首页> 外文期刊>Journal of Clinical Microbiology >Development and Validation of an In-House Database for Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry-Based Yeast Identification Using a Fast Protein Extraction Procedure
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Development and Validation of an In-House Database for Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry-Based Yeast Identification Using a Fast Protein Extraction Procedure

机译:内部数据库的开发和验证,用于基质辅助激光解吸电离–基于飞行时间质谱的酵母鉴定,采用快速蛋白质提取程序

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In recent studies evaluating the usefulness of the matrix-assisted laser desorption ionization–time of flight mass spectrometry (MALDI-TOF MS)-based identification of yeasts for the routine diagnosis of fungal infections, preanalytical sample processing has emerged as a critical step for reliable MALDI-TOF MS outcomes, especially when the Bruker Daltonics Biotyper software was used. In addition, inadequate results often occurred due to discrepancies between the methods used for clinical testing and database construction. Therefore, we created an in-house MALDI-TOF MS library using the spectra from 156 reference and clinical yeast isolates (48 species in 11 genera), which were generated with a fast sample preparation procedure. After a retrospective validation study, our database was evaluated on 4,232 yeasts routinely isolated during a 6-month period and fast prepared for MALDI-TOF MS analysis. Thus, 4,209 (99.5%) of the isolates were successfully identified to the species level (with scores of ≥2.0), with 1,676 (39.6%) having scores of >2.3. For the remaining 23 (0.5%) isolates, no reliable identification (with scores of <1.7) was obtained. Interestingly, these isolates were almost always from species uniquely represented or not included in the database. As the MALDI-TOF MS results were, except for 23 isolates, validated without additional phenotypic or molecular tests, our proposed strategy can enhance the rapidity and accuracy of MALDI-TOF MS in identifying medically important yeast species. However, while continuous updating of our database will be necessary to enrich it with more strains/species of new and emerging yeasts, the present in-house MALDI-TOF MS library can be made publicly available for future multicenter studies.
机译:在最近的研究中,评估了基于基质辅助的激光解吸电离-飞行时间质谱(MALDI-TOF MS)的酵母菌鉴定对真菌感染的常规诊断的有效性,分析前样品处理已成为可靠检测的关键步骤MALDI-TOF MS结果,特别是当使用Bruker Daltonics Biotyper软件时。此外,由于用于临床测试的方法与数据库构建方法之间的差异,经常会导致结果不足。因此,我们使用来自156种参考和临床酵母分离株(11属48种)的光谱创建了内部MALDI-TOF MS库,这些光谱是通过快速样品制备程序生成的。经过回顾性验证研究后,我们的数据库评估了在6个月内常规分离并快速准备进行MALDI-TOF MS分析的4,232种酵母。因此,成功鉴定出4,209(99.5%)个分离物至物种水平(得分≥2.0),其中1,676(39.6%)得分≥2.3。对于其余的23个(0.5%)分离株,未获得可靠的鉴定(分数<1.7)。有趣的是,这些分离株几乎总是来自唯一代表或未包含在数据库中的物种。由于对MALDI-TOF MS的结果进行了验证,除了23个分离株外,未经其他表型或分子测试的证实,因此我们提出的策略可以提高MALDI-TOF MS在鉴定重要医学酵母种类中的速度和准确性。但是,尽管需要不断更新数据库以使更多的菌株/种类的新酵母和新酵母丰富,但我们内部的MALDI-TOF MS库可以公开提供,以供将来进行多中心研究。

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