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 (Technical Briefs) 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 (Technical Briefs)

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 (Technical Briefs‪)‬

Clinical Chemistry 2003, Oct, 49, 10

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Publisher Description

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 (1-3). 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 (4-11). We therefore aimed at adapting the Roche Amplicor assay to a real-time PCR protocol.

GENRE
Science & Nature
RELEASED
2003
1 October
LANGUAGE
EN
English
LENGTH
9
Pages
PUBLISHER
American Association for Clinical Chemistry, Inc.
SIZE
217.4
KB
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