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Reduced Chlorhexidine Susceptibility Is Associated with Tetracycline Resistance tet Genes in Clinical Isolates of Escherichia coli.
Royer, Guilhem; Ortiz de la Rosa, Jose-Manuel; Vuillemin, Xavier; Lacombe, Béatrice; Chau, Françoise; Clermont, Olivier; Mercier-Darty, Mélanie; Decousser, Jean-Winoc; Ricard, Jean-Damien; Nordmann, Patrice; Denamur, Erick; Poirel, Laurent.
Afiliação
  • Royer G; Université de Paris, IAME, UMR 1137, INSERM, Paris, France.
  • Ortiz de la Rosa JM; LABGeM, Génomique Métabolique, Genoscope, Institut François Jacob, CEA, CNRS, Université Paris-Saclay, Evry, France.
  • Vuillemin X; APHP, Département de Prévention, Diagnostic et Traitement des Infections, Hôpital Henri Mondor, Créteil, France.
  • Lacombe B; Swiss National Reference Center for Emerging Antibiotic Resistance (NARA), University of Fribourggrid.8534.a, Fribourg, Switzerland.
  • Chau F; Swiss National Reference Center for Emerging Antibiotic Resistance (NARA), University of Fribourggrid.8534.a, Fribourg, Switzerland.
  • Clermont O; Université de Paris, IAME, UMR 1137, INSERM, Paris, France.
  • Mercier-Darty M; APHP, Hôpital Louis Mourier, DMU ESPRIT, Service de Médecine Intensive Réanimation, Colombes, France.
  • Decousser JW; Service de Réanimation polyvalente, Hôpital du Scorff - Groupe Hospitalier Bretagne Sud, Lorient, France.
  • Ricard JD; Université de Paris, IAME, UMR 1137, INSERM, Paris, France.
  • Nordmann P; Université de Paris, IAME, UMR 1137, INSERM, Paris, France.
  • Denamur E; APHP, Département de Prévention, Diagnostic et Traitement des Infections, Hôpital Henri Mondor, Créteil, France.
  • Poirel L; APHP, Département de Prévention, Diagnostic et Traitement des Infections, Hôpital Henri Mondor, Créteil, France.
Antimicrob Agents Chemother ; 66(3): e0197221, 2022 03 15.
Article em En | MEDLINE | ID: mdl-35225650
Chlorhexidine is a widely used antiseptic in hospital and community health care. Decreased susceptibility to this compound has been recently described in Klebsiella pneumoniae and Pseudomonas aeruginosa, together with cross-resistance to colistin. Surprisingly, few data are available for Escherichia coli, the main species responsible for community and health care-associated infections. In order to decipher chlorhexidine resistance mechanisms in E. coli, we studied both in vitro derived and clinical isolates through whole-genome sequence analysis. Comparison of strains grown in vitro under chlorhexidine pressure identified mutations in the gene mlaA coding for a phospholipid transport system. Phenotypic analyses of single-gene mutants from the Keio collection confirmed the role of this mutation in the decreased susceptibility to chlorhexidine. However, mutations in mlaA were not found in isolates from large clinical collections. In contrast, genome wide association studies (GWAS) showed that, in clinical strains, chlorhexidine reduced susceptibility was associated with the presence of tetA genes of class B coding for efflux pumps and located in a Tn10 transposon. Construction of recombinant strains in E. coli K-12 confirmed the role of tetA determinant in acquired resistance to both chlorhexidine and tetracycline. Our results reveal that two different evolutionary paths lead to chlorhexidine decreased susceptibility: one restricted to in vitro evolution conditions and involving a retrograde phospholipid transport system; the other observed in clinical isolates associated with efflux pump TetA. None of these mechanisms provide cross-resistance to colistin. This work demonstrates the GWAS power to identify new resistance mechanisms in bacterial species.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Resistência a Tetraciclina / Escherichia coli Tipo de estudo: Risk_factors_studies Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Resistência a Tetraciclina / Escherichia coli Tipo de estudo: Risk_factors_studies Idioma: En Ano de publicação: 2022 Tipo de documento: Article