首页> 美国卫生研究院文献>Journal of Clinical Microbiology >Matrix-Assisted Laser Desorption Ionization-Time of Flight Mass Spectrometry-Based Single Nucleotide Polymorphism Genotyping Assay Using iPLEX Gold Technology for Identification of Mycobacterium tuberculosis Complex Species and Lineages
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Matrix-Assisted Laser Desorption Ionization-Time of Flight Mass Spectrometry-Based Single Nucleotide Polymorphism Genotyping Assay Using iPLEX Gold Technology for Identification of Mycobacterium tuberculosis Complex Species and Lineages

机译:使用iPLEX Gold技术的基于基质辅助的激光解吸电离-飞行时间质谱的单核苷酸多态性基因型分型鉴定结核分枝杆菌复杂物种和谱系

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摘要

The major goal of the present study was to investigate the potential use of a novel single nucleotide polymorphism (SNP) genotyping technology, called iPLEX Gold (Sequenom), for the simultaneous analysis of 16 SNPs that have been previously validated as useful for identification of Mycobacterium tuberculosis complex (MTBC) species and classification of MTBC isolates into distinct genetic lineages, known as principal genetic groups (PGGs) and SNP cluster groups (SCGs). In this context, we developed a 16-plex iPLEX assay based on an allele-specific-primer single-base-extension reaction using the iPLEX Gold kit (Sequenom), followed by matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS) analysis on the commercially available Sequenom MassARRAY platform. This assay was tested on a panel of 55 well-characterized MTBC strains that were also genotyped for the same loci using the previously reported SNaPshot assay, as well as 10 non-MTBC mycobacteria and 4 bacteria not belonging to the genus Mycobacterium. All MTBC samples were successfully analyzed with the iPLEX assay, which yielded clear allelic data for 99.9% of the SNPs (879 out of 880). No false-positive results were obtained with the negative controls. Compared to the SNaPshot assay, the newly developed 16-plex iPLEX assay produced fully concordant results that allowed reliable differentiation of MTBC species and recognition of lineages, thus demonstrating its potential value in diagnostic, epidemiological, and evolutionary applications. Compared to the SNaPshot approach, the implementation of the iPLEX technology could offer a higher throughput and could be a more flexible and cost-effective option for microbiology laboratories.
机译:本研究的主要目的是研究一种名为iPLEX Gold(Sequenom)的新型单核苷酸多态性(SNP)基因分型技术在同时分析16种已被证实可用于鉴定分枝杆菌的SNP的潜在用途。结核复合体(MTBC)种类和MTBC分离物分为不同的遗传谱系,称为主要遗传群(PGG)和SNP簇群(SCG)。在这种情况下,我们使用iPLEX Gold试剂盒(Sequenom),基于等位基因特异性引物单碱基延伸反应,开发了一种16重iPLEX分析方法,然后进行基质辅助激光解吸电离飞行时间质谱分析(在市售的Sequenom MassARRAY平台上进行MALDI-TOF MS)分析。使用先前报道的SNaPshot测定法在一组55个特征明确的MTBC菌株(也对相同基因座进行基因分型)以及10个非MTBC分枝杆菌和4个不属于分枝杆菌属的细菌上进行了测试。所有的MTBC样品均通过iPLEX分析成功进行了分析,可得到99.9%的SNP(880个中的879个)的清晰等位基因数据。用阴性对照没有得到假阳性结果。与SNaPshot测定法相比,新开发的16重iPLEX测定法产生了完全一致的结果,可实现MTBC物种的可靠区分和谱系的识别,从而证明了其在诊断,流行病学和进化应用中的潜在价值。与SNaPshot方法相比,iPLEX技术的实施可以提供更高的通量,并且对于微生物实验室而言可能是更灵活,更具成本效益的选择。

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