Matsumura Yasufumi, Yamamoto Masaki, Nagao Miki, Tanaka Michio, Machida Kiyomasa, Ito Yutaka, Takakura Shunji, Ichiyama Satoshi
Department of Clinical Laboratory Medicine, Kyoto University Graduate School of Medicine, Kyoto, Japan.
J Clin Microbiol. 2014 Apr;52(4):1034-40. doi: 10.1128/JCM.03196-13. Epub 2014 Jan 15.
Escherichia coli sequence type 131 (ST131) and ST405 are important clonal groups, because they are associated with the global increase of extended-spectrum-β-lactamase (ESBL) producers. Matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS) is emerging as a rapid, inexpensive, and accurate method for bacterial identification. We investigated the detection performance of MALDI-TOF for the ST131 and ST405 clonal groups using 41 ST131-O25b, 26 ST131-O16, and 41 ST405 ESBL-producing isolates and 41 ESBL-producing isolates frrom other STs. The main spectra representing each clonal group were used for classification with Biotyper (Bruker Daltonics GmbH, Bremen, Germany). The peak that had the highest area under the receiver-operating characteristic curve generated by ClinProTools (Bruker) was detected with FlexAnalysis (Bruker), and an optimal signal-to-noise ratio cutoff was determined. The optimal detection models were generated by ClinProTools. Classification by Biotyper could detect the ST131-whole (O25b and O16 together) group with a sensitivity of 98.5% and a specificity of 93.9%. With FlexAnalysis, a peak of 9,720 Da detected the ST131-whole group with a sensitivity of 97.0% and a specificity of 91.5% at a cutoff value of 8.0. The ClinProTools models exhibited good performance for the detection of the ST131-whole group (sensitivity and specificity, 94.0% and 92.7%, respectively), the ST131-O25b group (95.1% and 98.2%, respectively), and the ST405 group (90.2% and 96.3%, respectively). MALDI-TOF MS had high detection performance for the ST131-whole, ST131-O25b, and ST405 clonal groups. MALDI-TOF MS should be considered as an alternative method to monitor the epidemiology of the ESBL-producing E. coli ST131 and ST405 clonal groups.
大肠杆菌序列类型131(ST131)和ST405是重要的克隆群,因为它们与产超广谱β-内酰胺酶(ESBL)菌株在全球范围内的增加有关。基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)正成为一种快速、廉价且准确的细菌鉴定方法。我们使用41株ST131-O25b、26株ST131-O16和41株产ESBL的ST405菌株以及41株来自其他序列类型的产ESBL菌株,研究了MALDI-TOF对ST131和ST405克隆群的检测性能。代表每个克隆群的主要质谱用于通过Biotyper(德国不来梅的布鲁克道尔顿公司)进行分类。使用FlexAnalysis(布鲁克)检测由ClinProTools(布鲁克)生成的在接收者操作特征曲线下面积最大的峰,并确定最佳信噪比截断值。由ClinProTools生成最佳检测模型。通过Biotyper进行分类能够检测出ST131全群(O25b和O16合并),灵敏度为98.5%,特异性为93.9%。使用FlexAnalysis,在截断值为8.0时,检测到的9720 Da的峰对ST131全群的检测灵敏度为97.0%,特异性为91.5%。ClinProTools模型对ST131全群(灵敏度和特异性分别为94.0%和92.7%)、ST131-O25b群(分别为95.1%和98.2%)以及ST405群(分别为90.2%和96.3%)的检测表现良好。MALDI-TOF MS对ST131全群、ST131-O25b和ST405克隆群具有较高的检测性能。应将MALDI-TOF MS视为监测产ESBL大肠杆菌ST131和ST405克隆群流行病学的替代方法。