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Published on: January 22, 2021
Cefiderocol activity is compromised by acquired extended-spectrum oxacillinases in Pseudomonas aeruginosa
Xavier Vuillemin1, Maëlle Da Silva2, Maxime Bour2
1Laboratoire de Bactériologie, Centre Hospitalier Universitaire de Besançon, Besançon, France; Laboratoire Associé au Centre National de Référence de la Résistance aux Antibiotiques, Centre Hospitalier Universitaire de Besançon, Besançon, France; Chrono-environnement, Université Bourgogne-Franche Comté, Besançon, France.
Objectives:
Cefiderocol has an excellent in vitro activity on clinical strains of Pseudomonas aeruginosa (P. aeruginosa). However, the resistance of some isolates has been associated with the production of some β-lactamases. Whether some acquired extended-spectrum oxacillinases (ES-OXA) common in this species may compromise the susceptibility of P. aeruginosa to cefiderocol has not been evaluated so far.
Methods:
Eighteen genes encoding OXA belonging to the major subgroups identified in P. aeruginosa OXA-1 (n = 3); - 2 (n = 5); - 10 (n = 8), and - 46 (n = 2) were cloned into pUCP24 shuttle vector and transferred into reference strain PAO1.
Results:
Although production of the OXA-1 subgroup enzymes did not alter cefiderocol MICs, the β-lactamases of OXA-2, OXA-46, and four variants of the OXA-10 subgroup resulted in an 8-fold to 32-fold decrease in susceptibility in the PAO1 background. Interestingly, point mutations Ala149Pro and Asp150Gly in OXA-2 subgroup, Trp154Cys and Gly157Asp in OXA-10 subgroup (all located in the Ω loop), and the duplication of a Thr206 and a Gly207 in the β5-β6 loop of OXA-10 subgroup were related to decreased susceptibility to cefiderocol. We also showed that some ES-OXA, including the most frequent ES-OXA in P. aeruginosa strains, OXA-19 (derived from OXA-10 subgroup), significantly compromised activity of cefiderocol in addition to ceftazidime, ceftolozane/tazobactam, and ceftazidime/avibactam in clinical strains.
Conclusion:
This work shows that several ES-OXA have a significant effect on cefiderocol susceptibility. Of concern are the Trp154Cys and Gly157Asp mutations that occur in some of these β-lactamases, as they are associated with a decreased activity of the most recent cephalosporins introduced to combat P. aeruginosa infections.
Insights
Certain extended-spectrum oxacillinases (ES-OXA) in Pseudomonas aeruginosa reduce susceptibility to cefiderocol. Specific mutations in these beta-lactamases are linked to decreased activity of newer cephalosporins.
Area of Science:
- Microbiology
- Antimicrobial Resistance
- Enzyme Kinetics
Background:
- Cefiderocol demonstrates potent in vitro activity against Pseudomonas aeruginosa.
- However, beta-lactamase production can confer resistance in some P. aeruginosa isolates.
- The impact of acquired extended-spectrum oxacillinases (ES-OXA) on cefiderocol susceptibility remains unevaluated.
Purpose of the Study:
- To investigate whether common ES-OXA enzymes in P. aeruginosa compromise susceptibility to cefiderocol.
- To identify specific ES-OXA variants and mutations associated with reduced cefiderocol activity.
Main Methods:
- Cloned eighteen OXA genes from major P. aeruginosa subgroups into a pUCP24 shuttle vector.
- Transformed the reference strain PAO1 with the cloned OXA genes.
- Evaluated cefiderocol minimum inhibitory concentrations (MICs) in the resulting transformants.
Main Results:
- OXA-2, OXA-46, and certain OXA-10 subgroup enzymes significantly decreased cefiderocol susceptibility (8- to 32-fold reduction).
- Specific mutations within the Ω loop (e.g., Ala149Pro, Asp150Gly in OXA-2; Trp154Cys, Gly157Asp in OXA-10) and β5-β6 loop were associated with reduced susceptibility.
- The common ES-OXA, OXA-19, compromised cefiderocol activity in clinical strains, alongside other cephalosporins.
Conclusions:
- Several ES-OXA enzymes significantly impact cefiderocol susceptibility in P. aeruginosa.
- Mutations like Trp154Cys and Gly157Asp in ES-OXA are concerning due to their association with reduced activity of newer cephalosporins against P. aeruginosa.
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