François-Xavier Weill
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Articles (13)
Genomic analysis of Shigella isolates from Lebanon reveals marked genetic diversity and antimicrobial resistance
In this study, we characterized 54 clinical isolates of Shigella collected in North Lebanon between 2009 and 2017 through phenotypic and genomic analyses. The most prevalent serogroup was S. sonnei, accounting for 46.3 % (25/54) of the isolates, followed by S. flexneri (27.8 %, 15/54), S. boydii (18.5 %, 10/54) and S. dysenteriae (7.4 %, 4/54). Only three isolates were pan-susceptible, and 87 % (47/54) of the isolates had multidrug resistance phenotypes. Notably, 27.8 % (15/54) of the isolates were resistant to third-generation cephalosporins (3GCs) and 77.8 % (42/54) were resistant to nalidixic acid. 3GC resistance was mediated by the extended-spectrum beta-lactamase genes bla CTX-M-15 and bla CTX-M-3 , which were present on various plasmids. Quinolone resistance was conferred by single point mutations in the gyrA DNA gyrase gene, leading to GyrA S83L, GyrA D87Y or GyrA S83A amino acid substitutions. This is the first study, to our knowledge, to provide genomic insights into the serotypes of Shigella circulating in Lebanon and the various antimicrobial resistance determinants carried by these strains.
Year:
2023
Collaborators (7)
Rene S. Hendriksen
Technical University of Denmark
Maria Pardos de la Gandara
Clinical Associate Professor
Universidad de Zaragoza
Kerry Pettigrew
Teesside University
Eva Heinz
Senior Lecturer in Disease Genomics
Liverpool School of Tropical Medicine
Yaovi Mahuton Gildas Hounmanou
Københavns Universitet
Pieter Meysman
University of Antwerp
Marie Anne Chattaway
Head of Salmonella Services
UK Health Security Agency

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