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首页> 外文期刊>Microbial drug resistance: MDR : Mechanisms, epidemiology, and disease >Identification and Characterization of Imipenem-Resistant Klebsiella pneumoniae and Susceptible Klebsiella variicola Isolates Obtained from the Same Patient
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Identification and Characterization of Imipenem-Resistant Klebsiella pneumoniae and Susceptible Klebsiella variicola Isolates Obtained from the Same Patient

机译:从同一患者获得的耐亚胺培南的肺炎克雷伯菌和易感水痘克雷伯菌的鉴定和鉴定

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摘要

Klebsiella variicola, a bacterium closely genetically related to Klebsiella pneumoniae, is commonly misidentified as K. pneumoniae by biochemical tests. To distinguish between the two bacteria, phylogenetic analysis of the rpoB gene and the identification of unique genes in both bacterial species by multiplex-polymerase chain reaction (PCR) provide the means to reliably identify and genotype K. variicola. In recent years, K. variicola has been described both as the cause of an intrahospital outbreak in a pediatric hospital, which resulted in sepsis in inpatients, and as a frequent cause of bloodstream infections. In the present study, K. pneumoniae and K. variicola were isolated from a unique patient displaying different antimicrobial susceptibility phenotypes and different genotypes of virulence determinants. Eight clinical isolates were obtained at different time intervals; all during a 5-month period. The isolates were identified as K. pneumoniae by an automated identification system. The clinical (biochemical test) and molecular (multiplex-PCR and rpoB gene) characterization identified imipenem resistance in the first six K. pneumoniae ST258 isolates, which encode the SHV-12 cephalosporinase and KPC-3 carbapenemase genes. The two last remaining isolates corresponded to susceptible K. variicola. The bacterial species showed a specific profile of virulence-associated determinants, specifically the fimA, fimH, and ecpRAB fimbrial-encoding genes identified only in K. pneumoniae isolates. However, the entb (enterobactin), mrkD (fimbrial adhesin), uge (epimerase), ureA (urease), and wabG (transferase) genes were shared between both bacterial species. Recent studies attribute a higher mortality rate to K. variicola than to K. pneumonia. This work highlights the identification of K. pneumoniae and the closely related K. variicola isolated from the same patient. The value of distinguishing between these two bacterial species is in their clinical significance, their different phenotypes and genotypes, and the fact that they can be isolated from the same patient.
机译:水痘克雷伯菌是一种与肺炎克雷伯菌密切相关的细菌,通过生化检测通常被误认为肺炎克雷伯菌。为了区分这两种细菌,rpoB基因的系统发育分析和通过多重聚合酶链反应(PCR)鉴定两种细菌中独特基因的方法提供了可靠的方法来鉴定水痘K.variicola和对其进行基因分型。近年来,水痘K.既被​​描述为儿科医院院内暴发的原因,导致住院病人败血症,又被描述为血液感染的常见原因。在本研究中,肺炎克雷伯氏菌和水痘克雷伯菌是从一名独特的患者中分离出来的,该患者表现出不同的抗菌药敏感性表型和不同的毒力决定因素基因型。在不同的时间间隔获得了八株临床分离株。全部在5个月内完成。通过自动鉴定系统将分离物鉴定为肺炎克雷伯菌。临床(生化测试)和分子(多重PCR和rpoB基因)鉴定确定了头6个肺炎克雷伯菌ST258分离株的亚胺培南耐药性,这些分离株编码SHV-12头孢菌素酶和KPC-3碳青霉烯酶基因。最后剩下的两个分离株对应于易感性水曲霉。细菌种类显示了与毒力相关的决定因素的特定特征,特别是仅在肺炎克雷伯菌中鉴定出的fimA,fimH和ecpRAB纤维编码基因。但是,在两种细菌之间共享entb(肠杆菌素),mrkD(膜粘附素),uge(表皮酶),ureA(尿素酶)和wabG(转移酶)基因。最近的研究认为水曲霉的死亡率高于肺炎克雷伯菌。这项工作强调了从同一患者中分离出的肺炎克雷伯菌和紧密相关的水曲霉的鉴定。区分这两种细菌的​​价值在于它们的临床意义,它们不同的表型和基因型以及它们可以从同一患者中分离的事实。

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