首页> 美国卫生研究院文献>Journal of Clinical Microbiology >Comparison of Two Matrix-Assisted Laser Desorption Ionization-Time of Flight Mass Spectrometry Methods with Conventional Phenotypic Identification for Routine Identification of Bacteria to the Species Level
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Comparison of Two Matrix-Assisted Laser Desorption Ionization-Time of Flight Mass Spectrometry Methods with Conventional Phenotypic Identification for Routine Identification of Bacteria to the Species Level

机译:两种基质辅助激光解吸电离-飞行时间质谱方法与常规表型鉴定用于常规细菌鉴定到物种水平的比较

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摘要

Bacterial identification relies primarily on culture-based methodologies requiring 24 h for isolation and an additional 24 to 48 h for species identification. Matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS) is an emerging technology newly applied to the problem of bacterial species identification. We evaluated two MALDI-TOF MS systems with 720 consecutively isolated bacterial colonies under routine clinical laboratory conditions. Isolates were analyzed in parallel on both devices, using the manufacturers' default recommendations. We compared MS with conventional biochemical test system identifications. Discordant results were resolved with “gold standard” 16S rRNA gene sequencing. The first MS system (Bruker) gave high-confidence identifications for 680 isolates, of which 674 (99.1%) were correct; the second MS system (Shimadzu) gave high-confidence identifications for 639 isolates, of which 635 (99.4%) were correct. Had MS been used for initial testing and biochemical identification used only in the absence of high-confidence MS identifications, the laboratory would have saved approximately US$5 per isolate in marginal costs and reduced average turnaround time by more than an 8-h shift, with no loss in accuracy. Our data suggest that implementation of MS as a first test strategy for one-step species identification would improve timeliness and reduce isolate identification costs in clinical bacteriology laboratories now.
机译:细菌鉴定主要依赖于基于文化的方法学,该方法需要24小时进行隔离,另外需要24至48小时进行物种鉴定。基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)是一种新兴技术,新近应用于细菌物种识别问题。我们在常规临床实验室条件下评估了720个连续分离的细菌菌落的两个MALDI-TOF MS系统。使用制造商的默认建议在两个设备上并行分析了分离物。我们将MS与常规生化测试系统识别进行了比较。使用“金标准” 16S rRNA基因测序解决了不一致的结果。第一个质谱系统(布鲁克公司)对680株菌株进行了高可信度鉴定,其中674株(99.1%)正确。第二个质谱系统(Shimadzu)对639株分离物进行了高可信度鉴定,其中635株(99.4%)是正确的。如果仅在没有高可信度MS鉴定的情况下使用MS进行初始测试和生化鉴定,那么该实验室将为每个分离株节省约5美元的边际成本,并将平均周转时间减少8小时以上,没有准确性的损失。我们的数据表明,MS作为第一步检测物种的第一步测试策略的实施将提高时效性,并降低目前临床细菌学实验室中分离株的鉴定成本。

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