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首页> 外文期刊>SIAM journal on applied dynamical systems >The use of matrix-assisted laser desorption ionization-time of flight mass spectrometry in the identification of Francisella tularensis
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The use of matrix-assisted laser desorption ionization-time of flight mass spectrometry in the identification of Francisella tularensis

机译:使用基质辅助激光解吸电离 - 飞行质谱中的鉴定鉴定Francisella Tularensis

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Francisella tularensis is the cause of the zoonotic disease tularemia and is classified among highly pathogenic bacteria (HPB) due to its low infection dose and potential for airborne transmission. In the case of HBP, there is a pressing need for rapid, accurate and reliable identification. Phenotypic identification of Francisella species is inappropriate for clinical microbiology laboratories because it is time-consuming, hazardous and subject to variable interpretation. Matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS) was recently evaluated as a useful tool for the rapid identification of a variety of microorganisms. In this study, we evaluated the use of MALDI-TOF MS for the rapid identification of Francisella tularensis and differentiation of its subspecies. Using national collection of Francisella isolates from the National Tularemia Reference Laboratory (Public Health Institution of Turkey, Ankara), a total of 75 clinical isolates were investigated by species and subspecies-specific polymerase chain reaction (PCR) test and MALDI-TOF MS. All isolates were originally identified as F. tularensis subsp. holarctica according to region of difference 1 (RD1) subspecies-specific PCR results. For all isolates MALDI-TOF MS provided results in concordance with subspecies-specific PCR analysis. Although PCR-based methods are effective in identifying Francisella species, they are labor-intensive and take longer periods of time to obtain the results when compared with MALDI-TOF MS. MALDI-TOF MS appeared to be a rapid, reliable and cost-effective identification technique for Francisella spp. Shorter analysis time and low cost make this an appealing new option in microbiology laboratories.
机译:Francisella Tularensis是由于其低感染剂量和空气传输潜力,在高致病性细菌(HPB)中被分类为高疾病疾病的原因。在HBP的情况下,需要快速,准确可靠的识别需求。 Francisella物种的表型鉴定不适合临床微生物学实验室,因为它是耗时的,危险的并且受可变解释的影响。辅助激光解吸电离 - 飞行量质谱(MALDI-TOF MS)最近被评估为快速鉴定各种微生物的有用工具。在这项研究中,我们评估了MALDI-TOF MS的使用,以便快速鉴定FRANCISELLA TULLENSIS和其亚种的分化。采用全国弗朗西亚·恒星的恒星分离株(Turke,Ankara)的公共卫生机构,通过物种和亚种特异性聚合酶链反应(PCR)试验和MALDI-TOF MS,研究了总共75个临床分离物。所有分离株最初被识别为F. Tularensis亚数据。 Holarctica根据差异1(RD1)亚种特异性PCR结果。对于所有隔离物,Maldi-TOF MS与特定于亚种的PCR分析提供了一致性的。虽然基于PCR的方法是有效鉴定弗朗西亚物种,但它们是劳动密集型的,并且需要更长的时间,以获得与MALDI-TOF MS相比的结果。 MALDI-TOF MS似乎是FRANCISELLA SPP的快速,可靠且经济高效的识别技术。较短的分析时间和低成本使得这种吸引人的新选择在微生物学实验室中。

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