Tracking the Emergence of Azithromycin Resistance in Multiple Genotypes of Typhoidal Salmonella

Mohammad S I Sajib1,2, Arif M Tanmoy1,3, Yogesh Hooda1,4

  • 1Child Health Research Foundation, Dhaka, Bangladesh.

Mbio
|February 17, 2021
PubMed

Insights

Antimicrobial resistance in Salmonella Typhi and Paratyphi A is rising, with a key mutation conferring azithromycin resistance emerging around 2010. A new rapid test aids early detection to prevent untreatable infections.

Area of Science:

  • Microbiology
  • Genetics
  • Epidemiology

Background:

  • Rising antimicrobial resistance in Salmonella Typhi and Paratyphi A poses a threat of untreatable typhoid and paratyphoid infections.
  • Azithromycin resistance is a growing concern, as it is the last oral treatment option for extensively drug-resistant (XDR) typhoid.
  • The genetic basis for azithromycin resistance is a specific mutation (R717Q/L) in the AcrB efflux pump.

Purpose of the Study:

  • To investigate the emergence and spread of azithromycin-resistant (AzmR) Salmonella Typhi and Paratyphi A.
  • To confirm the genetic basis (AcrB-R717Q/L mutation) of azithromycin resistance in clinical isolates.
  • To develop a rapid, low-cost diagnostic tool for real-time detection of the AcrB-R717Q/L mutation.

Main Methods:

  • Genomic analysis of 56 AzmR Salmonella Typhi and Paratyphi A isolates from South Asia.
  • Bayesian analysis to estimate the emergence time of the AcrB-R717Q/L mutation.
  • Development and validation of a mismatch amplification mutation assay (MAMA) for detecting the AcrB-R717Q/L mutation.

Main Results:

  • 38 additional cases of AzmR Salmonella Typhi and Paratyphi A were identified in Bangladesh (2016-2018).
  • Genomic analysis confirmed spontaneous emergence of the AcrB-R717Q/L mutation across different Salmonella genotypes.
  • Bayesian analysis suggested the mutation emerged around 2010, with a travel-related case detected in the UK.
  • The developed MAMA assay demonstrated >98% specificity and sensitivity for detecting the mutation.

Conclusions:

  • The AcrB-R717Q/L mutation conferring azithromycin resistance has emerged multiple times and is spreading globally.
  • The emergence of pan-oral drug-resistant Salmonella Typhi is a significant threat.
  • The rapid MAMA test enables real-time surveillance and early intervention against antimicrobial resistance.