Molecular analysis of metallo-beta-lactamase-producing Pseudomonas aeruginosa in Switzerland 2022–2023
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Published:2024-01-18
Issue:3
Volume:43
Page:551-557
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ISSN:0934-9723
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Container-title:European Journal of Clinical Microbiology & Infectious Diseases
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language:en
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Short-container-title:Eur J Clin Microbiol Infect Dis
Author:
Findlay JacquelineORCID, Raro Otavio Hallal Ferreira, Poirel Laurent, Nordmann Patrice, , Lienhard R., Vonallmen L., Schilt C., Scherler A., Lucke K., Jutzi M., Reichmuth M., Schibli U., Fricker C., Pranghofer S., Greub G., Blanc D., Vitale A., Lemaire B., Fatoux M., Tritten M., Rumebe L., Liassine N., Jost G., Wohlwend N., Schultze D., Burren K., Westers A., Imperiali M., Pozzi L., Balzari D., Vaninetti G., Cirillo C., Gaia V., Pianezzi E., Lucchini G. Martinetti, Menozzi F. Baggi, Jayol A., Guyon C., Hyden D., Maitrejean M., Deggi-Messmer V., Bandeira D., Fournier C., Pfister S., Nusbaumer C., Monnerat L. Bertaiola, Schrenzel J., Renzi G., Cherkaoui A., Andrey D., Emonet S., Eyer M., Maret R., Belo A., Mabillard D., Moraz M., Herzog K., Gisler V., Hitz E., Oberle M., Castelberg C., Fankhauser H., Graf S., Dubey N., Guler C., Schoenenberger M., Karrer U., Piran F., Andreutti C., Dessauges M., Schmid T., Suterbuser B., Mitrovic I., Gruner E., Bruderer V., Staehli P., Schnell B., Marti C. O., Steffen I., Imhof A., Preiswerk B., Dilorenzo V., Payen C., Boschung D., Comte L., Schacher M., Brandenberger M., Zowa C., Zehnder C., Mathis B., Basilico L., Togni G., Minkova P., Born Y., Kuegler M., Povolo V., Droz S., Elzi M., Casanova C., Goldenberger D., Keller P., Lang C., Blaich A., Schmid S., Ivan B., Egli A., Mancini S., Dubois O., Narr K., Schoch S., Ellenberger S., Seiffert S.
Abstract
Abstract
Objectives
The occurrence of metallo-beta-lactamase-producing Pseudomonas aeruginosa (MBL-PA) isolates is increasing globally, including in Switzerland. The aim of this study was to characterise, phenotypically and genotypically, the MBL-PA isolates submitted to the Swiss National Reference Center for Emerging Antibiotic Resistance (NARA) reference laboratory over a 12-month period from July 2022 to July 2023.
Methods
Thirty-nine non-duplicate MBL-PA Isolates were submitted to NARA over the study period from across Switzerland. Susceptibility was determined by broth microdilution according to EUCAST methodology. Whole-genome sequencing was performed on 34 isolates. Sequence types (STs) and resistance genes were ascertained using the Centre for Genomic Epidemiology platform. MBL genes, blaNDM-1, blaIMP-1, and blaVIM-2, were cloned into vector pUCP24 and transformed into P. aeruginosa PA14.
Results
The most prevalent MBL types identified in this study were VIM (21/39; 53.8%) followed by NDM (11/39; 28.2%), IMP (6/39; 15.4%), and a single isolate produced both VIM and NDM enzymes. WGS identified 13 different STs types among the 39 isolates. They all exhibited resistance to cephalosporins, carbapenems, and the beta-lactam-beta-lactamase inhibitor combinations, ceftolozane-tazobactam, ceftazidime-avibactam, imipenem-relebactam, and meropenem-vaborbactam, and 8 isolates were cefiderocol (FDC) resistant. Recombinant P. aeruginosa strains producing blaNDM-1, blaIMP-1, and blaVIM-2 exhibited FDC MICs of 16, 8, and 1 mg/L, respectively.
Conclusions
This study showed that the MBL-PA in Switzerland could be attributed to the wide dissemination of high-risk clones that accounted for most isolates in this study. Although FDC resistance was only found in 8 isolates, MBL carriage was shown to be a major contributor to this phenotype.
Funder
University of Fribourg
Publisher
Springer Science and Business Media LLC
Reference25 articles.
1. Tenover FC, Nicolau DP, Gill CM (2022) Carbapenemase-producing Pseudomonas aeruginosa - an emerging challenge. Emerg Microbes Infect 11(1):811–814. https://doi.org/10.1080/22221751.2022.2048972 2. Juan C, Peña C, Oliver A (2017) Host and Pathogen biomarkers for severe Pseudomonas aeruginosa infections. J Infect Dis 215(suppl_1):S44–S51. https://doi.org/10.1093/infdis/jiw299 3. Del Barrio-Tofiño E, López-Causapé C, Oliver A (2020) Pseudomonas aeruginosa epidemic high-risk clones and their association with horizontally-acquired β-lactamases: 2020 update. Int J Antimicrob Agents 56(6):106196. https://doi.org/10.1016/j.ijantimicag.2020.106196 4. Li H, Luo YF, Williams BJ, Blackwell TS, Xie CM (2012) Structure and function of OprD protein in Pseudomonas aeruginosa: from antibiotic resistance to novel therapies. Int J Med Microbiol 302(2):63–68. https://doi.org/10.1016/j.ijmm.2011.10.001 5. Horcajada JP, Montero M, Oliver A, Sorlí L, Luque S, Gómez-Zorrilla S, Benito N, Grau S (2019) Epidemiology and treatment of multidrug-resistant and extensively drug-resistant Pseudomonas aeruginosa infections. Clin Microbiol Rev 32(4):e00031–e00019. https://doi.org/10.1128/CMR.00031-19
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