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首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Detection of Mycobacterium tuberculosis by Real-Time PCR Using Pan-Mycobacterial Primers and a Pair of Fluorescence Resonance Energy Transfer Probes Specific for the M. tuberculosis Complex
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Detection of Mycobacterium tuberculosis by Real-Time PCR Using Pan-Mycobacterial Primers and a Pair of Fluorescence Resonance Energy Transfer Probes Specific for the M. tuberculosis Complex

机译:使用泛分枝杆菌引物和一对特定于结核分枝杆菌复合物的荧光共振能量转移探针通过实时荧光定量PCR检测结核分枝杆菌

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PCR is widely used in clinical laboratories to diagnose pulmonary, extrapulmonary, and disseminated tuberculosis. A multitude of primer pairs have been successfully applied, one of which has been studied most extensively because it is included in the Roche Amplicor MTB assay, the only Food and Drug Administration-cleared PCR-based test for clinical detection of Mycobacterium tuberculosis (1)(2)(3). The test amplifies a 584-bp fragment of the 16s rDNA of all mycobacteria and identifies members of the M. tuberculosis complex (MTC) by hybridization of a specific DNA probe. However, the hybridization step extends the turnaround time of this test, and obligatory license fees render it unaffordable for application in experimental studies or resource-limited settings.Real-time detection technology has made it possible to establish noncommercial, probe-based PCR systems that provide stable operation, low contamination risk, and semiautomated interpretation of results (4)(5)(6)(7)(8)(9)(10)(11). We therefore aimed at adapting the Roche Amplicor assay to a real-time PCR protocol.We did not modify the primers of the Amplicor test because of their demonstrated performance; thus, only the detection probe was adapted to the requirements of real-time PCR. Classic real-time probes [5′-nuclease, “TaqMan” (12)] require cleavage by Taq polymerase (13), which could not be accomplished efficiently in our assay because the amplicon was too long and the only probe binding site specific for MTC was too distant from any of the primers (9)(12)(14). As an alternative approach, we chose a pair of fluorescence resonance energy transfer (FRET) probes that do not have to be cleaved, making them less dependent on the above-mentioned factors (15). On neighboring hybridization to the target DNA, an excited FRET probe system generates long-wavelength fluorescent emission that can be read by a Roche …
机译:PCR在临床实验室中广泛用于诊断肺,肺外和播散性肺结核。已成功应用了多种引物对,其中之一已得到最广泛的研究,因为它已包含在罗氏Amplicor MTB分析中,这是美国食品和药物管理局批准的唯一用于临床检测结核分枝杆菌的基于PCR的测试(1) (2)(3)。该测试扩增了所有分枝杆菌的16s rDNA的584bp片段,并通过特异性DNA探针的杂交鉴定了结核分枝杆菌复合体(MTC)的成员。但是,杂交步骤延长了该测试的周转时间,强制性的许可证费用使其无法用于实验研究或资源受限的环境中。实时检测技术使建立基于探针的非商业PCR系统成为可能。提供稳定的运行,较低的污染风险以及对结果的半自动解释(4)(5)(6)(7)(8)(9)(10)(11)。因此,我们的目标是使Roche Amplicor分析适应实时PCR方案。因此,只有检测探针可以适应实时PCR的要求。经典的实时探针[5'-核酸酶,“ TaqMan”(12)]需要Taq聚合酶(13)进行切割,由于扩增子太长并且是唯一的探针结合位点,在我们的测定中无法有效完成MTC与任何引物(9)(12)(14)距离都太远。作为一种替代方法,我们选择了一对不必裂解的荧光共振能量转移(FRET)探针,这使得它们对上述因素的依赖性降低(15)。在与靶DNA的邻近杂交后,激发的FRET探针系统产生长波长荧光发射,可被Roche读取...

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