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首页> 外文期刊>Infectious diseases. >Rapid detection of antibiotic resistance in positive blood cultures by MALDI-TOF MS and an automated and optimized MBT-ASTRA protocol for Escherichia coli and Klebsiella pneumoniae
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Rapid detection of antibiotic resistance in positive blood cultures by MALDI-TOF MS and an automated and optimized MBT-ASTRA protocol for Escherichia coli and Klebsiella pneumoniae

机译:通过MALDI-TOF MS快速检测阳性血液培养的抗生素耐药性,以及用于大肠杆菌和肺炎克雷伯氏菌的自动化和优化的MBT-ASTRA方案

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Introduction: For fast and effective antibiotic therapy of serious infections like sepsis, it is crucial with rapid information about antibiotic susceptibility, especially in a time when the number of infections caused by multi resistant bacteria has escalated in the world. Methods: Here, we have used a semi-quantitative MALDI-TOF-MS based method for antibiotic resistance detection, MBT-ASTRA (TM), which is based on the comparison of growth rate of the bacteria cultivated with and without antibiotics. We demonstrate a new protocol where several parameters have been optimized and automated leading to reduced hands-on time and improved capacity to simultaneously analyse multiple clinical samples and antibiotics. Results: Ninety minutes of incubation at 37 degrees C with agitation was sufficient to differentiate the susceptible and resistant strains of E. coli and K. pneumoniae, for the antibiotics cefotaxime, meropenem and ciprofloxacin. In total, 841 positive blood culture analyses of 14 reference strains were performed. The overall sensitivity was 99%, specificity 99% and the accuracy 97%. The assay gave no errors for cefotaxime (n = 263) or meropenem (n = 289) for sensitive and resistant strains, whilst ciprofloxacin (n = 289) gave six (0.7%) major errors (false resistance) and four (0.5%) very major errors (false susceptibility). The intermediate strains showed a larger variety compared to the E-test MIC values. Conclusions: The hands-on time and the analysis time to detect antibiotic resistance of clinical blood samples can be substantially reduced and the sample capacity can be increased by using automation and this improved protocol.
机译:简介:对于败血症等严重感染的快速有效的抗生素疗法,至关重要的是有关抗生素易感性的快速信息,尤其是在世界上多耐药细菌引起的感染数量已在世界上升级时。方法:在这里,我们使用了一种半定量性MALDI-TOF-MS方法来用于抗生素耐药性检测MBT-ASTRA(TM),该方法基于与抗生素有或没有抗生素的细菌的生长速率的比较。我们展示了一种新的协议,其中几个参数已被优化和自动化,从而减少了动手的时间,并提高了同时分析多种临床样品和抗生素的能力。结果:在37摄氏度下孵育90分钟足以区分大肠杆菌和肺炎的易感性和抗性菌株,用于抗生素头孢霉素,美脂蛋白和环丙沙星。总共进行了14个参考菌株的841个阳性血液培养分析。总体敏感性为99%,特异性为99%,精度为97%。该测定没有给出敏感和抗性菌株(n = 263)或MeropeNem(n = 289)的错误,而环丙沙星(n = 289)给出了六个(0.7%)的主要错误(false抗性)和四个(0.5%)和四个(0.5%)非常重大的错误(错误的敏感性)。与E-Tes​​t MIC值相比,中间菌株的种类量更大。结论:可以通过自动化和改进的方案来大大降低动手时间和分析时间来检测临床血液样本的抗生素耐药性,并可以通过自动化和改进的方案来提高样本能力。

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