Characterization of blaOXA-48-carrying plasmids and small non-AMR-coding plasmids collected from Ukrainian patients

van Almsick, Vincent F.; Sobkowiak, Annika; Scherff, Natalie; Schuler, Franziska; Mellmann, Alexander; Schwierzeck, Vera

Research article (journal) | Peer reviewed

Abstract

PURPOSE - METHODS - RESULTS - CONCLUSION; Carbapenemase-producing Enterobacterales (CPE) pose a serious threat for healthcare facilities worldwide, yet the mode of transmission is often unclear. Recently, we recorded an increase of blaOXA-48-harboring isolates at our hospital associated with patients with previous medical treatment in the Ukraine. We used long-read whole genome sequencing (lrWGS) to characterize these isolates including their plasmids.; Samples were collected as part of clinical routine diagnostic or screening of multi-drug resistance bacteria (MDRB). Antimicrobial susceptibility testing was performed and all MDRB (n = 10) were sequenced by lrWGS for genotyping, identification of antimicrobial resistance (AMR) genes, and characterization of plasmids.; While routine analysis of core genome multilocus sequence typing (cgMLST) did not show any genetic similarities between isolates, we found an unexpected high similarity in the plasmid diversity of different Enterobacterales in patients with previous medical treatment in the Ukraine. This included an IncL/M plasmid carrying blaOXA-48 and additional small non-AMR-coding plasmids.; Our results show that lrWGS can be used in the routine setting to uncover similarities in plasmids and may give further information about potential epidemiologic associations. In the future, analysis of both AMR and non-AMR plasmids may provide an additional layer of information for molecular surveillance of CPE.

Details about the publication

JournalInfection
Volume52
Page range661null
StatusPublished
Release year2023 (29/11/2023)
Language in which the publication is writtenEnglish
DOI10.1007/s15010-023-02136-2
KeywordsLong-read whole genome sequencing; Multi-drug resistance bacteria; Antimicrobial resistance; bla(OXA-48); Plasmids

Authors from the University of Münster

Mellmann, Alexander
Institute of Hygiene
Schuler, Franziska Dorothee
Institute of Medical Microbiology
Schwierzeck, Vera
Institute of Hygiene