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Comparison of Diagnostic Tests for Fosfomycin Resistance Detection in Clinically Significant Enterobacterales

  • Santoshi Maruti Naik
  • , Biranthabail Dhanashree*
  • , Himani Kotian
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Multidrug resistance in Enterobacterales has triggered interest in old antibiotics like fosfomycin. Various methods to determine fosfomycin resistance are time-consuming and yield unpredictable results. Hence, the study was undertaken to compare the rapid fosfomycin NP test with the recommended agar dilution test and few other tests. In this cross-sectional, time-bound, prospective study, Enterobacterales (N = 110) were tested for their susceptibility to commonly used antibiotics by Kirby Bauer disc diffusion method. Susceptibility to fosfomycin was tested by agar dilution method, Vitek 2 system, rapid fosfomycin NP test and gene detection by PCR. The results of different tests were compared with fosfomycin MIC by agar dilution test. Of the 110 Enterobacterales, sixty (54.5%) were resistant to fosfomycin by agar dilution and Vitek-2, of which twenty-three were extended spectrum betalactamase producers. The Vitek-2 system showed 100% sensitivity, specificity, positive and negative predictive values when compared with agar dilution method. The accuracy of rapid NP test and PCR for fos A gene were 81.8 and 91.1% respectively. fos A genemediated resistance was found to be common in Enterobacterales. Although the NP test is cost effective and rapid its interpretation is subjective, making it less accurate. Since antimicrobial susceptibility testing is crucial in clinical microbiology laboratories, the NP test cannot be used to detect fosfomycin resistance due to its false-positive nature. The findings of the study prompt us to use agar dilution or Vitek-2 system for detecting fosfomycin resistance in Enterobacterales.

Original languageEnglish
Pages (from-to)706-715
Number of pages10
JournalOnLine Journal of Biological Sciences
Volume25
Issue number3
DOIs
Publication statusPublished - 2025

All Science Journal Classification (ASJC) codes

  • General Biochemistry,Genetics and Molecular Biology
  • General Agricultural and Biological Sciences

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