Abstract
A prospective 2-month trial involving 617 respiratory tract specimens was conducted to compare sensitivity, specificity, and predictive values of the newly developed Gen-Probe Amplified Mycobacterium Tuberculosis Direct Test kit (AMTDT; Gen-Probe, Inc., San Diego, Calif.) for the rapid detection of Mycobacterium tuberculosis and of fluorescent acid-fast staining versus combined BACTEC 12B and solid-medium cultures as the "gold standard." A total of 590 specimens were culture and AMTDT negative. Twenty-one (3.4%) cultures yielded M. tuberculosis. Of these, 15 (71.4%) were detected by AMTDT, whereas 6 (28.6%) were missed. M. tuberculosis did not grow in six (28.6%) of AMTDT-positive specimens derived from three patients under treatment for tuberculosis. AMTDT exhibited a sensitivity, a specificity, a negative predictive value, and a positive predictive value of 71.4, 99, 99, and 71.4%, respectively. In comparison, the same values for fluorescent microscopy were 66.7, 98.3, 98.8, and 58.3%, respectively. AMTDT was easy to perform and highly specific. However, a screening test would require an improved sensitivity and, when feasible, the implementation of an internal amplification control.
MeSH Terms
Bacteriological Techniques
Bronchoalveolar Lavage Fluid/microbiology
Culture Media
DNA Probes
DNA, Bacterial/genetics
DNA, Ribosomal/genetics
Humans
Mass Screening/methods
Microscopy, Fluorescence
Mycobacterium tuberculosis/immunology,isolation & purification
Polymerase Chain Reaction
Predictive Value of Tests
Prospective Studies
RNA, Bacterial/analysis
RNA, Ribosomal/analysis
Reagent Kits, Diagnostic
Respiratory System/microbiology
Sensitivity and Specificity
Sputum/microbiology
Staining and Labeling
Time Factors
Tuberculosis/diagnosis,epidemiology,microbiology
Chemicals
Culture Media
DNA Probes
DNA, Bacterial
DNA, Ribosomal
RNA, Bacterial
RNA, Ribosomal
Reagent Kits, Diagnostic
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Bodmer T
Institute for Medical Microbiology, University of Berne, Switzerland.
Gurtner A
Schopfer K
Matter L
References (21)
21 references, click to expand
-
Detection of rifampicin-resistance mutations in Mycobacterium tuberculosis.
Lancet. 1993 Mar 13;341(8846):647-50
PMID: 8095569
-
Rapid identification of mycobacteria to the species level by polymerase chain reaction and restriction enzyme analysis.
J Clin Microbiol. 1993 Feb;31(2):175-8
PMID: 8381805
-
False positive result of Mycobacterium tuberculosis complex DNA probe hybridization with a Mycobacterium terrae isolate.
Eur J Clin Microbiol Infect Dis. 1993 Apr;12(4):309-10
PMID: 8513827
-
Large-scale use of polymerase chain reaction for detection of Mycobacterium tuberculosis in a routine mycobacteriology laboratory.
J Clin Microbiol. 1993 Aug;31(8):2049-56
PMID: 8370729
-
Molecular epidemiology meets the fourth world.
Lancet. 1993 Oct 2;342(8875):817-8
PMID: 8104266
-
Molecular approach to identifying route of transmission of tuberculosis in the community.
Lancet. 1993 Oct 2;342(8875):841-4
PMID: 8104275
-
Detection and identification of Mycobacterium tuberculosis directly from sputum sediments by amplification of rRNA.
J Clin Microbiol. 1993 Sep;31(9):2410-6
PMID: 8408564
-
Tuberculosis and poverty.
BMJ. 1993 Sep 25;307(6907):759-61
PMID: 8219945
-
Questionable reliability of the polymerase chain reaction in the detection of Mycobacterium tuberculosis.
N Engl J Med. 1993 Dec 30;329(27):2036
PMID: 8247086
-
Direct, automated detection of rifampin-resistant Mycobacterium tuberculosis by polymerase chain reaction and single-strand conformation polymorphism analysis.
Antimicrob Agents Chemother. 1993 Oct;37(10):2054-8
PMID: 8257122
-
Genotypic identification of mycobacteria by nucleic acid sequence determination: report of a 2-year experience in a clinical laboratory.
J Clin Microbiol. 1993 Nov;31(11):2882-9
PMID: 7505291
-
Automatable radiometric detection of growth of Mycobacterium tuberculosis in selective media.
Am Rev Respir Dis. 1977 Jun;115(6):1066-9
PMID: 122228
-
Primer-directed enzymatic amplification of DNA with a thermostable DNA polymerase.
Science. 1988 Jan 29;239(4839):487-91
PMID: 2448875
-
Mycobacterial cross contamination during radiometric culturing.
J Clin Microbiol. 1988 Sep;26(9):1867-8
PMID: 3183030
-
Comparison of improved BACTEC and Lowenstein-Jensen media for culture of mycobacteria from clinical specimens.
J Clin Microbiol. 1990 Jun;28(6):1288-91
PMID: 2116446
-
Insertion element IS986 from Mycobacterium tuberculosis: a useful tool for diagnosis and epidemiology of tuberculosis.
J Clin Microbiol. 1990 Sep;28(9):2051-8
PMID: 1977765
-
Towards a phylogeny and definition of species at the molecular level within the genus Mycobacterium.
Int J Syst Bacteriol. 1990 Oct;40(4):323-30
PMID: 2275850
-
Genotypic identification of pathogenic Mycobacterium species by using a nonradioactive oligonucleotide probe.
J Clin Microbiol. 1991 Jun;29(6):1276-8
PMID: 1907612
-
Evaluation of acridinium-ester-labeled DNA probes for identification of Mycobacterium tuberculosis and Mycobacterium avium-Mycobacterium intracellulare complex in culture.
J Clin Microbiol. 1991 Nov;29(11):2473-6
PMID: 1723071
-
Evaluation of nonradioactive DNA probes for identification of mycobacteria.
J Clin Microbiol. 1992 Sep;30(9):2476-8
PMID: 1401020
-
The resurgence of tuberculosis: is your laboratory ready?
J Clin Microbiol. 1993 Apr;31(4):767-70
PMID: 8463384