Affiliation:
1. Microbiology, School of Natural Sciences, National University of Ireland, Galway, Ireland
2. Molecular Diagnostics Research Group, NCBES, National University of Ireland, Galway, Ireland
3. National Tuberculosis Reference Laboratory, National Institute for Public Health and the Environment, Bilthoven, Netherlands
Abstract
ABSTRACT
Tuberculosis (TB) in humans is caused by members of the
Mycobacterium tuberculosis
complex (MTC). Rapid detection of the MTC is necessary for the timely initiation of antibiotic treatment, while differentiation between members of the complex may be important to guide the appropriate antibiotic treatment and provide epidemiological information. In this study, a multiplex real-time PCR diagnostics assay using novel molecular targets was designed to identify the MTC while simultaneously differentiating between
M. tuberculosis
and
M. canettii
. The
lepA
gene was targeted for the detection of members of the MTC, the
wbbl1
gene was used for the differentiation of
M. tuberculosis
and
M. canettii
from the remainder of the complex, and a unique region of the
M. canettii
genome, a possible novel region of difference (RD), was targeted for the specific identification of
M. canettii
. The multiplex real-time PCR assay was tested using 125 bacterial strains (64 MTC isolates, 44 nontuberculosis mycobacteria [NTM], and 17 other bacteria). The assay was determined to be 100% specific for the mycobacteria tested. Limits of detection of 2.2, 2.17, and 0.73 cell equivalents were determined for
M. tuberculosis
/
M. canettii
, the MTC, and
M. canettii
, respectively, using probit regression analysis. Further validation of this diagnostics assay, using clinical samples, should demonstrate its potential for the rapid, accurate, and sensitive diagnosis of TB caused by
M. tuberculosis
,
M. canettii
, and the other members of the MTC.
Publisher
American Society for Microbiology
Cited by
21 articles.
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