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New Real-Time PCR Able To Detect in a Single Tube Multiple Rifampin Resistance Mutations and High-Level Isoniazid Resistance Mutations in Mycobacterium tuberculosis

机译:能够在单管中检测​​结核分枝杆菌中多个利福平耐药突变和高水平异烟肼耐药突变的新型实时荧光定量PCR

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摘要

The emergence of resistance to antituberculosis drugs is a relevant matter worldwide, but the retrieval of antibiograms for Mycobacterium tuberculosis is severely delayed when phenotypic methods are used. Genotypic methods allow earlier detection of resistance, although conventional approaches are cumbersome or lack sensitivity or specificity. We aimed to design a new real-time PCR method to detect rifampin (RIF)- and isoniazid (INH)-resistant M. tuberculosis strains in a single reaction tube. First, we characterized the resistant isolates in our area of Spain by DNA sequencing. Some mutation was found within the rpoB core region in all the RIF-resistant (RIFr) strains. Forty-six percent of the INH-resistant (INHr) strains showed a mutation in katG codon 315, and most of these were associated with high MICs. Eighteen of the RIFr, INHr, and multidrug-resistant strains sequenced were tested by our real-time PCR assay; and full concordance of the results of the PCR with the sequencing data was obtained. In addition, a blind test was performed with a panel of 15 different susceptible and resistant strains from throughout Spain, and our results were also in 100% agreement with the sequencing data. Ours is the first assay based on rapid-cycle PCR able to simultaneously detect in a single reaction tube a large variety of mutations associated with RIF resistance (12 different mutations affecting 8 independent codons, including the most prevalent mutations at positions 526 and 531) and the most frequent INH resistance mutations. Our design could be a model for new, rapid genotypic methods able to simultaneously detect a wide variety of antibiotic resistance mutations.
机译:抗结核药物耐药性的出现是世界范围内的一个相关问题,但是当使用表型方法时,结核分枝杆菌抗菌谱的检索就严重延迟了。基因型方法可以较早地检测出耐药性,尽管常规方法比较麻烦或缺乏敏感性或特异性。我们旨在设计一种新的实时PCR方法,以在单个反应管中检测耐利福平(RIF)和耐异烟肼(INH)的结核分枝杆菌菌株。首先,我们通过DNA测序对西班牙地区的耐药菌株进行了鉴定。在所有RIF抗性(RIFr)菌株的rpoB核心区域内发现了一些突变。 46%的INH耐药(INHr)菌株在katG密码子315中显示出突变,并且大多数与高MIC相关。通过我们的实时荧光定量PCR检测了18个已测序的RIFr,INHr和耐多药菌株。 PCR结果与测序数据完全一致。此外,对整个西班牙的15种不同的敏感和耐药菌株进行了盲测,我们的结果也与测序数据100%一致。我们的方法是第一个基于快速循环PCR的检测方法,能够在单个反应管中同时检测与RIF抗性相关的多种突变(影响8个独立密码子的12种不同突变,包括526和531位最普遍的突变)和最常见的INH耐药性突变。我们的设计可能是能够同时检测多种抗生素抗性突变的新型快速基因型方法的模型。

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