首页> 美国卫生研究院文献>Journal of Clinical Microbiology >Direct Analysis and Identification of Pathogenic Lichtheimia Species by Matrix-Assisted Laser Desorption Ionization–Time of Flight Analyzer-Mediated Mass Spectrometry
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Direct Analysis and Identification of Pathogenic Lichtheimia Species by Matrix-Assisted Laser Desorption Ionization–Time of Flight Analyzer-Mediated Mass Spectrometry

机译:基质辅助激光解吸电离-飞行时间分析仪介导的质谱法直接分析和鉴定致病性肝炎种类

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摘要

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.
机译:毛cor科的合酶菌可在人类中造成威胁生命的感染。这些粘液粘膜层正在出现并与快速组织破坏和高死亡率有关。在临床上重要的属例如Mucor,Rhizopus和Lichtheimia之间和之内,Mucorales对抗真菌物质的抗性是不同的。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)是一种潜在强大的工具,可以在物种水平上快速识别传染原。我们研究了MALDI-TOF MS区分Lichtheimia物种(粘液菌最重要的药物之一)的潜力。使用Bruker Daltonics FlexAnalysis(3.0版)软件包,创建了19种类型和参考菌株的临床相关噬菌体(Mucorales等级)(7个属12种)的m / z比为2,000至20,000 Da的光谱数据库库。通过使用34种总共5种的Lichtheimia临床和环境分离株对数据库进行准确性测试。我们的数据表明,MALDI-TOF MS可用于清楚地区分Lichtheimia物种和Mucorales的其他致病物种。此外,该方法适合于区分属内的物种。基于MALDI-TOF的鉴定的可靠性和鲁棒性由指定给特定物种的高分值(2.3以上)和区分临床相关的(Lichtheimia corymbifera,L.)的中等分值(2.0以下)证明。 ramosa和L. ornata)和无关的(L. hyalospora和L. sphaerocystis)物种。总体而言,通过MALDI-TOF MS明确鉴定了所有34株菌株,其得分值均低于1.8,且低于一般水平,在34个Lichtheimia分离株中(其中CNM-CM 5399和FSU 10566除外),有32株均以得分值进行了准确鉴定大于2的样本(可能的物种识别),并且在34个分离株中有25个被鉴定为得分水平大于2.3的物种(高度可能的物种识别)。发现此处报道的基于MALDI-TOF MS的方法可重现且准确,耗材成本低,制备时间最短。

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