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一种具有广泛属覆盖范围的 MALDI-TOF MS 数据库,用于布鲁氏菌的种水平鉴定。

A MALDI-TOF MS database with broad genus coverage for species-level identification of Brucella.

机构信息

VBMI, Inserm, Université de Montpellier, Nimes, France.

Centre National de Référence des Brucella, CHU Caremeau, Nimes, France.

出版信息

PLoS Negl Trop Dis. 2018 Oct 18;12(10):e0006874. doi: 10.1371/journal.pntd.0006874. eCollection 2018 Oct.

Abstract

Brucella are highly infectious bacterial pathogens responsible for a severely debilitating zoonosis called brucellosis. Half of the human population worldwide is considered to live at risk of exposure, mostly in the poorest rural areas of the world. Prompt diagnosis of brucellosis is essential to prevent complications and to control epidemiology outbreaks, but identification of Brucella isolates may be hampered by the lack of rapid and cost-effective methods. Nowadays, many clinical microbiology laboratories use Matrix-Assisted Laser Desorption Ionization-Time Of Flight mass spectrometry (MALDI-TOF MS) for routine identification. However, lack of reference spectra in the currently commercialized databases does not allow the identification of Brucella isolates. In this work, we constructed a Brucella MALDI-TOF MS reference database using VITEK MS. We generated 590 spectra from 84 different strains (including rare or atypical isolates) to cover this bacterial genus. We then applied a novel biomathematical approach to discriminate different species. This allowed accurate identification of Brucella isolates at the genus level with no misidentifications, in particular as the closely related and less pathogenic Ochrobactrum genus. The main zoonotic species (B. melitensis, B. abortus and B. suis) could also be identified at the species level with an accuracy of 100%, 92.9% and 100%, respectively. This MALDI-TOF reference database will be the first Brucella database validated for diagnostic and accessible to all VITEK MS users in routine. This will improve the diagnosis and control of brucellosis by allowing a rapid identification of these pathogens.

摘要

布鲁氏菌是高度传染性的细菌病原体,可导致严重的人畜共患病,称为布鲁氏菌病。全世界有一半的人口被认为处于暴露风险之中,主要是在世界上最贫穷的农村地区。及时诊断布鲁氏菌病对于预防并发症和控制流行病学暴发至关重要,但由于缺乏快速且具有成本效益的方法,可能会阻碍布鲁氏菌分离株的鉴定。如今,许多临床微生物学实验室使用基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)进行常规鉴定。然而,目前商业化数据库中缺乏参考光谱,无法鉴定布鲁氏菌分离株。在这项工作中,我们使用 VITEK MS 构建了布鲁氏菌 MALDI-TOF MS 参考数据库。我们从 84 种不同的菌株(包括罕见或非典型分离株)中生成了 590 个光谱,以涵盖该细菌属。然后,我们应用了一种新的生物数学方法来区分不同的物种。这使得我们能够在属水平上准确鉴定布鲁氏菌分离株,且无错误鉴定,特别是对于密切相关且致病性较低的 Ochrobactrum 属。主要的人畜共患病种(B. melitensis、B. abortus 和 B. suis)也可以在种水平上准确识别,准确率分别为 100%、92.9%和 100%。该 MALDI-TOF 参考数据库将是第一个经过验证的用于诊断的布鲁氏菌数据库,可供所有 VITEK MS 用户在常规使用中访问。这将通过快速鉴定这些病原体来改善布鲁氏菌病的诊断和控制。

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