Antimicrobial Resistance Profiling and Genome Analysis of the penA-60.001 Neisseria gonorrhoeae Clinical Isolates in China in 2021

Author:

Tang Yingxian123,Liu Xiaofeng4,Chen Wentao567ORCID,Luo Xiaojuan8,Zhuang Peiqu9,Li Rongzhen10,Lin Xiaomian1ORCID

Affiliation:

1. Department of Pharmacy, the First Affiliated Hospital of Naval Medical University , Shanghai, China

2. The Sixth Affiliated Hospital of Guangzhou Medical University , Qingyuan, China

3. Qingyuan People's Hospital , Qingyuan, China

4. Zhuhai Center for Chronic Diseases Control, Zhuhai, China

5. BSL-3 Laboratory (Guangdong), Guangdong Provincial Key Laboratory of Tropical Disease Research, School of Public Health, Southern Medical University , Guangzhou, China

6. Dermatology Hospital, Southern Medical University , Guangzhou, China

7. Guangzhou Key Laboratory for Sexually Transmitted Disease Control , Guangzhou, China

8. Department of Laboratory Medicine, the First People's Hospital of Foshan , Foshan, China

9. Maoming People's Hospital , Maoming, China

10. Huazhong University of Science and Technology Union Shenzhen Hospital , Shenzhen , China

Abstract

Abstract Background Neisseria gonorrhoeae antimicrobial resistance (AMR) is an urgent public health threat. With dissemination of FC428-related clones, the efficacy of ceftriaxone has become controversial. Methods Agar dilution and whole genome sequencing were used to analyze AMR. Results High resistance to penicillin (75.2%), tetracycline (87.9%), ciprofloxacin (98.3%), ceftriaxone (8.9%), cefixime (14.3%), and azithromycin (8.6%) was observed among 463 isolates first collected in China in 2021. All penA-60.001 clones exhibited resistance to ceftriaxone or cefixime, and 1 of the 12 cases was resistant to azithromycin. ngMAST and ngSTAR of penA-60.001 isolates showed that single-nucleotide polymorphisms in the porB, tbpB, ponA, gyrA, and parC genes were the major causes of different sequence types. MLST-7365 (n = 5) and MLST-1903 (n = 3) were main genotypes, and the other 4 strains featured MLST-10314, MLST-13871, MLST-7827 and MLST-1600. Furthermore, resistance markers (eg, penA, blaTEM-1, blaTEM-135) and virus factors were detected. Most penA-60.001 strains were fully mixed with global FC428-related clones; 2021-A2 and F89 had the same origin; and 2021-A1 exhibited a unique evolutionary trajectory. Conclusions Results provide the first demonstration of extremely severe AMR rates of N gonorrhoeae in China in 2021, particularly strains with ceftriaxone decreased susceptibility. The sustained transmission of penA-60.001 subclones might further threaten treatment effectiveness.

Publisher

Oxford University Press (OUP)

Subject

Infectious Diseases,Immunology and Allergy

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