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  3. Projecting the development of antimicrobial resistance in Neisseria gonorrhoeae from antimicrobial surveillance data: a mathematical modelling study.
 

Projecting the development of antimicrobial resistance in Neisseria gonorrhoeae from antimicrobial surveillance data: a mathematical modelling study.

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BORIS DOI
10.48350/181892
Publisher DOI
10.1186/s12879-023-08200-4
PubMed ID
37081443
Description
BACKGROUND

The World Health Organization recommends changing the first-line antimicrobial treatment for gonorrhoea when ≥ 5% of Neisseria gonorrhoeae cases fail treatment or are resistant. Susceptibility to ceftriaxone, the last remaining treatment option has been decreasing in many countries. We used antimicrobial resistance surveillance data and developed mathematical models to project the time to reach the 5% threshold for resistance to first-line antimicrobials used for N. gonorrhoeae.

METHODS

We used data from the Gonococcal Resistance to Antimicrobials Surveillance Programme (GRASP) in England and Wales from 2000-2018 about minimum inhibitory concentrations (MIC) for ciprofloxacin, azithromycin, cefixime and ceftriaxone and antimicrobial treatment in two groups, heterosexual men and women (HMW) and men who have sex with men (MSM). We developed two susceptible-infected-susceptible models to fit these data and produce projections of the proportion of resistance until 2030. The single-step model represents the situation in which a single mutation results in antimicrobial resistance. In the multi-step model, the sequential accumulation of resistance mutations is reflected by changes in the MIC distribution.

RESULTS

The single-step model described resistance to ciprofloxacin well. Both single-step and multi-step models could describe azithromycin and cefixime resistance, with projected resistance levels higher with the multi-step than the single step model. For ceftriaxone, with very few observed cases of full resistance, the multi-step model was needed to describe long-term dynamics of resistance. Extrapolating from the observed upward drift in MIC values, the multi-step model projected ≥ 5% resistance to ceftriaxone could be reached by 2030, based on treatment pressure alone. Ceftriaxone resistance was projected to rise to 13.2% (95% credible interval [CrI]: 0.7-44.8%) among HMW and 19.6% (95%CrI: 2.6-54.4%) among MSM by 2030.

CONCLUSIONS

New first-line antimicrobials for gonorrhoea treatment are needed. In the meantime, public health authorities should strengthen surveillance for AMR in N. gonorrhoeae and implement strategies for continued antimicrobial stewardship. Our models show the utility of long-term representative surveillance of gonococcal antimicrobial susceptibility data and can be adapted for use in, and for comparison with, other countries.
Date of Publication
2023-04-20
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
300 Social sciences, sociology & anthropology > 360 Social problems & social services
Keyword(s)
Antimicrobial resistance Mathematical model Minimum inhibitory concentration Neisseria gonorrhoeae Surveillance
Language(s)
en
Contributor(s)
Riou, Julien Yannis
Institut für Sozial- und Präventivmedizin (ISPM) - HIV, Hepatitis & Tubercolosis
Institut für Sozial- und Präventivmedizin (ISPM)
Althaus, Christianorcid-logo
Institut für Sozial- und Präventivmedizin (ISPM) - Interfac. Platform Data & Comp. Science
Institut für Sozial- und Präventivmedizin (ISPM)
Allen, Hester
Cole, Michelle J
Grad, Yonatan H
Heijne, Janneke C M
Unemo, Magnus
Low, Nicolaorcid-logo
Institut für Sozial- und Präventivmedizin (ISPM) - Sexual & Reproductive Health
Institut für Sozial- und Präventivmedizin (ISPM)
Additional Credits
Institut für Sozial- und Präventivmedizin (ISPM) - Sexual & Reproductive Health
Institut für Sozial- und Präventivmedizin (ISPM) - HIV, Hepatitis & Tubercolosis
Institut für Sozial- und Präventivmedizin (ISPM) - Interfac. Platform Data & Comp. Science
Series
BMC infectious diseases
Publisher
BioMed Central
ISSN
1471-2334
Access(Rights)
open.access
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