Role of the multi-drug efflux systems on the baseline susceptibility to ceftazidime/avibactam and ceftolozane/tazobactam in clinical isolates of non-carbapenemase-producing carbapenem-resistant Pseudomonas aeruginosa
Journal
Frontiers in Pharmacology
ISSN
1663-9812
Date Issued
2022
Author(s)
María José Contreras-Gómez
José R. W. Martinez
Juan A. Ugalde
Aniela Wozniak
Patricia García
Jorge Olivares-Pacheco
Type
Resource Types::text::journal::journal article
URL Institutional Repository
Abstract
<jats:p>Carbapenem-resistant <jats:italic>Pseudomonas aeruginosa</jats:italic> (CRPA) is one of the pathogens that urgently needs new drugs and new alternatives for its control. The primary strategy to combat this bacterium is combining treatments of beta-lactam with a beta-lactamase inhibitor. The most used combinations against <jats:italic>P. aeruginosa</jats:italic> are ceftazidime/avibactam (CZA) and ceftolozane/tazobactam (C/T). Although mechanisms leading to CZA and C/T resistance have already been described, among which are the resistance-nodulation-division (RND) efflux pumps, the role that these extrusion systems may play in CZA, and C/T baseline susceptibility of clinical isolates remains unknown. For this purpose, 161 isolates of non-carbapenemase-producing (Non-CP) CRPA were selected, and susceptibility tests to CZA and C/T were performed in the presence and absence of the RND efflux pumps inhibitor, Phenylalanine-arginine β-naphthylamide (PAβN). In the absence of PAβN, C/T showed markedly higher activity against Non-CP-CRPA isolates than observed for CZA. These results were even more evident in isolates classified as extremely-drug resistant (XDR) or with difficult-to-treat resistance (DTR), where CZA decreased its activity up to 55.2% and 20.0%, respectively, whereas C/T did it up to 82.8% (XDR), and 73.3% (DTR). The presence of PAβN showed an increase in both CZA (37.6%) and C/T (44.6%) activity, and 25.5% of Non-CP-CRPA isolates increased their susceptibility to these two combined antibiotics. However, statistical analysis showed that only the C/T susceptibility of Non-CP-CRPA isolates was significantly increased. Although the contribution of RND activity to CZA and C/T baseline susceptibility was generally low (two-fold decrease of minimal inhibitory concentrations [MIC]), a more evident contribution was observed in a non-minor proportion of the Non-CP-CRPA isolates affected by PAβN [CZA: 25.4% (15/59); C/T: 30% (21/70)]. These isolates presented significantly higher MIC values for C/T. Therefore, we conclude that RND efflux pumps are participating in the phenomenon of baseline susceptibility to CZA and, even more, to C/T. However, the genomic diversity of clinical isolates is so great that deeper analyzes are necessary to determine which elements are directly involved in this phenomenon.</jats:p>
Cite this document
Contreras-Gómez, M. J., Martinez, J. R. W., Rivas, L., Riquelme-Neira, R., Ugalde, J. A., Wozniak, A., García, P., Munita, J. M., Olivares-Pacheco, J., & Alcalde-Rico, M. (2022). Role of the multi-drug efflux systems on the baseline susceptibility to ceftazidime/avibactam and ceftolozane/tazobactam in clinical isolates of non-carbapenemase-producing carbapenem-resistant Pseudomonas aeruginosa. Frontiers in Pharmacology, 13, 1007162. https://doi.org/10.3389/fphar.2022.1007162
Subjects
baseline susceptibility
;
carbapenem resistant pseudomonas aeruginosa
;
cefotolozane/tazobactam
;
ceftazidime/avibactam
;
rnd efflux pump
;
2 naphthylamine
;
amikacin
;
arginine
;
avibactam plus ceftazidime
;
aztreonam
;
beta lactam
;
cefepime
;
ceftazidime
;
ceftolozane plus tazobactam
;
ciprofloxacin
;
gentamicin
;
imipenem
;
meropenem
;
phenylalanine
;
piperacillin plus tazobactam
;
antibiotic sensitivity
;
article
;
broth dilution
;
carbapenem resistance
;
carbapenem resistant pseudomonas aeruginosa
;
controlled study
;
disk diffusion
;
effusion
;
mic50
;
mic90
;
multiplex polymerase chain reaction
;
nonhuman
;
phenotype