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Vitek MS与布鲁克基质辅助激光解吸电离飞行时间质谱系统用于鉴定马红球菌和迪茨氏菌属的比较

Comparison of the Vitek MS and Bruker Matrix-Assisted Laser Desorption Ionization-Time of Flight Mass Spectrometry Systems for Identification of Rhodococcus equi and Dietzia spp.

作者信息

de Alegría Puig Carlos Ruiz, Pilares Lilian, Marco Francesc, Vila Jordi, Martínez-Martínez Luis, Navas Jesús

机构信息

University Hospital Marqués de Valdecilla-IDIVAL, Santander, Spain

Department of Molecular Biology, School of Medicine, Cantabria University, Santander, Spain.

出版信息

J Clin Microbiol. 2017 Jul;55(7):2255-2260. doi: 10.1128/JCM.00377-17. Epub 2017 May 10.

Abstract

causes pyogranulomatous pneumonia in domesticated animals and immunocompromised humans. spp. are environmental bacteria that have rarely been associated with human infections. and spp. are closely related actinomycetes. Phenotypic discrimination between and on the basis of their Gram stain morphology and colony appearance is problematic. Matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS) is a fast, reliable, and cost-effective method for identification of a wide variety of microorganisms. We have evaluated the performance of Bruker Biotyper versus that of Vitek MS for identification of a collection of 154 isolates identified at the source as that includes isolates belonging to the genus PCR amplification of the gene, encoding a cholesterol oxidase, and 16S rRNA sequencing were considered the reference methods for identification. Biotyper identified 131 (85.1%) of the 154 isolates at the species level, and this figure increased to 152 (98.7%) when the species cutoff was reduced from a score of ≥2.000 to ≥1.750. Vitek MS correctly identified at the species level 130 (84.4%) isolates as long as bacteria were extracted with ethanol but only 35 (22.7%) isolates when samples were prepared by direct extraction from colonies. The two systems allowed differentiation between and spp., but identification of all sp. isolates at the species level needed sequencing of the 16S rRNA gene.

摘要

可引起家畜和免疫功能低下人群的脓性肉芽肿性肺炎。该菌属是环境细菌,很少与人类感染相关。[具体菌属1]和[具体菌属2]是密切相关的放线菌。基于革兰氏染色形态和菌落外观对[具体菌属1]和[具体菌属2]进行表型鉴别存在问题。基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)是一种快速、可靠且经济高效的鉴定多种微生物的方法。我们评估了布鲁克微生物鉴定系统(Bruker Biotyper)与Vitek MS对154株最初鉴定为[具体菌属1]的菌株的鉴定性能,其中包括属于[具体菌属2]的菌株。编码胆固醇氧化酶的[具体基因]的PCR扩增和16S rRNA测序被视为[具体菌属1]鉴定的参考方法。Biotyper在种水平上鉴定出154株菌株中的131株(85.1%),当种水平的截断分数从≥2.000降至≥1.750时,这一数字增至152株(98.7%)。只要用乙醇提取细菌,Vitek MS就能在种水平上正确鉴定130株(84.4%)菌株,但当通过直接从菌落中提取样本制备时,仅能鉴定35株(22.7%)菌株。这两种系统能够区分[具体菌属1]和[具体菌属2],但要在种水平上鉴定所有[具体菌属1]菌株则需要对16S rRNA基因进行测序。

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