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Global Transmission of the penA Allele 60.001–Containing High-Level Ceftriaxone-Resistant Gonococcal FC428 Clone and Antimicrobial Therapy of Associated Cases:A Review
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作者 Stijn van der Veen 《Infectious Microbes & Diseases》 CSCD 2023年第1期13-20,共8页
Neisseria gonorrhoeae is a multidrug-resistant bacterial pathogen for which ceftriaxone is the only remaining recommended first-line therapy.However,ceftriaxone susceptibility has been waning in a number of countries ... Neisseria gonorrhoeae is a multidrug-resistant bacterial pathogen for which ceftriaxone is the only remaining recommended first-line therapy.However,ceftriaxone susceptibility has been waning in a number of countries over the last decade and ceftriaxone treatment failures have been reported,commonly as a result of sporadic high-level ceftriaxone-resistant strains.In recent years,N.gonorrhoeae strains associated with the high-level ceftriaxone-resistant FC428 clone or strains that acquired its main ceftriaxone resistance determinant,penA allele 60.001,have shown global transmission,resulting in ceftriaxone treatment failure in a number of cases.The FC428 clone was first encountered in Japan in 2015 and subsequently in China,Europe,Australia,North America and Southeast Asia afterward.Strains associated with the FC428 clone commonly display a ceftriaxone minimum inhibitory concentration of 0.5-1 mg/L.However,where penA alleles encountered in sporadic high-level ceftriaxone-resistant isolates induce an in vitro growth defect,penA allele 60.001 does not seem to affect in vitro growth.The limited impact of penA allele 60.001 on biological fitness might be associated with its successful global transmission.Although the FC428 clone displays high-level ceftriaxone resistance,most gonorrhea cases associatedwith this clone were still successfully curedwith ceftriaxonewhen intramuscular or intravenous doses of 500mg to 2 g were used.A successful alternative therapy seems to be ertapenem given at 1-g doses,although further clinical studies are required to validate ertapenemefficacy.This review summarizes the global transmission of strains associated with the FC428 clone and antimicrobial treatment of associated cases. 展开更多
关键词 Neisseria gonorrhoeae fc428 penA 60.001 CEFTRIAXONE biological fitness antimicrobial resistance
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头孢曲松耐药淋病奈瑟菌株FC428的流行、耐药机制及应对策略 被引量:4
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作者 陈绍椿 刘经纬 +1 位作者 周可 尹跃平 《中华皮肤科杂志》 CAS CSCD 北大核心 2022年第12期1122-1126,共5页
淋球菌耐药问题是性传播疾病防控中面临的巨大挑战,近年来在世界范围包括我国流行的头孢曲松耐药淋病奈瑟菌株FC428使耐药问题更加严峻。该菌株因含新型镶嵌结构的penA基因而对头孢曲松高度耐药,且已在全球广泛传播。为更好地了解FC428... 淋球菌耐药问题是性传播疾病防控中面临的巨大挑战,近年来在世界范围包括我国流行的头孢曲松耐药淋病奈瑟菌株FC428使耐药问题更加严峻。该菌株因含新型镶嵌结构的penA基因而对头孢曲松高度耐药,且已在全球广泛传播。为更好地了解FC428的特征,控制其进一步传播,本文综述其起源、传播、主要分子特征、耐药机制、检测方法以及临床治疗和耐药监测的策略。 展开更多
关键词 淋病奈瑟球菌 头孢曲松 抗药性 细菌 疾病传播 传染性 感染控制 fc428
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