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A Side by Side Comparison of Bruker Biotyper and VITEK MS: Utility of MALDI-TOF MS Technology for Microorganism Identification in a Public Health Reference Laboratory

机译:布鲁克生物打字机和VITEK MS的并排比较:MALDI-TOF MS技术在公共卫生参考实验室中用于微生物鉴定的实用性

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摘要

Matrix-assisted laser desorption ionization–time of flight mass spectrometry (MALDI-TOF MS) has emerged as a rapid, highly accurate, and cost-effective method for routine identification of a wide range of microorganisms. We carried out a side by side comparative evaluation of the performance of Bruker Biotyper versus VITEK MS for identification of a large and diverse collection of microorganisms. Most difficult and/or unusual microorganisms, as well as commonly encountered microorganisms were selected, including Gram-positive and negative bacteria, mycobacteria, actinomycetes, yeasts and filamentous fungi. Six hundred forty two strains representing 159 genera and 441 species from clinical specimens previously identified at the Laboratoire de santé publique du Québec (LSPQ) by reference methods were retrospectively chosen for the study. They included 254 Gram-positive bacteria, 167 Gram-negative bacteria, 109 mycobacteria and aerobic actinomycetes and 112 yeasts and moulds. MALDI-TOF MS analyses were performed on both systems according to the manufacturer’s instructions. Of the 642 strains tested, the name of the genus and / or species of 572 strains were referenced in the Bruker database while 406 were present in the VITEK MS IVD database. The Biotyper correctly identified 494 (86.4%) of the strains, while the VITEK MS correctly identified 362 (92.3%) of the strains (excluding 14 mycobacteria that were not tested). Of the 70 strains not present in the Bruker database at the species level, the Biotyper correctly identified 10 (14.3%) to the genus level and 2 (2.9%) to the complex/group level. For 52 (74.2%) strains, we obtained no identification, and an incorrect identification was given for 6 (8.6%) strains. Of the 178 strains not present in the VITEK MS IVD database at the species level (excluding 71 untested mycobacteria and actinomycetes), the VITEK MS correctly identified 12 (6.8%) of the strains each to the genus and to the complex/group level. For 97 (54.5%) strains, no identification was given and for 69 (38.7%) strains, an incorrect identification was obtained. Our study demonstrates that both systems gave a high level (above 85%) of correct identification for a wide range of microorganisms. However, VITEK MS gave more misidentification when the microorganism analysed was not present in the database, compared to Bruker Biotyper. This should be taken into account when this technology is used alone for microorganism identification in a public health laboratory, where isolates received are often difficult to identify and/or unusual microorganisms.
机译:基质辅助激光解吸电离飞行时间质谱仪(MALDI-TOF MS)已经成为一种常规,快速,高度准确且具有成本效益的方法,可广泛用于各种微生物的常规鉴定。我们对Bruker Biotyper与VITEK MS的性能进行了并行比较评估,以鉴定大量的微生物。选择最困难和/或异常的微生物,以及常见的微生物,包括革兰氏阳性和阴性细菌,分枝杆菌,放线菌,酵母和丝状真菌。回顾性地选择了来自魁北克圣保罗公共实验室(LSPQ)的临床标本中通过参考方法鉴定的代表159属和441种的642株菌株进行了研究。其中包括254株革兰氏阳性菌,167株革兰氏阴性菌,109株分枝杆菌和有氧放线菌以及112株酵母和霉菌。 MALDI-TOF MS分析是根据制造商的说明在两个系统上进行的。在所测试的642个菌株中,Bruker数据库中引用了572个菌株的属和/或种类,而VITEK MS IVD数据库中存在406个。 Biotyper正确地识别了494株(86.4%)的菌株,而VITEK MS正确地识别了362株(92.3%)的菌株(不包括未经测试的14种分枝杆菌)。在布鲁克数据库中,在物种水平上不存在的70个菌株中,Biotyper正确地确定了属水平的10个(14.3%)和复杂/群体水平的2个(2.9%)。对于52个(74.2%)菌株,我们没有获得鉴定,而对6个(8.6%)菌株给出了错误的鉴定。在VITEK MS IVD数据库中在物种水平上不存在的178个菌株中(不包括71个未经测试的分枝杆菌和放线菌),VITEK MS正确地从属和复合体/组水平中正确鉴定出12个菌株(6.8%)。对于97(54.5%)株,没有给出鉴定,而对于69(38.7%)株,得到了错误的鉴定。我们的研究表明,这两种系统都能对多种微生物进行高水平(85%以上)的正确鉴定。但是,与Bruker Biotyper相比,当数据库中没有分析的微生物时,VITEK MS会给出更多的误识别。在公共卫生实验室中单独使用此技术进行微生物鉴定时,应考虑到这一点,在该实验室中,通常很难鉴定出所分离的细菌和/或不寻常的微生物。

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