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Epidemiological cut-off value and antibiotic susceptibility test methods for azithromycin in a collection of multi-country invasive non-typhoidal Salmonella

  • Bieke Tack
    ,
  • Marie France Phoba
    ,
  • Phe Thong
    ,
  • Palpouguini Lompo
    ,
  • Charlien Hupko
    ,
  • Stefanie Desmet
  • Immunology and Transplantation
    ,
  • Prins Leopold Instituut voor Tropische Geneeskunde
    ,
  • National Institute for Biomedical Research
    ,
  • University Teaching Hospital of Kinshasa
    ,
  • Sihanouk Hospital Center of HOPE
    ,
  • IRSS/Clinical Research Unit of Nanoro
Research Output:
Contribution to journal
Article
Peer-review

Open access

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 1615-1623 (9 pages)

Journal (Volume, Issue Number)

Clinical Microbiology and Infection (Volume 28, Issue 12)

Publication milestones

  • Accepted/In press - 2022
  • Published - 12/2022

Publication status

Published - 12/2022

ISSN

1198-743X

Publication IDs

  • Scopus: 85138524564
  • PubMed: 35738320

Abstract

Objective: Azithromycin is an alternative to treat invasive non-typhoidal Salmonella (iNTS) infections. We determined its epidemiological cut-off (ECOFF) and compared azithromycin susceptibility testing methods for iNTS. Methods: We used EUCAST ECOFFinder to determine the minimum inhibitory concentrations (MIC; obtained by broth microdilution) ECOFF and corresponding disk zone diameters of 515 iNTS from blood cultures in Democratic Republic of Congo, Burkina Faso, Rwanda, and Cambodia. Transferable resistance mechanisms were determined by polymerase chain reaction. We compared azithromycin susceptibility testing by semi-automated broth microdilution (customized Sensititre panel; reference), agar dilution, gradient tests (bioMérieux, Liofilchem, HiMedia; read at 80% (MIC80%) and 100% inhibition (MIC100%)), and disk diffusion (Rosco, Oxoid, BD, Liofilchem) for 161 wild- and 198 non–wild-type iNTS. Results: Azithromycin MIC ECOFF was 16 mg/L corresponding to a 12 mm zone diameter; mphA was detected in 192/197 non–wild- and 0/47 wild-type iNTS. Categorical agreement was excellent (≥98%) for all methods. Essential agreement was very good for agar dilution (>90%) but moderate for gradient tests (MIC80%: 52% to 71% and MIC100%: 72% to 91%). Repeatability was good for all methods/brands. Interreader agreement was high for broth microdilution and agar dilution (all ≤1 twofold dilution difference) and disk diffusion (>96% ≤3 mm difference) but lower for gradient tests (MIC80% & MIC100%: 83% to 94% ≤1 twofold dilution difference). Discussion: Azithromycin ECOFF of iNTS was 16 mg/L, i.e. equal to Salmonella Typhi. Disk diffusion is an accurate, precise, and user-friendly alternative for agar dilution and broth microdilution. Reading gradient tests at 100% instead of 80% inhibition improved accuracy and precision.

Funding Details

The authors declare no competing interests. This work was funded by the Baillet-Latour fund. BT has a scholarship from Research foundation Flanders (FWO, 1153220N & 1153222N). JJ has received funding from the European Union's Horizon 2020 research and innovation programme under the Vacc-iNTS project, grant agreement No 815439. Salmonella isolates were collected in the blood culture surveillance, funded by the Belgian Directorate of Development Cooperation (DGD) through Framework Agreement between the Belgian DGD and the Institute of Tropical Medicine, Belgium. The surveillance activities in Burkina Faso were partially funded by Sysmex Europe GmbH. The full dataset is available at 10.6084/m9.figshare.19016075.
FundersFunding numbers
Institute of Tropical Medicine, Belgium
-
Sysmex Europe GmbH
-
Horizon 2020
815439

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