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首页> 外文期刊>Journal of Clinical Microbiology >Rapid and Simultaneous Detection of Mycobacterium tuberculosis Complex and Beijing/W Genotype in Sputum by an Optimized DNA Extraction Protocol and a Novel Multiplex Real-Time PCR
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Rapid and Simultaneous Detection of Mycobacterium tuberculosis Complex and Beijing/W Genotype in Sputum by an Optimized DNA Extraction Protocol and a Novel Multiplex Real-Time PCR

机译:优化的DNA提取方案和新型实时荧光定量PCR快速同时检测痰中的结核分枝杆菌复合体和北京/ W基因型

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Rapid diagnosis and genotyping of Mycobacterium tuberculosis by molecular methods are often limited by the amount and purity of DNA extracted from body fluids. In this study, we evaluated 12 DNA extraction methods and developed a highly sensitive protocol for mycobacterial DNA extraction directly from sputa using surface-coated magnetic particles. We have also developed a novel multiplex real-time PCR for simultaneous identification of M. tuberculosis complex and the Beijing/W genotype (a hypervirulent sublineage of M. tuberculosis) by using multiple fluorogenic probes targeting both the M. tuberculosis IS6110 and the Rv0927c-pstS3 intergenic region. With reference strains and clinical isolates, our real-time PCR accurately identified 20 non-Beijing/W and 20 Beijing/W M. tuberculosis strains from 17 different species of nontuberculosis Mycobacterium (NTM). Further assessment of our DNA extraction protocol and real-time PCR with 335 nonduplicate sputum specimens correctly identified all 74 M. tuberculosis culture-positive specimens. In addition, 15 culture-negative specimens from patients with confirmed tuberculosis were also identified. No cross-reactivity was detected with NTM specimens (n = 31). The detection limit of the assay is 10 M. tuberculosis bacilli, as determined by endpoint dilution analysis. In conclusion, an optimized DNA extraction protocol coupled with a novel multiprobe multiplex real-time PCR for the direct detection of M. tuberculosis, including Beijing/W M. tuberculosis, was found to confer high sensitivity and specificity. The combined procedure has the potential to compensate for the drawbacks of conventional mycobacterial culture in routine clinical laboratory setting, such as the lengthy incubation period and the limitation to viable organisms.
机译:通过分子方法对结核分枝杆菌的快速诊断和基因分型通常受到从体液中提取的DNA的数量和纯度的限制。在这项研究中,我们评估了12种DNA提取方法,并开发了一种高度敏感的协议,可使用表面被覆的磁性粒子直接从痰中提取分枝杆菌DNA。我们还开发了一种新颖的实时多重PCR技术,可同时使用多种针对结核分枝杆菌IS 6110的荧光探针,同时鉴定结核分枝杆菌复合体和Beijing / W基因型(结核分枝杆菌的超高毒亚种) Rv0927c-pstS3 基因间区域。利用参考菌株和临床分离株,我们的实时PCR可以准确地从17种不同的非结核分枝杆菌(NTM)中鉴定出20株非北京/西非和20株北京/西非的结核分枝杆菌。我们对335个非重复痰标本的DNA提取方案和实时PCR的进一步评估正确地鉴定了所有74例结核分枝杆菌培养阳性标本。此外,还确定了来自确诊为结核病患者的15个培养阴性样本。 NTM标本( n = 31)未检测到交叉反应。该分析的检出限为10 M结核杆菌,通过终点稀释分析确定。总之,发现一种优化的DNA提取方案与新颖的多探针多重实时PCR结合,可直接检测包括北京/西非结核分枝杆菌在内的结核分枝杆菌,具有较高的灵敏度和特异性。合并的程序有可能弥补常规分枝杆菌培养在常规临床实验室环境中的缺陷,例如漫长的潜伏期和对活生物体的限制。

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