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Prospective evaluation of the Gen-Probe assay for detection of Legionellae in respiratory specimens

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Abstract

A prospective evaluation of a DNA probe assay for detection ofLegionella species was performed on 427 consecutive respiratory specimens submitted over an 18-month period. The Gen-Probe assay utilizing both low (⩾4.0) and high (>7.0) ratio threshold values was compared to direct fluorescent antibody staining (DFA) as a predictor of isolation ofLegionella on culture. The highest sensitivity (63 %) was obtained with the lower threshold ratio, but was not significantly different from the result obtained with a threshold ratio of >7.0 (50 %, p=0.722) or DFA results (44 %, p=0.479). The specificity of the DNA probe assay was improved with the high threshold (99 %) compared either to the low threshold ratio (95 %, p=0.0002) or DFA (97 %, p=0.055). When the DNA probe was compared to DFA and/orLegionella isolation on culture, a significantly lower specificity (97 % versus 99 %, p=0.0006) and higher sensitivity (74 % versus 37 %, p=0.013) was obtained with a threshold value of ⩾4.0 than >7.0. Ten of 20 specimens with a DNA probe ratio between 4.0 and 7.0 were DFA positive, although only two were isolated on culture. The DFA assay and both probe threshold ratios have a high negative predictive value when compared to culture. However, only the threshold ratio of >7.0 has a sufficiently high positive predictive value to be useful alone. Although the DNA probe appears to be a practical alternative to DFA testing for the rapid diagnosis ofLegionella infections, false-negative results emphasize the importance of obtaining several specimens for testing, and confirm the fundamental role of culture in the diagnosis ofLegionella infections.

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References

  1. Fraser, D. W., Tsai, T. R., Orenstein, W., Parkin, W. E., Beecham, H. J., Sharrar, R. G., Harris, J., Mallison, G. F., Martin, S. M., McDade, J. E., Shepard, C. C., Brachman, P., S. Legionnaires' disease: description of an epidemic of pneumonia. New England Journal of Medicine 1977, 297: 1189–1197.

    PubMed  Google Scholar 

  2. McDade, J. E., Shepard, C. C., Fraser, D. W., Tsai, T. R., Redus, M. A., Dowdle, W. R. Legionnaires' disease: isolation of a bacterium and demonstration of its role in other respiratory disease. New England Journal of Medicine 1977, 297: 1197–1203.

    PubMed  Google Scholar 

  3. Zuravleff, J. J., Yu, V. L., Shonnard, J. W., Davis, B. K., Rihs, J. D. Diagnosis of Legionnaires' disease: an update of laboratory methods with new emphasis on isolation by culture. Journal of the American Medical Association 1983, 250: 1981–1985.

    Article  PubMed  Google Scholar 

  4. Edelstein, P. H. Laboratory diagnosis of infections caused by legionellae. European Journal of Clinical Microbiology 1987, 6: 4–10.

    PubMed  Google Scholar 

  5. Brown, S. L., Bibb, W. F., McKinney, R. M. Retrospective examination of lung tissue specimens for the presence ofLegionella organisms: comparison of indirect fluorescent-antibody testing. Journal of Clinical Microbiology 1984, 19: 468–472.

    PubMed  Google Scholar 

  6. Gosting, C. H., Cabrian, K., Sturge, J. C., Goldstein, C. C. Identification of a species-specific antigen inLegionella pneumophila by a monoclonal antibody. Journal of Clinical Microbiology 1984, 20: 1031–1035.

    PubMed  Google Scholar 

  7. Edelstein, P. H., Beer, K. B., Sturge, J. C., Watson, A. J., Goldstein, C. C. Clinical utility of a monoclonal direct fluorescent reagent specific forLegionella pneumophila: comparative study with other reagents. Journal of Clinical Microbiology 1985, 22: 419–421.

    PubMed  Google Scholar 

  8. Tenover, F. C., Edelstein, P. H., Goldstein, L. C., Sturge, J. C., Plorde, J. J. Comparison of cross-staining reactions byPseudomonas species and fluorescein-labelled polyclonal and monoclonal antibodies directed againstLegionella pneumophila. Journal of Clinical Microbiology 1986, 23: 647–649.

    PubMed  Google Scholar 

  9. Kohne, D. E., Steigerwalt, A. G., Brenner, D. J. Nucleic acid probe specific for members of the genusLegionella. In: Thornsberry, C., Balows, A., Feeley, J. C., Jakubowski, W. (ed.):Legionella. Proceedings of the Second International Symposium. American Society for Microbiology, Washington, DC, 1984, p. 107–108.

    Google Scholar 

  10. Wilkinson, H. W., Sampson, J. S., Plikaytis, B. B. Evaluation of a commercial gene probe for identification ofLegionella cultures. Journal of Clinical Microbiology 1986, 23: 217–220.

    PubMed  Google Scholar 

  11. Edelstein, P. H. Evaluation of the Gen-Probe DNA probe for the detection of legionellae in culture. Journal of Clinical Microbiology 1986, 23: 481–484.

    PubMed  Google Scholar 

  12. Edelstein, P. H., Bryan, R. N., Enns, R. K., Kohne, D. E., Kacian, D. L. Retrospective study of Gen-Probe Rapid Diagnostic System for detection of legionellae in frozen clinical respiratory tract samples. Journal of Clinical Microbiology 1987, 25: 1022–1026.

    PubMed  Google Scholar 

  13. Buesching, W. J., Burst, R. A., Ayers, L. W. Enhanced primary isolation ofLegionella pneumophila from clinical specimens by low-pH treatment. Journal of Clinical Microbiology 1983, 17: 1153–1155.

    PubMed  Google Scholar 

  14. Edelstein, P. H. Legionnaires' disease laboratory manual. Document PB 84-156827. National Technical Information Service, Springfield, VA, 1984.

    Google Scholar 

  15. Edelstein, P. H. Legionella. In: Lennette, E. H., Balows, A., Hausler, W. J., Shadomy, H. J. (ed.): Manual of clinical microbiology. American Society for Microbiology, Washington, DC, 1984, p. 373–391.

    Google Scholar 

  16. Galen, R. S., Gambino, S. R. Beyond normality: the predictive value and efficiency of medical diagnosis. John Wiley, New York, NY, 1975.

    Google Scholar 

  17. Laussucq, S., Schuster, D., Alexander, W. J., Thacker, W. L., Wilkinson, H. W., Spike, J. S. False-positive DNA probe test forLegionella species associated with a cluster of respiratory illnesses. Journal of Clinical Microbiology 1988, 26: 1442–1444.

    PubMed  Google Scholar 

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Doebbeling, B.N., Bale, M.J., Koontz, F.P. et al. Prospective evaluation of the Gen-Probe assay for detection of Legionellae in respiratory specimens. Eur. J. Clin. Microbiol. Infect. Dis. 7, 748–752 (1988). https://doi.org/10.1007/BF01975041

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