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Recurrent Campylobacter jejuni Infections with In Vivo Selection of Resistance to Macrolides and Carbapenems: Molecular Characterization of Resistance Determinants

We present two independent cases of recurrent multidrug-resistant Campylobacter jejuni infection in immunocompromised hosts and the clinical challenges encountered due to the development of high-level carbapenem resistance. The mechanisms associated with this unusual resistance for Campylobacters we...

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Autores principales: Nunes, Alexandra, Oleastro, Mónica, Alves, Frederico, Liassine, Nadia, Lowe, David M., Benejat, Lucie, Ducounau, Astrid, Jehanne, Quentin, Borges, Vítor, Gomes, João Paulo, Godbole, Gauri, Philippe, Lehours
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10434052/
https://www.ncbi.nlm.nih.gov/pubmed/37358443
http://dx.doi.org/10.1128/spectrum.01070-23
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author Nunes, Alexandra
Oleastro, Mónica
Alves, Frederico
Liassine, Nadia
Lowe, David M.
Benejat, Lucie
Ducounau, Astrid
Jehanne, Quentin
Borges, Vítor
Gomes, João Paulo
Godbole, Gauri
Philippe, Lehours
author_facet Nunes, Alexandra
Oleastro, Mónica
Alves, Frederico
Liassine, Nadia
Lowe, David M.
Benejat, Lucie
Ducounau, Astrid
Jehanne, Quentin
Borges, Vítor
Gomes, João Paulo
Godbole, Gauri
Philippe, Lehours
author_sort Nunes, Alexandra
collection PubMed
description We present two independent cases of recurrent multidrug-resistant Campylobacter jejuni infection in immunocompromised hosts and the clinical challenges encountered due to the development of high-level carbapenem resistance. The mechanisms associated with this unusual resistance for Campylobacters were characterized. Initial macrolide and carbapenem-susceptible strains acquired resistance to erythromycin (MIC > 256mg/L), ertapenem (MIC > 32mg/L), and meropenem (MIC > 32mg/L) during treatment. Carbapenem-resistant isolates developed an in-frame insertion resulting in an extra Asp residue in the major outer membrane protein PorA, within the extracellular loop L3 that connects β-strands 5 and 6 and forms a constriction zone involved in Ca(2+) binding. The isolates presenting the highest MIC to ertapenem exhibited an extra nonsynonymous mutation (G167A|Gly56Asp) at PorA’s extracellular loop L1. IMPORTANCE Carbapenem susceptibility patterns suggest drug impermeability, related to either insertion and/or single nucleotide polymorphism (SNP) within porA. Similar molecular events occurring in two independent cases support the association of these mechanisms with carbapenem resistance in Campylobacter spp.
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spelling pubmed-104340522023-08-18 Recurrent Campylobacter jejuni Infections with In Vivo Selection of Resistance to Macrolides and Carbapenems: Molecular Characterization of Resistance Determinants Nunes, Alexandra Oleastro, Mónica Alves, Frederico Liassine, Nadia Lowe, David M. Benejat, Lucie Ducounau, Astrid Jehanne, Quentin Borges, Vítor Gomes, João Paulo Godbole, Gauri Philippe, Lehours Microbiol Spectr Research Article We present two independent cases of recurrent multidrug-resistant Campylobacter jejuni infection in immunocompromised hosts and the clinical challenges encountered due to the development of high-level carbapenem resistance. The mechanisms associated with this unusual resistance for Campylobacters were characterized. Initial macrolide and carbapenem-susceptible strains acquired resistance to erythromycin (MIC > 256mg/L), ertapenem (MIC > 32mg/L), and meropenem (MIC > 32mg/L) during treatment. Carbapenem-resistant isolates developed an in-frame insertion resulting in an extra Asp residue in the major outer membrane protein PorA, within the extracellular loop L3 that connects β-strands 5 and 6 and forms a constriction zone involved in Ca(2+) binding. The isolates presenting the highest MIC to ertapenem exhibited an extra nonsynonymous mutation (G167A|Gly56Asp) at PorA’s extracellular loop L1. IMPORTANCE Carbapenem susceptibility patterns suggest drug impermeability, related to either insertion and/or single nucleotide polymorphism (SNP) within porA. Similar molecular events occurring in two independent cases support the association of these mechanisms with carbapenem resistance in Campylobacter spp. American Society for Microbiology 2023-06-26 /pmc/articles/PMC10434052/ /pubmed/37358443 http://dx.doi.org/10.1128/spectrum.01070-23 Text en Copyright © 2023 Nunes et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Nunes, Alexandra
Oleastro, Mónica
Alves, Frederico
Liassine, Nadia
Lowe, David M.
Benejat, Lucie
Ducounau, Astrid
Jehanne, Quentin
Borges, Vítor
Gomes, João Paulo
Godbole, Gauri
Philippe, Lehours
Recurrent Campylobacter jejuni Infections with In Vivo Selection of Resistance to Macrolides and Carbapenems: Molecular Characterization of Resistance Determinants
title Recurrent Campylobacter jejuni Infections with In Vivo Selection of Resistance to Macrolides and Carbapenems: Molecular Characterization of Resistance Determinants
title_full Recurrent Campylobacter jejuni Infections with In Vivo Selection of Resistance to Macrolides and Carbapenems: Molecular Characterization of Resistance Determinants
title_fullStr Recurrent Campylobacter jejuni Infections with In Vivo Selection of Resistance to Macrolides and Carbapenems: Molecular Characterization of Resistance Determinants
title_full_unstemmed Recurrent Campylobacter jejuni Infections with In Vivo Selection of Resistance to Macrolides and Carbapenems: Molecular Characterization of Resistance Determinants
title_short Recurrent Campylobacter jejuni Infections with In Vivo Selection of Resistance to Macrolides and Carbapenems: Molecular Characterization of Resistance Determinants
title_sort recurrent campylobacter jejuni infections with in vivo selection of resistance to macrolides and carbapenems: molecular characterization of resistance determinants
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10434052/
https://www.ncbi.nlm.nih.gov/pubmed/37358443
http://dx.doi.org/10.1128/spectrum.01070-23
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