Luethy Paul M, Zelazny Adrian M
Microbiology Service, Department of Laboratory Medicine, Clinical Center, National Institutes of Health, Bethesda, MD, USA.
Microbiology Service, Department of Laboratory Medicine, Clinical Center, National Institutes of Health, Bethesda, MD, USA.
Diagn Microbiol Infect Dis. 2018 Jun;91(2):130-135. doi: 10.1016/j.diagmicrobio.2018.01.015. Epub 2018 Feb 2.
Matrix-assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS) has revolutionized fungal identification. Previously, we developed a MALDI-TOF MS mold extraction procedure and comprehensive database. While MALDI-TOF MS has become routine in a few laboratories, it has not yet become widespread. A major obstacle is the lack of a simple, reproducible and uniform protein extraction procedure. In this study, we developed and validated a rapid one-step protein extraction protocol for filamentous fungi. Excised molds were placed into tubes containing zirconia-silica beads and extraction solution without washing or ethanol inactivation steps. Extraction solutions containing different ratios of acetonitrile and formic acid were evaluated. Samples were then processed using a PowerLyzer high power bead based homogenizer and supernatants spotted for MALDI-TOF MS. The rapid method was evaluated prospectively and in parallel to our current mold extraction protocol for 3 months. Analysis of 106 clinical mold isolates resulted in an improved performance and a decrease in extraction time by 30 minutes to a total of 5 minutes of hands-on time. Acceptable identification scores (≥ 2.00) were achieved for up to 63.0% of mold isolates by the rapid method compared with 52.8% of isolates by the current routine protocol. Score comparisons between duplicate spots showed higher reproducibility of the rapid method as compared to the routine method. The rapid extraction method allows efficient analysis of clinical mold isolates both in scheduled batch runs and on an in-demand basis while providing a simple starting platform for laboratories adopting MALDI-TOF MS for mold identification.
基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)彻底改变了真菌鉴定的方式。此前,我们开发了一种MALDI-TOF MS霉菌提取程序和综合数据库。虽然MALDI-TOF MS在少数实验室已成为常规方法,但尚未广泛应用。一个主要障碍是缺乏简单、可重复且统一的蛋白质提取程序。在本研究中,我们开发并验证了一种用于丝状真菌的快速一步法蛋白质提取方案。将切下的霉菌放入含有氧化锆 - 二氧化硅珠和提取液的试管中,无需洗涤或乙醇灭活步骤。评估了含有不同比例乙腈和甲酸的提取液。然后使用基于PowerLyzer高功率珠的匀浆器处理样品,并将上清液点样用于MALDI-TOF MS分析。对该快速方法进行了前瞻性评估,并与我们当前的霉菌提取方案并行评估了3个月。对106株临床霉菌分离株的分析表明,该方法性能有所提高,提取时间减少了30分钟,实际操作时间总计为5分钟。快速方法对高达63.0%的霉菌分离株获得了可接受的鉴定分数(≥2.00),而当前常规方案为52.8%的分离株。重复点样之间的分数比较表明,与常规方法相比,快速方法具有更高的重现性。这种快速提取方法能够在预定的批量运行和按需分析中对临床霉菌分离株进行高效分析,同时为采用MALDI-TOF MS进行霉菌鉴定的实验室提供了一个简单的起始平台。