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用于快速鉴定结核分枝杆菌的多重检测方法的开发。

Development of multiplex assay for rapid characterization of Mycobacterium tuberculosis.

作者信息

Bergval I L, Vijzelaar R N C P, Dalla Costa E R, Schuitema A R J, Oskam L, Kritski A L, Klatser P R, Anthony R M

机构信息

KIT Biomedical Research, Royal Tropical Institute, Meibergdreef 39, 1105 AZ Amsterdam, The Netherlands.

出版信息

J Clin Microbiol. 2008 Feb;46(2):689-99. doi: 10.1128/JCM.01821-07. Epub 2007 Dec 12.

Abstract

We have developed a multiplex assay, based on multiplex ligation-dependent probe amplification (MLPA), that allows simultaneous detection of multiple drug resistance mutations and genotype-specific mutations at any location in the Mycobacterium tuberculosis genome. The assay was validated on a reference panel of well-characterized strains, and the results show that M. tuberculosis can be accurately characterized by our assay. Eighteen discriminatory markers identifying drug resistance (rpoB, katG, inhA, embB), members of the M. tuberculosis complex (16S rRNA, IS6110, TbD1), the principal genotypic group (katG, gyrA), and Haarlem and Beijing strains (ogt, mutT2, mutT4) were targeted. A sequence specificity of 100% was reached for 16 of the 18 selected genetic targets. In addition, a panel of 47 clinical M. tuberculosis isolates was tested by MLPA in order to determine the correlation between phenotypic drug resistance and MLPA and between spoligotyping and MLPA. Again, all mutations present in these isolates that were targeted by the 16 functional probes were identified. Resistance-associated mutations were detected by MLPA in 71% of the identified rifampin-resistant strains and in 80% of the phenotypically isoniazid-resistant strains. Furthermore, there was a perfect correlation between MLPA results and spoligotypes. When MLPA is used on confirmed M. tuberculosis clinical specimens, it can be a useful and informative instrument to aid in the detection of drug resistance, especially in laboratories where drug susceptibility testing is not common practice and where the rates of multidrug-resistant and extensively drug resistant tuberculosis are high. The flexibility and specificity of MLPA, along with the ability to simultaneously genotype and detect drug resistance mutations, make MLPA a promising tool for pathogen characterization.

摘要

我们基于多重连接依赖探针扩增技术(MLPA)开发了一种多重检测方法,该方法能够同时检测结核分枝杆菌基因组中任意位置的多种耐药性突变和基因型特异性突变。该检测方法在一组特征明确的参考菌株上进行了验证,结果表明我们的检测方法能够准确地对结核分枝杆菌进行特征鉴定。我们针对18个具有鉴别意义的标记物进行了检测,这些标记物可用于识别耐药性(rpoB、katG、inhA、embB)、结核分枝杆菌复合群成员(16S rRNA、IS6110、TbD1)、主要基因型组(katG、gyrA)以及哈勒姆菌株和北京菌株(ogt、mutT2、mutT4)。在所选择的18个基因靶点中,有16个靶点的序列特异性达到了100%。此外,我们还通过MLPA对47株临床结核分枝杆菌分离株进行了检测,以确定表型耐药性与MLPA之间以及间隔寡核苷酸分型与MLPA之间的相关性。同样,所有被16个功能探针靶向的这些分离株中的突变均被识别出来。通过MLPA在71%的已鉴定耐利福平菌株和80%的表型耐异烟肼菌株中检测到了与耐药相关的突变。此外,MLPA结果与间隔寡核苷酸分型之间存在完美的相关性。当将MLPA应用于确诊的结核分枝杆菌临床标本时,它可以成为一种有用且信息丰富的工具,有助于耐药性的检测,特别是在那些药敏试验不常见且耐多药和广泛耐药结核病发生率较高的实验室中。MLPA的灵活性和特异性,以及同时进行基因分型和检测耐药性突变的能力,使其成为病原体特征鉴定的一种有前途的工具。

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