首页> 美国卫生研究院文献>Journal of Clinical Microbiology >Use of Real-Time PCR and Fluorimetry for Rapid Detection of Rifampin and Isoniazid Resistance-Associated Mutations in Mycobacterium tuberculosis
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Use of Real-Time PCR and Fluorimetry for Rapid Detection of Rifampin and Isoniazid Resistance-Associated Mutations in Mycobacterium tuberculosis

机译:实时PCR和荧​​光法在结核分枝杆菌中快速检测利福平和异烟肼抗性相关突变的应用

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摘要

Very fast amplification of DNA in small volumes can be continuously monitored with a rapid cycler that incorporates fluorimetric detection. Primers were designed to amplify a 157-bp fragment of the rpoB gene spanning codons 526 and 531 and a 209-bp fragment of the katG gene spanning codon 315 of Mycobacterium tuberculosis. Most mutations associated with resistance to rifampin (RMP) and isoniazid (INH) in clinical isolates occur in these codons. Two pairs of hybridization probes were synthesized; one in each pair was 3′ labeled with fluorescein and hybridized upstream of the codon with the mutation; the other two probes were 5′ labeled with LightCycler-Red 640. Each pair of probes recognized adjacent sequences in the amplicon. After DNA amplification was finished by using a LightCycler, the temperature at which the Red 640 probe melted from the product was determined in a 3-min melt program. Twenty M. tuberculosis clinical isolates susceptible to streptomycin, INH, RMP, and ethambutol and 36 antibiotic-resistant clinical M. tuberculosis isolates (16 resistant to RMP, 16 to INH, and 4 to both antimicrobial agents) were amplified, and the presence of mutations was determined using single-strand conformation polymorphism analysis, the LiQor automated sequencer, and the LightCycler system. Concordant results were obtained in all cases. Within 30 min, the LightCycler method correctly genotyped all the strains without the need of any post-PCR sample manipulation. Overall, this pilot study demonstrated that real-time PCR coupled to fluorescence detection is the fastest available method for the detection of RMP and INH resistance-associated mutations in M. tuberculosis clinical isolates.
机译:小体积DNA的非常快速的扩增可以通过结合荧光检测的快速循环仪进行连续监测。设计引物以扩增跨越结核分枝杆菌的密码子526和531的rpoB基因的157bp片段和跨越密码子315的katG基因的209bp片段。临床分离物中与利福平(RMP)和异烟肼(INH)耐药相关的大多数突变都发生在这些密码子中。合成了两对杂交探针。每对中有一个被荧光素标记为3',并在具有突变的密码子上游杂交。其他两个探针用LightCycler-Red 640标记5'。每对探针都识别扩增子中的相邻序列。使用LightCycler完成DNA扩增后,以3分钟的熔解程序确定Red 640探针从产物中熔解的温度。扩增了对链霉素,INH,RMP和乙胺丁醇敏感的20种结核分枝杆菌临床分离株和36种抗生素耐药性临床结核分枝杆菌分离株(16种对RMP耐药,16种对INH和4种对两种抗菌剂耐药),并且存在使用单链构象多态性分析,LiQor自动测序仪和LightCycler系统确定突变。在所有情况下均获得一致的结果。在30分钟内,LightCycler方法正确鉴定了所有菌株的基因型,而无需进行任何PCR后样品操作。总体而言,这项先导研究表明,实时荧光定量PCR与荧光检测相结合是检测结核分枝杆菌临床分离株中RMP和INH耐药相关突变的最快方法。

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