Literature DB >> 10573698

Evaluation of IS6110 as amplification target for direct tuberculosis diagnosis.

R Lazraq1, J el Baghdadi, J L Guesdon, A Benslimane.   

Abstract

We describe in the present study an evaluation of the IS6110 repetitive element in the rapid diagnosis of pulmonary and extrapulmonary tuberculosis by polymerase chain reaction (PCR). A pair of oligonucleotide primers was designed to amplify a 201-bp DNA fragment of IS6110. The amplified DNA was detected by ethidium bromide stained agarose gel electrophoresis and confirmed by Sal I digestion and Southern blot hybridization with a 32P-labeled probe. To detect the presence of amplification inhibitors, an internal control DNA that used the same primers as for the target sequence was added to each PCR reaction. PCR results were compared with the results of acid fast stained smears, cultures, and clinical data in 102 sputum and 41 extrapulmonary specimens. With the exception of four samples, M. tuberculosis was detected by PCR in all smear- and culture-positive cases and in all smear-negative, culture positive cases. Additionally, PCR was able to detect 6 cases that were smear and culture negative but clinically strongly suspected of tuberculosis. The final PCR sensitivity and specificity were 93.1% and 95.18%, respectively. One M. tuberculosis strain isolated from a sputum was found to lack IS6110. This study shows that (1) PCR diagnosis based on IS6110 reached the best sensitivity and specificity but must be considered carefully since some M. tuberculosis strains lack IS6110; and (2) PCR must be interpreted in conjunction with clinical and radiological data when it is discordant with conventional methods results.

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Year:  1999        PMID: 10573698

Source DB:  PubMed          Journal:  Pathol Biol (Paris)        ISSN: 0369-8114


  1 in total

1.  Genetic diversity and population structure of Mycobacterium tuberculosis in Casablanca, a Moroccan city with high incidence of tuberculosis.

Authors:  Loubna Tazi; Jamila El Baghdadi; Sarah Lesjean; Camille Locht; Philip Supply; Michel Tibayrenc; Anne-Laure Bañuls
Journal:  J Clin Microbiol       Date:  2004-01       Impact factor: 5.948

  1 in total

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