Antimicrobial susceptibilities of Neisseria gonorrhoeae in Canada, 2020.

IF 0.7 Q2 MATHEMATICS Journal of Geometry Pub Date : 2022-11-03 DOI:10.14745/ccdr.v48i1112a10
Robyn Thorington, Pamela Sawatzky, Brigitte Lefebvre, Mathew Diggle, Linda Hoang, Samir Patel, Paul Van Caessele, Jessica Minion, Richard Garceau, Myrna Matheson, David Haldane, Genevieve Gravel, Michael R Mulvey, Irene Martin
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Abstract

Background: The Gonococcal Antimicrobial Surveillance Programme is a passive surveillance system that has monitored antimicrobial resistance in Neisseria gonorrhoeae in Canada since the 1980s. This article summarizes the demographics, antimicrobial resistances and NG-MAST (N. gonorrhoeae multiantigen sequence typing) for cultures collected in 2020.

Methods: The National Microbiology Laboratory (NML) in Winnipeg received resistant N. gonorrhoeae cultures from provincial and territorial public health laboratories. Agar dilution was used to determine the minimum inhibitory concentrations to ten antimicrobials for all cultures received at NML, according to Clinical and Laboratory Standards Institute guidelines. The NG-MAST typing was also determined for each culture.

Results: A total of 3,130 N. gonorrhoeae cases were cultured across Canada in 2020; a 36% decrease from 2019 (n=4,859). The level of decreased susceptibility to cefixime increased significantly between 2016 and 2020 to 2.8% (p=0.0054). Decreased susceptibility to ceftriaxone declined significantly between 2016 (1.8%) and 2020 to 0.9% (p=0.001), and there was no significant change with azithromycin between 2016 (7.2%) and 2020 (6.1%). The proportion of cultures with an azithromycin minimum inhibitory concentrations of ≥1 mg/L increased significantly from 11.6% in 2016 to 15.3% in 2020 (p=0.0017). The most common NG-MAST type in Canada for 2020 was sequence type (ST)-11461, while ST-12302 was most commonly associated with azithromycin resistance and ST-16639 with cephalosporin decreased susceptibility.

Conclusion: Antimicrobial resistance in N. gonorrhoeae remains an important public health concern and continued surveillance is imperative to monitor trends to ensure the recommended therapies will be the most effective.

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2020 年加拿大淋病奈瑟菌的抗菌药敏感性。
背景:淋球菌抗菌药监测计划是一个被动监测系统,自 20 世纪 80 年代以来一直在监测加拿大淋病奈瑟菌的抗菌药耐药性。本文总结了 2020 年收集的淋病奈瑟菌培养物的人口统计学、抗菌药耐药性和 NG-MAST(淋病奈瑟菌多抗原序列分型):方法:位于温尼伯的国家微生物实验室(NML)从各省和地区公共卫生实验室接收耐药淋球菌培养物。根据临床与实验室标准研究所(Clinical and Laboratory Standards Institute)指南,琼脂稀释法用于确定 NML 收到的所有培养物对十种抗菌药物的最小抑菌浓度。同时还确定了每种培养物的 NG-MAST 分型:2020年,加拿大全国共培养出3130例淋球菌病例,比2019年(4859例)减少了36%。2016年至2020年期间,对头孢克肟敏感性降低的比例显著上升至2.8%(p=0.0054)。头孢曲松的易感性降低率在2016年(1.8%)和2020年之间显著下降至0.9%(p=0.001),而阿奇霉素在2016年(7.2%)和2020年(6.1%)之间没有显著变化。阿奇霉素最低抑菌浓度≥1 mg/L的培养物比例从2016年的11.6%大幅增至2020年的15.3%(p=0.0017)。2020年加拿大最常见的NG-MAST类型是序列类型(ST)-11461,而ST-12302最常与阿奇霉素耐药性有关,ST-16639则与头孢菌素敏感性下降有关:淋球菌的抗菌药耐药性仍然是一个重要的公共卫生问题,必须继续进行监测以监控趋势,确保推荐的疗法最有效。
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来源期刊
Journal of Geometry
Journal of Geometry MATHEMATICS-
CiteScore
1.00
自引率
0.00%
发文量
41
期刊介绍: Journal of Geometry (JG) is devoted to the publication of current research developments in the fields of geometry, and in particular recent results in foundations of geometry, geometric algebra, finite geometries, combinatorial geometry, and special geometries.
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