University of Leipzig, Faculty of Veterinary Medicine, Institute of Bacteriology and Mycology, Leipzig, Germany.
J Clin Microbiol. 2012 Feb;50(2):419-27. doi: 10.1128/JCM.01070-11. Epub 2011 Nov 30.
Zygomycetes of the order Mucorales can cause life-threatening infections in humans. These mucormycoses are emerging and associated with a rapid tissue destruction and high mortality. The resistance of Mucorales to antimycotic substances varies between and within clinically important genera such as Mucor, Rhizopus, and Lichtheimia. Thus, an accurate diagnosis before onset of antimycotic therapy is recommended. Matrix-assisted laser desorption ionization (MALDI)-time of flight (TOF) mass spectrometry (MS) is a potentially powerful tool to rapidly identify infectious agents on the species level. We investigated the potential of MALDI-TOF MS to differentiate Lichtheimia species, one of the most important agents of mucormycoses. Using the Bruker Daltonics FlexAnalysis (version 3.0) software package, a spectral database library with m/z ratios of 2,000 to 20,000 Da was created for 19 type and reference strains of clinically relevant Zygomycetes of the order Mucorales (12 species in 7 genera). The database was tested for accuracy by use of 34 clinical and environmental isolates of Lichtheimia comprising a total of five species. Our data demonstrate that MALDI-TOF MS can be used to clearly discriminate Lichtheimia species from other pathogenic species of the Mucorales. Furthermore, the method is suitable to discriminate species within the genus. The reliability and robustness of the MALDI-TOF-based identification are evidenced by high score values (above 2.3) for the designation to a certain species and by moderate score values (below 2.0) for the discrimination between clinically relevant (Lichtheimia corymbifera, L. ramosa, and L. ornata) and irrelevant (L. hyalospora and L. sphaerocystis) species. In total, all 34 strains were unequivocally identified by MALDI-TOF MS with score values of >1.8 down to the generic level, 32 out of 34 of the Lichtheimia isolates (except CNM-CM 5399 and FSU 10566) were identified accurately with score values of >2 (probable species identification), and 25 of 34 isolates were identified to the species level with score values of >2.3 (highly probable species identification). The MALDI-TOF MS-based method reported here was found to be reproducible and accurate, with low consumable costs and minimal preparation time.
接合菌门毛霉目中的接合菌可引起人类危及生命的感染。这些毛霉病正在出现,并与快速组织破坏和高死亡率有关。毛霉目真菌对抗真菌物质的耐药性在临床上重要的属(如毛霉属、根霉属和亮菌属)之间和之内有所不同。因此,建议在开始抗真菌治疗之前进行准确的诊断。基质辅助激光解吸电离(MALDI)-飞行时间(TOF)质谱(MS)是一种快速鉴定物种水平上传染性病原体的潜在强大工具。我们研究了 MALDI-TOF MS 区分亮菌属种的潜力,亮菌属是毛霉病最重要的病原体之一。使用 Bruker Daltonics FlexAnalysis(版本 3.0)软件包,为接合菌门毛霉目临床相关的 19 种和参考菌株(7 属中的 12 种)创建了一个 m/z 比值为 2000 至 20000 Da 的光谱数据库库。通过使用总共 5 个种的 34 种临床和环境分离物的亮菌属临床和环境分离物来测试数据库的准确性。我们的数据表明,MALDI-TOF MS 可用于清晰地区分亮菌属种与毛霉目其他致病种。此外,该方法适用于属内种的鉴别。基于 MALDI-TOF 的鉴定的可靠性和稳健性通过对特定种的指定的高得分值(高于 2.3)和对临床相关(亮菌属珊瑚状、亮菌属 ramosa 和亮菌属 ornata)和不相关(亮菌属 hyalospora 和亮菌属 sphaerocystis)种之间的中等得分值(低于 2.0)得到证明。总共,所有 34 株均通过 MALDI-TOF MS 以> 1.8 的分数值明确鉴定至属水平,34 株中的 32 株亮菌属分离株(CNM-CM 5399 和 FSU 10566 除外)以> 2 的分数值准确鉴定(可能的种鉴定),34 株分离株中的 25 株以> 2.3 的分数值鉴定到种水平(高度可能的种鉴定)。报道的基于 MALDI-TOF MS 的方法被发现具有可重复性和准确性,耗材成本低,准备时间短。