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Amplicon DNA Melting Analysis for the Simultaneous Detection of Brucella spp and Mycobacterium tuberculosis Complex. Potential Use in Rapid Differential Diagnosis between Extrapulmonary Tuberculosis and Focal Complications of Brucellosis

机译:扩增DNa解链分析布鲁氏菌的同时检测和结核分枝杆菌复合。肺外结核和布鲁氏菌病的焦点并发症之间的快速鉴别诊断的潜在用途

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摘要

Some sites of extrapulmonary tuberculosis and focal complications of brucellosis are very difficult to differentiate clinically, radiologically, and even histopathologically. Conventional microbiological methods for the diagnosis of extrapulmonary tuberculosis and complicated brucellosis not only lack adequate sensitivity, they are also time consuming, which could lead to an unfavourable prognosis. The aim of this work was to develop a multiplex real-time PCR assay based on SYBR Green I to simultaneously detect Brucella spp and Mycobacterium tuberculosis complex and evaluate the efficacy of the technique with different candidate genes. The IS711, bcsp31 and omp2a genes were used for the identification of Brucella spp and the IS6110, senX3-regX3 and cfp31 genes were targeted for the detection of the M. tuberculosis complex. As a result of the different combinations of primers, nine different reactions were evaluated. A test was defined as positive only when the gene combinations were capable of co-amplifying both pathogens in a single reaction tube and showed distinguishable melting temperatures for each microorganism. According to the melting analysis, only three combinations of amplicons (senX3-regX3+bcsp31, senX3-regX3+IS711 and IS6110+IS711) were visible. Detection limits of senX3-regX3+bcsp31 and senX3-regX3+IS711 were of 2 and 3 genome equivalents for M. tuberculosis complex and Brucella while for IS6110+IS711 they were of 200 and 300 genome equivalents, respectively. The three assays correctly identified all the samples, showing negative results for the control patients. The presence of multicopy elements and GC content were the components most influencing the efficiency of the test; this should be taken into account when designing a multiplex-based SYBR Green I assay. In conclusion, multiplex real time PCR assays based on the targets senX3-regX3+bcsp31 and senX3-regX3+IS711 using SYBR Green I are highly sensitive and reproducible. This may therefore be a practical approach for the rapid differential diagnosis between extrapulmonary tuberculosis and complicated brucellosis.
机译:临床,放射学甚至组织病理学很难区分肺外结核的某些部位和布鲁氏菌病的局灶性并发症。诊断肺外结核和复杂布鲁氏菌病的常规微生物学方法不仅缺乏足够的敏感性,而且费时,可能导致不良的预后。这项工作的目的是开发一种基于SYBR Green I的多重实时PCR检测方法,以同时检测布鲁氏菌属和结核分枝杆菌复合物,并评估具有不同候选基因的技术的有效性。 IS711,bcsp31和omp2a基因用于布鲁氏菌属的鉴定,而IS6110,senX3-regX3和cfp31基因则用于检测结核分枝杆菌复合体。由于引物的不同组合,评估了九种不同的反应。仅当基因组合能够在单个反应管中共同扩增两种病原体并显示出每种微生物的可分辨解链温度时,才将测试定义为阳性。根据解链分析,仅可见三个扩增子组合(senX3-regX3 + bcsp31,senX3-regX3 + IS711和IS6110 + IS711)。 senX3-regX3 + bcsp31和senX3-regX3 + IS711的检出限分别为结核分枝杆菌复合物和布鲁氏菌的2和3个基因组当量,而IS6110 + IS711的检出限分别为200和300个基因组当量。这三种测定正确地鉴定了所有样品,对对照患者显示阴性结果。多重复制元素的存在和GC含量是影响测试效率的最重要因素;设计基于多重的SYBR Green I分析时,应考虑到这一点。总之,使用SYBR Green I基于靶标senX3-regX3 + bcsp31和senX3-regX3 + IS711的多重实时PCR分析具有很高的灵敏度和可重复性。因此,这对于肺外结核与复杂布鲁氏菌病之间的快速鉴别诊断可能是一种实用的方法。

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