Comparative evaluation of disc diffusion and Liofilchem™ MTS strip methods with broth microdilution for cefepime/enmetazobactam susceptibility testing.

IF 3.9 2区 医学 Q1 INFECTIOUS DISEASES
Cécile Emeraud, Hippolyte De Swardt, Sandrine Bernabeu, Lena Latour, Alice Pages, Sarah Ronsin, Rémy A Bonnin, Laurent Dortet
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引用次数: 0

Abstract

Background: Cefepime/enmetazobactam is a newly approved β-lactam/β-lactamase inhibitor combination with promising activity against MDR Gram-negative Enterobacterales, particularly ESBL- and OXA-48-producing isolates. Reliable susceptibility testing methods are essential to guide its clinical use.

Objectives: To evaluate the performance of two commercial cefepime/enmetazobactam susceptibility testing methods, disc diffusion and Liofilchem™ MTS gradient strips, using broth microdilution (BMD) as the gold standard.

Methods: A total of 291 carbapenem-resistant Enterobacterales isolates, including 194 carbapenemase producers, were included. Susceptibility testing was performed using BMD, disc diffusion and Liofilchem™ MTS strips. Results were interpreted following EUCAST and FDA 2025 breakpoints. Essential agreement (EA) and bias were calculated for gradient strip methods according to the ISO 20776-2021 guideline, whereas categorical agreement (CA), very major errors (VMEs) and major errors (MEs) were determined for disc diffusion according to the ISO 20776-2:2007 guideline.

Results: The disc diffusion method demonstrated high CA (93.8% EUCAST, 95.9% FDA). VME rates exceeded acceptable thresholds using EUCAST breakpoints (20.8%) but were within limits for FDA (1.9%). Liofilchem™ MTS strips achieved 88.3% (95% CI: 84.1%-91.5%) EA and a bias of -8.9%. Both methods accurately detected susceptibility in OXA-48-producing isolates but showed limitations for isolates close to the MIC breakpoints.

Conclusions: Disc diffusion and Liofilchem™ MTS strips represent reliable alternatives to BMD for routine cefepime/enmetazobactam testing.

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来源期刊
CiteScore
9.20
自引率
5.80%
发文量
423
审稿时长
2-4 weeks
期刊介绍: The Journal publishes articles that further knowledge and advance the science and application of antimicrobial chemotherapy with antibiotics and antifungal, antiviral and antiprotozoal agents. The Journal publishes primarily in human medicine, and articles in veterinary medicine likely to have an impact on global health.
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