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.
Abstract:
The rising prevalence of antimicrobial resistance in Salmonella enterica serovars Typhi and Paratyphi A, causative agents of typhoid and paratyphoid, have led to fears of untreatable infections. Of specific concern is the emerging resistance against azithromycin, the only remaining oral drug to treat extensively drug resistant (XDR) typhoid. Since the first report of azithromycin resistance from Bangladesh in 2019, cases have been reported from Nepal, India, and Pakistan. The genetic basis of this resistance is a single point mutation in the efflux pump AcrB (R717Q/L). Here, we report 38 additional cases of azithromycin-resistant (AzmR) Salmonella Typhi and Paratyphi A isolated in Bangladesh between 2016 and 2018. Using genomic analysis of 56 AzmR isolates from South Asia with AcrB-R717Q/L, we confirm that this mutation has spontaneously emerged in different Salmonella Typhi and Paratyphi A genotypes. The largest cluster of AzmR Typhi belonged to genotype 4.3.1.1; Bayesian analysis predicts the mutation to have emerged sometime in 2010. A travel-related Typhi isolate with AcrB-R717Q belonging to 4.3.1.1 was isolated in the United Kingdom, increasing fears of global spread. For real-time detection of AcrB-R717Q/L, we developed an extraction-free, rapid, and low-cost mismatch amplification mutation assay (MAMA). Validation of MAMA using 113 AzmR and non-AzmR isolates yielded >98% specificity and sensitivity versus phenotypic and whole-genome sequencing assays currently used for azithromycin resistance detection. With increasing azithromycin use, AcrB-R717Q/L is likely to be acquired by XDR strains. The proposed tool for active detection and surveillance of this mutation may detect pan-oral drug resistance early, giving us a window to intervene.IMPORTANCE In the early 1900s, with mortality of ∼30%, typhoid and paratyphoid ravaged parts of the world; with improved water, sanitation, and hygiene in resource-rich countries and the advent of antimicrobials, mortality dwindled to <1%. Today, the burden rests disproportionately on South Asia, where the primary means for combatting the disease is antimicrobials. However, prevalence of antimicrobial resistance is rising and, in 2016, an extensively drug resistant Typhi strain triggered an ongoing outbreak in Pakistan, leaving only one oral drug, azithromycin, to treat it. Since the description of emergence of azithromycin resistance, conferred by a point mutation in acrB (AcrB-R717Q/L) in 2019, there have been increasing numbers of reports. Using genomics and Bayesian analysis, we illustrate that this mutation emerged in approximately 2010 and has spontaneously arisen multiple times. Emergence of pan-oral drug resistant Salmonella Typhi is imminent. We developed a low-cost, rapid PCR tool to facilitate real-time detection and prevention policies.
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.
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