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Use of Antibiotic Susceptibility Patterns and Pulsed-Field Gel Electrophoresis To Compare Historic and Contemporary Isolates of Multi-Drug-Resistant Salmonella enterica subsp. enterica Serovar Newport

机译:使用抗生素药敏模式和脉冲场凝胶电泳比较耐多药肠炎沙门氏菌亚种的历史和当代分离物。纽波特肠菌

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摘要

Recently, multi-drug-resistant (MDR) Salmonella enterica subspecies enterica serovar Newport reemerged as a public and animal health problem. The antibiotic resistance of 198 isolates and the pulsed-field gel electrophoresis patterns (PFGE) of 139 isolates were determined. Serovar Newport isolates collected between 1988 and 2001 were included in the study. One hundred seventy-eight isolates were collected from the San Joaquin valley in California and came from dairy cattle clinical samples, human clinical samples, bulk tank milk samples, fecal samples from preweaned calves, and waterways. Twenty clinical isolates from humans from various regions of the United States were also included in the study. Resistance to 18 antibiotics was determined using a disk diffusion assay. PFGE patterns were determined using a single enzyme (XbaI). The PFGE and antibiogram patterns were described using cluster analysis. Although the antibiotic resistance patterns of historic (1988 to 1995) and contemporary (1999 to 2001) isolates were similar, the contemporary isolates differed from the historic isolates by being resistant to cephalosporins and florfenicol and in their general sensitivity to kanamycin and neomycin. With few exceptions, the contemporary isolates clustered together and were clearly separated from the historic isolates. One PFGE-antibiogram cluster combination was predominant for the recent isolates, which were taken from human samples from all parts of the United States, as well as in the isolates from California, indicating a rapid dissemination of this phenotypic strain. The data are consistent with the hypothesis that the reemergence of MDR serovar Newport is not simply an acquisition of further antibiotic resistance genes by the historic isolates but reflects a different genetic lineage.
机译:最近,多重耐药性沙门氏菌沙门氏菌亚种(Newport serovar Newport)重新出现,成为公共和动物健康问题。确定了198株菌株的抗生素耐药性,并确定了139株菌株的脉冲场凝胶电泳图谱(PFGE)。 1988年至2001年收集的Serovar Newport分离株被纳入研究。从加利福尼亚州的圣华金河谷收集了178株分离株,这些分离株来自奶牛临床样品,人类临床样品,散装罐装牛奶样品,来自断奶小牛的粪便样品以及水道。该研究还包括来自美国不同地区的人类的20种临床分离株。使用圆盘扩散测定法确定对18种抗生素的耐药性。 PFGE模式使用单一酶(XbaI)确定。使用聚类分析描述了PFGE和抗菌素谱。尽管历史菌株(1988年至1995年)和当代菌株(1999年至2001年)的抗生素抗药性模式相似,但当代菌株与历史菌株的区别在于对头孢菌素和氟苯尼考具有抗药性,以及它们对卡那霉素和新霉素的一般敏感性。几乎没有例外,当代的隔离群聚集在一起,并且与历史的隔离群明显分离。 PFGE-抗生物素蛋白簇的组合主要用于最近的分离株,该分离株来自美国各地的人类样品以及来自加利福尼亚的分离株,表明该表型菌株迅速传播。数据与以下假设一致:MDR血清新港的出现不仅仅是简单地通过历史分离株获得更多的抗生素抗性基因,而且反映了不同的遗传谱系。

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