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2009 年美国食品动物、零售肉和人类源肠出血性大肠埃希氏菌血清型 Heidelberg 中分离的耐扩展谱头孢菌素的沙门氏菌的特征。

Characterization of extended-spectrum cephalosporin-resistant Salmonella enterica serovar Heidelberg isolated from food animals, retail meat, and humans in the United States 2009.

机构信息

Division of Foodborne, Waterborne, and Environmental Diseases, Centers for Disease Control and Prevention, Atlanta, Georgia 30329, USA.

出版信息

Foodborne Pathog Dis. 2012 Jul;9(7):638-45. doi: 10.1089/fpd.2012.1130.

Abstract

Salmonella enterica is one of the most common causes of foodborne illness in the United States. Although salmonellosis is usually self-limiting, severe infections typically require antimicrobial treatment, and ceftriaxone, an extended-spectrum cephalosporin (ESC), is commonly used in both adults and children. Surveillance conducted by the National Antimicrobial Resistance Monitoring System (NARMS) has shown a recent increase in ESC resistance among Salmonella Heidelberg isolated from food animals at slaughter, retail meat, and humans. ESC resistance among Salmonella in the United States is usually mediated by a plasmid-encoded bla(CMY) β-lactamase. In 2009, we identified 47 ESC-resistant bla(CMY)-positive Heidelberg isolates from humans (n=18), food animals at slaughter (n=16), and retail meats (n=13) associated with a spike in the prevalence of this serovar. Almost 90% (26/29) of the animal and meat isolates were isolated from chicken carcasses or retail chicken meat. We screened NARMS isolates for the presence of bla(CMY), determined whether the gene was plasmid-encoded, examined pulsed-field gel electrophoresis patterns to assess the genetic diversities of the isolates, and categorized the bla(CMY) plasmids by plasmid incompatibility groups and plasmid multi-locus sequence typing (pMLST). All 47 bla(CMY) genes were found to be plasmid encoded. Incompatibility/replicon typing demonstrated that 41 were IncI1 plasmids, 40 of which only conferred bla(CMY)-associated resistance. Six were IncA/C plasmids that carried additional resistance genes. pMLST of the IncI1-bla(CMY) plasmids showed that 27 (65.8%) were sequence type (ST) 12, the most common ST among bla(CMY)-IncI1 plasmids from Heidelberg isolated from humans. Ten plasmids had a new ST profile, ST66, a type very similar to ST12. This work showed that the 2009 increase in ESC resistance among Salmonella Heidelberg was caused mainly by the dissemination of bla(CMY) on IncI1 and IncA/C plasmids in a variety of genetic backgrounds, and is likely not the result of clonal expansion.

摘要

肠炎沙门氏菌是美国最常见的食源性病原体之一。虽然沙门氏菌病通常是自限性的,但严重感染通常需要抗菌治疗,头孢曲松是一种常用的广谱头孢菌素(ESC),在成人和儿童中都有使用。国家抗菌药物耐药性监测系统(NARMS)的监测显示,从屠宰场的食用动物、零售肉类和人类中分离的肠炎沙门氏菌中,ESC 耐药性最近有所增加。美国沙门氏菌的 ESC 耐药性通常由质粒编码的 bla(CMY)β-内酰胺酶介导。2009 年,我们从人类(n=18)、屠宰场的食用动物(n=16)和零售肉类(n=13)中鉴定了 47 株 ESC 耐药 bla(CMY)-阳性的海德堡分离株,这些分离株与该血清型的流行率上升有关。近 90%(26/29)的动物和肉类分离株来自鸡胴体或零售鸡肉。我们筛选了 NARMS 分离株中 bla(CMY)的存在情况,确定了基因是否为质粒编码,通过脉冲场凝胶电泳模式评估了分离株的遗传多样性,并根据质粒不相容性群和质粒多位点序列分型(pMLST)对 bla(CMY)质粒进行了分类。所有 47 个 bla(CMY)基因均为质粒编码。不相容/复制子分型表明,41 个为 IncI1 质粒,其中 40 个仅赋予 bla(CMY)相关耐药性。6 个为 IncA/C 质粒,携带其他耐药基因。IncI1-bla(CMY)质粒的 pMLST 显示,27 个(65.8%)为 ST12,是从人类分离的海德堡 bla(CMY)-IncI1 质粒中最常见的 ST。10 个质粒具有新的 ST 谱,ST66,与 ST12 非常相似。这项研究表明,2009 年肠炎沙门氏菌中 ESC 耐药性的增加主要是由 bla(CMY)在多种遗传背景下在 IncI1 和 IncA/C 质粒上的传播引起的,而不是克隆扩张的结果。

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