivity, respectively. More background flora was noticed for turkey meat samples than pig caecal samples. Based on this limited set of samples, most commercially available agars performed adequately. The results indicate, however, that OXA-48-like and non-OXA-48-like producers perform very differently, and one should consider which CPE strains are of interest to culture when choosing agar type.

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