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Antimicrobial-resistant Neisseria gonorrhoeae in Europe in 2020 compared with in 2013 and 2018: a retrospective genomic surveillance study
Örebro University, School of Medical Sciences. WHO Collaborating Centre for Gonorrhoea and Other Sexually Transmitted Infections, Department of Laboratory Medicine, Faculty of Medicine and Health, Örebro University, Örebro, Sweden.ORCID iD: 0000-0002-0688-2521
UK Health Security Agency, London, UK.
Genomics and Health Area, Foundation for the Promotion of Health and Biomedical Research in the Valencian Community (FISABIO-Public Health), Valencia, Spain; CIBERESP, ISCIII, Madrid, Spain.
UK Health Security Agency, London, UK.
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2024 (English)In: The Lancet Microbe, ISSN 2666-5247, Vol. 5, no 5, p. e478-e488Article in journal (Refereed) Published
Abstract [en]

BACKGROUND: Regular quality-assured whole-genome sequencing linked to antimicrobial resistance (AMR) and patient metadata is imperative to elucidate the shifting gonorrhoea epidemiology, both nationally and internationally. We aimed to examine the gonococcal population in the European Economic Area (EEA) in 2020, elucidate emerging and disappearing gonococcal lineages associated with AMR and patient metadata, compare with 2013 and 2018 whole-genome sequencing data, and explain changes in gonococcal AMR and gonorrhoea epidemiology.

METHODS: In this retrospective genomic surveillance study, we analysed consecutive gonococcal isolates that were collected in EEA countries through the European Gonococcal Antimicrobial Surveillance Programme (Euro-GASP) in 2020, and made comparisons with Euro-GASP data from 2013 and 2018. All isolates had linked AMR data (based on minimum inhibitory concentration determination) and patient metadata. We performed whole-genome sequencing and molecular typing and AMR determinants were derived from quality-checked whole-genome sequencing data. Links between genomic lineages, AMR, and patient metadata were examined.

FINDINGS: 1932 gonococcal isolates collected in 2020 in 21 EEA countries were included. The majority (81·2%, 147 of 181 isolates) of azithromycin resistance (present in 9·4%, 181 of 1932) was explained by the continued expansion of the Neisseria gonorrhoeae sequence typing for antimicrobial resistance (NG-STAR) clonal complexes (CCs) 63, 168, and 213 (with mtrD/mtrR promoter mosaic 2) and the novel NG-STAR CC1031 (semi-mosaic mtrD variant 13), associated with men who have sex with men and anorectal or oropharyngeal infections. The declining cefixime resistance (0·5%, nine of 1932) and negligible ceftriaxone resistance (0·1%, one of 1932) was largely because of the progressive disappearance of NG-STAR CC90 (with mosaic penA allele), which was predominant in 2013. No known resistance determinants for novel antimicrobials (zoliflodacin, gepotidacin, and lefamulin) were found.

INTERPRETATION: Azithromycin-resistant clones, mainly with mtrD mosaic or semi-mosaic variants, appear to be stabilising at a relatively high level in the EEA. This mostly low-level azithromycin resistance might threaten the recommended ceftriaxone-azithromycin therapy, but the negligible ceftriaxone resistance is encouraging. The decreased genomic population diversity and increased clonality could be explained in part by the COVID-19 pandemic resulting in lower importation of novel strains into Europe.

Place, publisher, year, edition, pages
Elsevier, 2024. Vol. 5, no 5, p. e478-e488
National Category
Infectious Medicine
Identifiers
URN: urn:nbn:se:oru:diva-113117DOI: 10.1016/S2666-5247(23)00370-1ISI: 001240820400001PubMedID: 38614111Scopus ID: 2-s2.0-85190143936OAI: oai:DiVA.org:oru-113117DiVA, id: diva2:1851427
Funder
Region Örebro County
Note

FUNDING: European Centre for Disease Prevention and Control and Örebro University Hospital.

Available from: 2024-04-15 Created: 2024-04-15 Last updated: 2026-04-07Bibliographically approved
In thesis
1. Evolution and prediction of antimicrobial resistance in Neisseria gonorrhoeae
Open this publication in new window or tab >>Evolution and prediction of antimicrobial resistance in Neisseria gonorrhoeae
2026 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

Modern medicine relies heavily on effective antimicrobial therapies. However, rapid emergence and global spread of antimicrobial resistance (AMR) threaten the treatment and control of bacterial infections. Neisseria gonorrhoeae, the causative agent of gonorrhoea, has an extraordinary capacity to acquire and develop resistance to all antimicrobials introduced for treatment. The aim of this study was to gain insight into the evolution and global emergence of AMR over the past century. This thesis further investigates whether the observed genomic data patterns are sufficiently informative for accurate prediction of antimicrobial susceptibility that can directly inform treatment.

By applying whole-genome sequencing (WGS) to global, historical, and contemporary gonococcal collections spanning all continents and isolated from the pre-antibiotic era to the present day, several questions can be addressed. The data revealed that the global gonococcal population is divided into two distinct lineages with different evolutionary strategies. Furthermore, temporal analysis demonstrates that the modern N. gonorrhoeae is younger than previously presumed and that antimicrobial exposure has been a major driver of the evolution of this species.

The accumulated knowledge base of phenotypic and especially genomic AMR generated in this work is compiled and integrated within a dedicated analytical framework, SensiTyper, demonstrating that WGS-based approaches can infer antimicrobial susceptibility and recommend susceptibility-guided individualised treatment strategies.

Place, publisher, year, edition, pages
Örebro: Örebro University, 2026. p. 108
Series
Örebro Studies in Medicine, ISSN 1652-4063 ; 351
Keywords
Neisseria gonorrhoeae, genomic epidemiology, antimicrobial susceptibility prediction, antimicrobial resistance, whole-genome sequencing, treatment, evolution
National Category
General Medicine
Identifiers
urn:nbn:se:oru:diva-127083 (URN)9789175297590 (ISBN)9789175297606 (ISBN)
Public defence
2026-04-24, Örebro universitet, Campus USÖ, Tidefeltsalen, Södra Grev Rosengatan 32, Örebro, 09:00 (English)
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Available from: 2026-02-04 Created: 2026-02-04 Last updated: 2026-04-22Bibliographically approved

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Golparian, degnJacobsson, SusanneUnemo, Magnus

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