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Phenotypic and Genotypic Methods for Detection of Extended Spectrum β Lactamase Producing Escherichia coli and Klebsiella pneumoniae Isolated from Ventilator Associated Pneumonia

机译:从呼吸机相关性肺炎中分离出产生超广谱β-内酰胺酶的大肠杆菌和肺炎克雷伯菌的表型和基因型方法

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摘要

>Background: Ventilator Associated Pneumonia (VAP) is one of the common nosocomial infections associated with high morbidity due to multidrug resistant pathogens. Rapid spread of resistance to broad spectrum beta-lactams in pathogenic strains causes antibiotics ineffectiveness and increased severity of illness. The CTX-M is the most dominant Extended Spectrum β Lactamase (ESBL) among Enterobacteriaceae in many regions of the world. The aim of the study was to identify the occurrence of ESBL and detect the genes responsible for ESBL production by conventional Polymerase Chain Reaction (PCR) method.>Methods: This prospective study included patients, clinically diagnosed as VAP. Endotracheal aspirates (EA) were collected and cultured by quantitative method. The bacterial isolates were identified as per standard methods. Isolates resistant to 3rd generation cephalosporins were screened for ESBL production by disk approximation method and combination disc diffusion method. Isolates confirmed as ESBL producers were subjected to genotyping by conventional PCR.>Statistical >Analysis: Statistical analysis was done by using MS Excel sheet. Descriptive statistics like percentage was done in the study.>Results: Among the isolates from 428 patients who developed VAP, 144 isolates belonged to the Enterobacteriaceae family (Klebsiella pneumoniae 87 and Escherichia coli 57). A total of 66 isolates (28 Klebsiella pneumoniae and 38 Escherichia coli) were confirmed as ESBL producer by disc approximation method and 63 isolates by double disc combination method. In the present study by conventional PCR bla CTX-M was the common gene in 48.5% strains followed by 22.22% bla SHV and 14.81% bla TEM.>Conclusion: The genotypic methods using specific PCR amplification of resistance genes seems to have 100% specificity and sensitivity in detection of ESBL when compared to phenotypic methods which lacks the constant sensitivity.
机译:>背景:呼吸机相关性肺炎(VAP)是由多种药物引起的病原体,与高发病率相关的常见医院感染之一。对致病性菌株中广谱β-内酰胺类药物的耐药性迅速扩散会导致抗生素无效,并增加疾病的严重性。在世界许多地区的肠杆菌科中,CTX-M是最主要的扩展谱β内酰胺酶(ESBL)。该研究的目的是通过传统的聚合酶链反应(PCR)方法鉴定ESBL的发生并检测引起ESBL产生的基因。>方法:该前瞻性研究包括临床诊断为VAP的患者。收集气管内抽吸物(EA)并通过定量方法进行培养。按照标准方法鉴定细菌分离物。通过圆盘逼近法和组合圆盘扩散法筛选了对第三代头孢菌素有抗性的分离株生产ESBL。确认为ESBL生产者的分离株通过常规PCR进行基因分型。>统计 >分析:使用MS Excel工作表进行统计分析。在研究中进行了百分比之类的描述性统计。>结果:在来自428位发生VAP的患者的分离株中,有144个分离株属于肠杆菌科(肺炎克雷伯菌87和大肠杆菌57)。通过圆盘近似法确认了总共66个分离株(28个肺炎克雷伯菌和38个大肠杆菌)被确认为ESBL产生者,通过双圆盘组合方法确认了63个分离株。在本研究中,常规PCR bla CTX-M是48.5%菌株中的常见基因,其次是22.22%bla SHV和14.81%bla TEM。>结论:使用抗性基因特异性PCR扩增的基因型方法与缺乏恒定灵敏度的表型方法相比,ESBL的检测似乎具有100%的特异性和灵敏度。

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