Revisit of fluoroquinolone and azithromycin susceptibility breakpoints for Salmonella enterica serovar Typhi
Surojit Das1, Ujjwayini Ray2, Shanta Dutta1
1Microbiology Division, National Institute of Cholera and Enteric Diseases, Kolkata, West Bengal, India.
Abstract:
In recent years, increase in occurrence of fluoroquinolone (FQ)-resistant S almonella Typhi isolates has caused considerable inconvenience in selecting appropriate antimicrobials for treatment of typhoid. The World Health Organization (WHO) recommends azithromycin for the empirical treatment option of uncomplicated typhoid. The CLSI updated the breakpoints of disc diffusion (DD) and MIC results of FQs and azithromycin for Salmonella Typhi in 2015, but DD breakpoints of ofloxacin and levofloxacin were not included. In this study, the inhibition zone diameters and MICs of nalidixic acid, ciprofloxacin, ofloxacin, levofloxacin and azithromycin were determined in Salmonella Typhi Kolkata isolates (n =146) over a 16-year period (1998 to 2013) and the data were compared with the available CLSI breakpoints. Very major error and major error (ME) of FQs were not observed in the study isolates, but the minor error of ciprofloxacin (15.8 %) and ME of azithromycin (3.5 %) exceeded the acceptable limit. A positive correlation between MICs of FQ and mutations in the quinolone-resistance-determining region (QRDR) showed the reliability of MIC results to determine FQ susceptibility of Salmonella Typhi (n =74). Isolates showing decreased ciprofloxacin susceptibility (MIC 0.125-0.5 µg ml-1) were likely to have at least one mutation in the QRDR region. The results on DD breakpoints of ofloxacin (resistant, ≤15 mm; intermediate, 16-24 mm, and susceptible, ≥25 mm) and levofloxacin (resistant, ≤18 mm; intermediate, 19-27 mm, and susceptible, ≥28 mm) corroborated those of earlier studies. In view of the emerging FQ- and azithromycin-resistant Salmonella Typhi isolates, DD and MIC breakpoints of those antimicrobials should be revisited routinely.
Insights
Fluoroquinolone resistance in Salmonella Typhi is increasing, complicating typhoid treatment. Azithromycin is recommended, but this study found minor errors with ciprofloxacin and major errors with azithromycin, necessitating breakpoint revisions.
Area of Science:
- Microbiology
- Infectious Diseases
- Pharmacology
Background:
- Increasing fluoroquinolone (FQ)-resistant Salmonella Typhi isolates complicate typhoid fever treatment.
- Azithromycin is the WHO-recommended empirical treatment for uncomplicated typhoid.
- Previous CLSI breakpoints for FQs and azithromycin were updated in 2015, but lacked specific data for ofloxacin and levofloxacin disc diffusion.
Purpose of the Study:
- To determine the inhibition zone diameters and MICs of nalidixic acid, ciprofloxacin, ofloxacin, levofloxacin, and azithromycin for Salmonella Typhi isolates.
- To compare these results with available CLSI breakpoints.
- To assess the reliability of MIC results for FQ susceptibility and investigate QRDR mutations.
Main Methods:
- Antimicrobial susceptibility testing (disc diffusion and MIC) was performed on 146 Salmonella Typhi isolates from Kolkata (1998-2013).
- Comparison of inhibition zone diameters and MIC values against CLSI breakpoints.
- Analysis of quinolone-resistance-determining region (QRDR) mutations in 74 isolates.
Main Results:
- Minor errors for ciprofloxacin (15.8%) and major errors for azithromycin (3.5%) exceeded acceptable limits.
- A positive correlation was observed between FQ MICs and QRDR mutations, confirming MIC reliability.
- Decreased ciprofloxacin susceptibility (MIC 0.125-0.5 µg/mL) correlated with QRDR mutations.
Conclusions:
- The study highlights discrepancies in current antimicrobial susceptibility testing breakpoints for FQs and azithromycin against Salmonella Typhi.
- Emerging resistance necessitates routine re-evaluation of disc diffusion and MIC breakpoints for these critical antimicrobial agents.
- Updated breakpoints are crucial for accurate diagnosis and effective treatment of typhoid fever.
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