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首页> 外文期刊>Journal of Clinical Microbiology >Matrix-Assisted Laser Desorption Ionization–Time of Flight (MALDI-TOF) Mass Spectrometry Using the Vitek MS System for Rapid and Accurate Identification of Dermatophytes on Solid Cultures
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Matrix-Assisted Laser Desorption Ionization–Time of Flight (MALDI-TOF) Mass Spectrometry Using the Vitek MS System for Rapid and Accurate Identification of Dermatophytes on Solid Cultures

机译:使用Vitek MS系统的基质辅助激光解吸电离-飞行时间质谱(MALDI-TOF),用于快速准确地鉴定固体培养物中的皮肤赘生植物

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The objective of this research was to extend the Vitek MS fungal knowledge base version 2.0.0 to allow the robust identification of clinically relevant dermatophytes, using a variety of strains, incubation times, and growth conditions. First, we established a quick and reliable method for sample preparation to obtain a reliable and reproducible identification independently of the growth conditions. The Vitek MS V2.0.0 fungal knowledge base was then expanded using 134 well-characterized strains belonging to 17 species in the genera Epidermophyton, Microsporum, and Trichophyton. Cluster analysis based on mass spectrum similarity indicated good species discrimination independently of the culture conditions. We achieved a good separation of the subpopulations of the Trichophyton anamorph of Arthroderma benhamiae and of anthropophilic and zoophilic strains of Trichophyton interdigitale. Overall, the 1,130 mass spectra obtained for dermatophytes gave an estimated identification performance of 98.4%. The expanded fungal knowledge base was then validated using 131 clinical isolates of dermatophytes belonging to 13 taxa. For 8 taxa all strains were correctly identified, and for 3 the rate of successful identification was >90%; 75% (6/8) of the M. gypseum strains were correctly identified, whereas only 47% (18/38) of the African T. rubrum population (also called T. soudanense) were recognized accurately, with a large quantity of strains misidentified as T. violaceum, demonstrating the close relationship of these two taxa. The method of sample preparation was fast and efficient and the expanded Vitek MS fungal knowledge base reliable and robust, allowing reproducible dermatophyte identifications in the routine laboratory.
机译:这项研究的目的是扩展Vitek MS真菌知识库2.0.0版,以使用各种菌株,孵育时间和生长条件对临床相关的皮肤真菌进行可靠的鉴定。首先,我们建立了一种快速可靠的样品制备方法,以独立于生长条件获得可靠且可重复的鉴定。然后,使用表皮浮游植物,小孢子菌和毛癣菌属中的17个物种的134个特性良好的菌株扩展了Vitek MS V2.0.0真菌知识库。基于质谱相似性的聚类分析表明,良好的物种区分能力与培养条件无关。我们实现了良好的分离的节肢动物的毛癣菌无性型亚群和叉毛癣菌的嗜人和人畜共患菌株。总体而言,皮癣菌获得的1,130质谱估计鉴定效率为98.4%。然后使用属于13个类群的131种皮肤真菌临床分离株对扩展的真菌知识库进行了验证。对于8个分类单元,所有菌株均已正确鉴定,而对于3个分类,成功鉴定率> 90%。正确鉴定出了75%(6/8)的M.石膏菌株,而只有47%(18/38)的非洲T. rubrum种群(也称为T. soudanense)被正确识别,并带有大量菌株被误认为是紫锥菌,表明这两个类群的密切关系。样品制备方法快速有效,扩展的Vitek MS真菌知识库可靠且可靠,可在常规实验室中鉴定出可重复的皮肤真菌。

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