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LAMP assays for the simple and rapid detection of clinically important urinary pathogens including the detection of resistance to 3rd generation cephalosporins

机译:灯泡测定对于临床上重要的泌尿病原体的简单和快速检测,包括检测到第3代头孢菌素的抗性

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Timely and accurate identification of uropathogens and determination of their antimicrobial susceptibility is paramount to the management of urinary tract infections (UTIs). The main objective of this study was to develop an assay using LAMP (Loop mediated isothermal amplification) technology for simple, rapid and sensitive detection of the most common bacteria responsible for UTIs, as well as for the detection of the most prevalent genes (encoding cefotaximases from CTX-M group 1) responsible for resistance to 3rd generation of cephalosporins. We designed primers targeting Proteus mirabilis, while those targeting Escherichia coli, Klebsiella pneumoniae and Enterococcus faecalis and the CTX-M group 1 resistance gene were benchmarked from previous studies. The amplification reaction was carried out in a warm water bath for 60?min at 63?±?0.5?°C. The amplicons were revealed by staining with Sybr Green I. Specificity and sensitivity were determined using reference DNA extracts spiked in sterile urine samples. The analytical performance of the assays was evaluated directly on pellets of urine samples from patients suspected of UTI and compared with culture. We found a high specificity (100%) for LAMP assays targeting the selected bacteria (P. mirabilis, E. coli, K. pneumoniae, E. faecalis) and the CTX-M group 1 when using DNA extracts spiked in urine samples. The sensitivities of the assays were around 1.5 103 Colony Forming Units (CFU) /mL corresponding to the cut-off value used to define bacteriuria or UTIs in patients with symptoms. Out of 161 urine samples tested, using culture as gold standard, we found a sensitivity of the LAMP techniques ranging from 96 to 100% and specificity from 95 to 100%. We showed that the LAMP assays were simple and fast. The tests showed high sensitivity and specificity using a simple procedure for DNA extraction. In addition, the assays could be performed without the need of an expensive device such as a thermal cycler. These LAMP assays could be useful as an alternative or a complementary tool to culture reducing the time to diagnosis and guiding for more effective treatment of UTIs but also as a powerful diagnostic tool in resource-limited countries where culture is not available in primary health care structures.
机译:及时,准确地鉴定尿藓病症和它们的抗微生物易感性的测定对于泌尿道感染(UTI)的管理至关重要。本研究的主要目的是利用灯(环路介导的等温扩增)技术开发测定,以便简单,快速敏感地检测最常见的utis,以及检测最普遍的基因(编码小鸡蛋白酶来自CTX-M组1)负责抗抗孢子菌素的抗性。我们设计了靶向Proteus mirabilis的引物,而靶向大肠杆菌,Klebsiella肺炎和肠球菌和CTX-M组1抗性基因的那些则从先前的研究开始。扩增反应在温水浴中在63℃下进行60Ω·min。通过Sybr Green I染色揭示扩增子。使用掺入无菌尿液样品中的参考DNA提取物测定特异性和敏感性。测定的分析性能直接评估来自涉嫌UTI并与培养相比的患者的尿液颗粒。我们发现靶向所选细菌的灯测定的高特异性(100%)(P.Mirabilis,大肠杆菌,K.Pneumoniae,E. Faeconis)和CTX-M组在使用DNA提取物中掺入尿液样品时。测定的敏感性约为1.5个103个菌落形成单元(CFU)/ mL,对应于用于定义症状患者患者的细菌或UTIS的截止值。在161个尿液样本中测试,使用培养为黄金标准,我们发现灯技术的灵敏度从96到100%,特异性从95%到100%。我们表明灯泡测定简单且快速。使用DNA提取的简单方法,测试显示出高灵敏度和特异性。另外,可以在不需要诸如热循环仪的昂贵的装置的情况下进行测定。这些灯测定可用作培养的替代或互补工具,从而减少诊断时间和指导更有效的utis治疗,而且作为资源有限的国家的强大诊断工具,其中文化在初级保健结构中没有提供文化。

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