Molecular mechanisms leading to ceftolozane/tazobactam resistance in clinical isolates of Pseudomonas aeruginosa from five Latin American countries

Mojica, Maria F.; De la Cadena, Elsa; Rios, Rafael; Carlos Garcia-Betancur, Juan; Diaz, Lorena; Reyes, Jinnethe; Hernandez-Gomez, Cristhian; Radice, Marcela; Gales, Ana C.; Castaneda Mendez, Paulo; Munita, Jose M.; Jose Pallares, Christian; Martinez, Jose R. W.; Virginia Villegas, Maria

Abstract

ObjectivesIdentify molecular mechanisms responsible for the in vitro non-susceptibility to ceftolozane/tazobactam (TOL) in a group of 158 clinical isolates of Pseudomonas aeruginosa from five Latin American countries collected before the introduction of TOL into the clinical practice. MethodsClinical isolates of P. aeruginosa (n = 504) were collected between January 2016 and October 2017 from 20 hospitals located in Argentina, Brazil, Chile, Colombia, and Mexico. Minimum inhibitory concentrations (MICs) to TOL were determined by standard broth microdilution and interpreted according to CLSI breakpoints. Initially, production of carbapenemases in TOL non-susceptible isolates was assessed by Rapidec (R) followed by qPCR to detect bla(KPC), bla(NDM-1), bla(VIM), and bla(IMP). Illumina (R) WGS was performed for isolates in which non-susceptibility to TOL was not mediated by carbapenemases. ResultsA total of 158 (31.3%) isolates were non-susceptible to TOL. In 74 (46.8%) of these isolates, non-susceptibility to TOL was explained by the production of at least one carbapenemase. WGS revealed that some isolates carried ESBLs, mutated bla(PDC) and ampD, associated with decreased susceptibility to TOL. ConclusionSubstitutions found in PDC and carbapenemase production were the most common presumed mechanisms of resistance to TOL detected in this study. This study shows that epidemiological surveillance is warranted to monitor the emergence of novel mechanisms of resistance to TOL that might compromise its clinical utility.

Más información

Título según WOS: Molecular mechanisms leading to ceftolozane/tazobactam resistance in clinical isolates of Pseudomonas aeruginosa from five Latin American countries
Título de la Revista: FRONTIERS IN MICROBIOLOGY
Volumen: 13
Editorial: Frontiers Media S. A.
Fecha de publicación: 2022
DOI:

10.3389/fmicb.2022.1035609

Notas: ISI