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首页> 外文期刊>European journal of clinical microbiology and infectious diseases: Official publication of the European Society of Clinical Microbiology >MALDI-TOF mass spectrometry as a tool for the discrimination of high-risk Escherichia coli clones from phylogenetic groups B2 (ST131) and D (ST69, ST405, ST393)
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MALDI-TOF mass spectrometry as a tool for the discrimination of high-risk Escherichia coli clones from phylogenetic groups B2 (ST131) and D (ST69, ST405, ST393)

机译:MALDI-TOF质谱法作为区分系统发育B2组(ST131)和D组(ST69,ST405,ST393)的高风险大肠杆菌克隆的工具

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摘要

Reliable, quick and low-cost methods are needed for the early detection of multidrug-resistant and highly virulent high-risk B2 and D Escherichia coli clones or clonal complexes (HiRCC). Matrix-assisted laser desorption/ionisation time-of-flight mass spectrometry (MALDI-TOF MS) seems to have a good discriminatory potential at different subspecies levels, but it was never evaluated for the discrimination of E. coli clones. We assessed the potential of MALDI-TOF MS coupled to multivariate data analysis to discriminate representative E. coli B2 and D HiRCC. Seventy-three E. coli isolates from B2 (including ST131 and B2 non-ST131 clones) and D (ST69, ST393, ST405) with variable pulsed-field gel electrophoresis (PFGE) patterns, origins and dates (1980-2010) were tested. MS spectra were acquired from independent extracts obtained from different plate cultures in two different Microflex LT MALDI-TOF devices (Bruker) after a standard extraction procedure. MALDI-TOF MS fingerprinting analysis revealed a good discriminatory ability between the four HiRCC analysed (ST131, ST69, ST405, ST393) and between B2 ST131 and other B2 non-ST131 isolates. Clusters defined by MALDI-TOF MS were consistent with the clonal complexes assigned by multilocus sequence typing (MLST), although differences were detected regarding the composition of clusters obtained by the comparison of PFGE profiles. We demonstrate, for the first time, that characteristic mass fingerprints of different E. coli HiRCC are sufficiently discriminatory and robust to enable their differentiation by MALDI-TOF MS, which might represent a promising tool for the optimisation of infection control, individual patient management and large-scale epidemiological studies of public health relevance. The good correlation between phenotypic and genotypic features further corroborates phylogenetic relationships delineated by MLST.
机译:需要可靠,快速且低成本的方法来早期检测具有多重耐药性和高毒力的高风险B2和D大肠杆菌克隆或克隆复合物(HiRCC)。基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)似乎在不同亚种水平上具有良好的鉴别潜力,但从未对其进行大肠杆菌克隆的鉴别评估。我们评估了MALDI-TOF MS与多变量数据分析相结合以区分代表性大肠杆菌B2和D HiRCC的潜力。测试了来自B2(包括ST131和B2非ST131克隆)和D(ST69,ST393,ST405)的73种大肠杆菌的分离株,这些菌株具有可变脉冲场凝胶电泳(PFGE)模式,起源和日期(1980-2010年) 。在标准提取程序后,从在两种不同的Microflex LT MALDI-TOF装置(布鲁克)中从不同平板培养物中获得的独立提取物中获得MS光谱。 MALDI-TOF MS指纹分析表明,在所分析的四个HiRCC(ST131,ST69,ST405,ST393)之间以及B2 ST131与其他B2非ST131分离株之间具有良好的区分能力。 MALDI-TOF MS定义的簇与多基因座序列分型(MLST)分配的克隆复合物一致,尽管通过比较PFGE图谱获得的簇的组成被检测到差异。我们首次证明,不同大肠杆菌HiRCC的特征性质量指纹具有足够的区分性和鲁棒性,可以通过MALDI-TOF MS进行区分,这可能是优化感染控制,个体患者管理和治疗的有前途的工具与公共卫生相关的大规模流行病学研究。表型和基因型特征之间的良好相关性进一步证实了MLST所描述的系统发育关系。

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