首页> 外文期刊>Journal of Clinical Microbiology >Advantages of Using Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry as a Rapid Diagnostic Tool for Identification of Yeasts and Mycobacteria in the Clinical Microbiological Laboratory
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Advantages of Using Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry as a Rapid Diagnostic Tool for Identification of Yeasts and Mycobacteria in the Clinical Microbiological Laboratory

机译:使用基质辅助激光解吸电离 - 飞行质谱时间的优点作为临床微生物实验室鉴定酵母和分枝杆菌的快速诊断工具

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Yeast and mycobacteria can cause infections in immunocompromised patients and normal hosts. The rapid identification of these organisms can significantly improve patient care. There has been an increasing number of studies on using matrix-assisted laser desorption ionization–time of flight mass spectrometry (MALDI-TOF MS) for rapid yeast and mycobacterial identifications. However, studies on direct comparisons between the Bruker Biotyper and bioMérieux Vitek MS systems for the identification of yeast and mycobacteria have been limited. This study compared the performance of the two systems in their identification of 98 yeast and 102 mycobacteria isolates. Among the 98 yeast isolates, both systems generated species-level identifications in >70% of the specimens, of which Candida albicans was the most commonly cultured species. At a genus-level identification, the Biotyper system identified more isolates than the Vitek MS system for Candida (75/78 [96.2%]versus 68/78 [87.2%], respectively; P = 0.0426) and non-Candida yeasts (18/20 [90.0%]versus 7/20 [35.0%], respectively; P = 0.0008). For mycobacterial identification, the Biotyper system generated reliable identifications for 89 (87.3%) and 64 (62.8%) clinical isolates at the genus and species levels, respectively, from solid culture media, whereas the Vitek MS system did not generate any reliable identification. The MS method differentiated 12/21 clinical species, despite the fact that no differentiation between Mycobacterium abscessus and Mycobacterium chelonae was found by using 16S rRNA gene sequencing. In summary, the MALDI-TOF MS method provides short turnaround times and a standardized working protocol for the identification of yeast and mycobacteria. Our study demonstrates that MALDI-TOF MS is suitable as a first-line test for the identification of yeast and mycobacteria in clinical laboratories.
机译:酵母和分枝杆菌会导致免疫疗效和正常宿主的感染。这些生物的快速鉴定可以显着改善患者护理。使用基质辅助激光解吸电离 - 飞行质谱(MALDI-TOF MS)的基质辅助激光解吸电离 - 快速酵母和分枝杆菌鉴定的研究越来越多。然而,关于Bruker Biotyper和BioMérieuxVitekMS系统的直接比较的研究受到限制。本研究比较了两种系统在鉴定98酵母和102分枝杆菌分离物中的性能。在98个酵母菌中,两个系统都产生了> 70%标本的物种级别鉴定,其中念珠菌白醛本身是最常见的物种。在Genus级鉴定中,生物脂肪系统鉴定了比念珠菌的Vitek MS系统更多的分离物(75/78 [96.2%],分别为68/78 [87.2%]; P = 0.0426)非念珠菌酵母(18/20 [90.0%]分别为7/20 [35.0%]; P = 0.0008)。对于分枝杆菌鉴定,生物粘液系统分别产生89(87.3%)和64(62.8%)的可靠性鉴定,分别由固体培养基分别在Genus和物种水平上产生可靠的鉴定,而Vitek MS系统没有产生任何可靠的鉴定。 MS方法分化了12/21临床种类,尽管通过使用16S rRNA基因测序发现分枝杆菌和细胞分枝杆菌之间没有分化。总之,MALDI-TOF MS方法提供短的周转时间和标准化的工作方案,用于鉴定酵母和分枝杆菌。我们的研究表明,MALDI-TOF MS适合作为临床实验室鉴定酵母和分枝杆菌的一线试验。

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