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Rapid speciation of 15 clinically relevant mycobacteria with simultaneous detection of resistance to rifampin, isoniazid, and streptomycin in Mycobacterium tuberculosis complex

机译:快速鉴定15种临床相关分枝杆菌,同时检测结核分枝杆菌复合物中对利福平,异烟肼和链霉素的耐药性

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SummaryObjective To design and standardize an in-house reverse line blot hybridization (RLBH) assay for the accurate identification of 15 clinically relevant species of mycobacteria and for the detection of drug resistance to rifampin (RIF), isoniazid (INH), and streptomycin (STR) in Mycobacterium tuberculosis complex (MTB).Material and methods Oligonucleotides specific for 15 different species of mycobacteria and wild type and mutant alleles of selected codons in the rpo[beta], inhA, katG, rpsL, and rrs genes were designed and immobilized on a membrane. A multiplex PCR was standardized to amplify all target genes. The assay was optimized using ATCC and known mutant strains. Three hundred MTB isolates, 85 non-tuberculous mycobacteria (NTM) isolates, and 48 smear-positive specimens were analyzed. Results were confirmed by PCR restriction enzyme assay and sequencing.Results Upon RLBH analysis, among the NTM, 14% were identified as Mycobacterium fortuitum, 16% were identified as Mycobacterium abscessus, 20% showed 99% homology with Mycobacterium intracellulare, and 31% showed 98% homology with Mycobacterium simiae. Of the 300 MTB isolates analyzed, 75% RIF-resistant isolates had Ser531Leu mutation in the rpo[beta] gene. Of the INH-resistant isolates, 89% showed Ser315Thr mutation in the katG gene, whereas 16% showed -15 C-->T mutation in the promoter region of the inhA gene. Among STR-resistant isolates, 75% had A-->G mutation in the rpsL gene at codon 43. RLBH results showed 96-99% concordance with phenotypic culture results.Conclusion This is a first attempt at combining speciation with detection of drug resistance to RIF, INH, and STR in MTB for accurate and rapid management of mycobacterial infections as well as for compiling genotypic epidemiological data.
机译:摘要目的设计和标准化内部反向线印迹杂交(RLBH)测定法,以准确鉴定15种临床相关分枝杆菌种,并检测对利福平(RIF),异烟肼(INH)和链霉素(STR)的耐药性设计和固定对15种不同分枝杆菌和野生型以及rpoβ,inhA,katG,rpsL和rrs基因中选定密码子突变等位基因具有特异性的寡核苷酸膜多重PCR被标准化以扩增所有靶基因。使用ATCC和已知的突变菌株对测定进行优化。分析了300个MTB分离株,85个非结核分枝杆菌(NTM)分离株和48个涂片阳性标本。经PCR限制性内切酶分析和测序证实结果。结果经RLBH分析,在NTM中,14%被鉴定为福特分枝杆菌,16%被鉴定为脓肿分枝杆菌,20%与胞内分枝杆菌有99%同源性,31%被鉴定为胞分枝杆菌。与simiae的98%同源。在分析的300种MTB分离株中,抗RIF的分离株的75%在rpoβ基因中具有Ser531Leu突变。在耐INH的菌株中,有89%在katG基因中显示Ser315Thr突变,而16%在inhA基因的启动子区域中显示-15 C→T突变。在抗STR菌株中,有75%的rpsL基因在43位密码子处有A-> G突变。RLBH结果显示与表型培养结果符合96-99%。结论这是首次将形态学与耐药性相结合的尝试。 MTB中的RIF,INH和STR,以准确,快速地处理分枝杆菌感染,并收集基因型流行病学数据。

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