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Exposure of water consumers to mesophilic actinomycetes

Published online by Cambridge University Press:  19 October 2009

T. H. Ojanen
Affiliation:
Department of Clinical Microbiology, University of Kuopio, Kuopio, Finland
M.-L. Katila
Affiliation:
Department of Clinical Microbiology, University of Kuopio, Kuopio, Finland
R. Mäntyjärvi
Affiliation:
Department of Clinical Microbiology, University of Kuopio, Kuopio, Finland
H. Seppänen
Affiliation:
Institute of Limnology, University of Helsinki, Helsinki, Finland
A. Muittari
Affiliation:
Department of Pulmonary Diseases, Tampere Central Hospital, Tampere, Finland
P. Kuusisto
Affiliation:
Department of Pulmonary Diseases, Tampere Central Hospital, Tampere, Finland
P. Virtanen
Affiliation:
Nokia Health Centre, Nokia, Finland
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Summary

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In autumn 1978 an epidemic of respiratory disease resembling allergic alveolitis occurred in a small Finnish community. The disease was caused by repeated exposures to tap water aerosol. The raw water of the community and the sand filters of the purification system were heavily contaminated with mesophilic actinomycetes. Fourteen different strains of actinomycetes were isolated. Exposed persons with and without symptoms as well as unexposed control persons were tested for antibodies against five of these actinomycetes and against Enterobacter agglomerans. Both the exposed and the control persons had antibodies to actinomycetes but the exposed persons had antibodies against more actinomycete strains than the control persons. Precipitating antibodies against E. agglomerans were also found in control persons as well as in patients. There was a significant difference between the patients and the exposed healthy persons in bacterial agglutination tests with flagellar antigen of one E. agglomerans strain. However, the role of mesophilic actinomycetes and E. agglomerans in the aetiology of the disease could not be firmly established.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1983

References

REFERENCES

Atterholm, I., Halmberg, T., Ganrot-Norlin, K. & Ringertz, O. (1977). Unexplained acute fever after a hot bath. Lancet ii, 684686.CrossRefGoogle Scholar
Dutkiewicz, J. (1970). Studies on endotoxins of Envinia hcrhicola and their biological activity. Zentralblatt fur liakteriologie untl Hygiene. I. Abteilung Originate A236, 487508.Google Scholar
Edwards, J. H., Griffiths, A. J. & Mulmns, J. (1976). Protozoa as sources of antigen in ‘humidifier fever’. Nature 264, 438439.CrossRefGoogle ScholarPubMed
Edwards, J. H. (1980). Microbial and immunological investigations and remedial action after an outbreak of humidifier fever. British Journal of Industrial Medicine 37, 5562.Google ScholarPubMed
Gregory, P. H. & Lacky, M. E. (1963). Mycological examination of dust from mouldy hay associated with farmer's lung disease. Journal of General Microbiology 30, 7588.CrossRefGoogle ScholarPubMed
Hallman, L. & Burkhardt, Fr. (1974). Klinische Mikrolnologie, 4th ed., pp. 606607. Georg Thieme Verlag Stuttgart.Google Scholar
Johnston, D. W. & Cross, T. (1976). The occurrence and distribution of actinomycetes in lakes of the English Lake District. Freshwater Biology 6, 457463.CrossRefGoogle Scholar
Jokinen, S. (1970). Eräiden järvien pohjalietteen sädesienistä. Laudaturtyō. Helsingin Yliopiston Mikrobiologian laitos, 82 pp. (in Finnnish).Google Scholar
Katila, M.-L. & Mäntyjärvi, R. A. (1978). The diagnostic value of antibodies to the traditional antigens of fanner's lung in Finland. Clinical Allergy 8, 581587.CrossRefGoogle Scholar
LecHevalier, H. (1964). The Actinomycetes.- Principles and applications in aquatic microbiology, pp. 230253. Proceeding of Rudolfs Research Conference, Rutgers, The State University, New Brunswick, New Jersey. New York: John Wiley.Google Scholar
Metzgkr, W. J., Patterson, R., Fink, J., Semerdjian, R. & Roberts, M.(1976). Sauna-takers disease. Journal of American Medical Association 236, 22092211.CrossRefGoogle Scholar
MRC Symposium (1977). Humidifier fever. Thorax 32, 653663.CrossRefGoogle Scholar
Muittari, A., Kuusisto, P., Vlrtanen, P., Sovijärvi, A., Grönroos, P., Harmoinen, A., Antila, P. & Kellomäki, L. (1980). An epidemic of extrinsic allergic alveolitis caused by tap water. Clinical Allergy 10, 7790.CrossRefGoogle ScholarPubMed
Muittari, A., Rylander, R. & Salkinoja-Salonen, M. (1980). Endotoxin and bath-water fever. Lancet ii, 89.CrossRefGoogle Scholar
Niemi, R. M., Knuth, S. & Lundström, K. (1982). Actinomycetes and fungi in surface waters and in potable water. Applied and Environmental Microbiology 43, 378388.CrossRefGoogle ScholarPubMed
Patterson, R., Fink, J. N., Roberts, M., Kelly, J. F. & Sommers, H. M. (1978). Antibody activity in sera of patients with humidifier disease. Journal of Allergy and Clinical Immunology 62, 103108.CrossRefGoogle ScholarPubMed
Patterson, R., Fink, J. N., Miles, W. B., Basich, J. E., Schleuter, D. B., Tinkelman, D. G. & Roberts, M. (1981). Hypersensitivity lung disease presumptively due to Cephalosporium in homes contaminated by sewage flooding or by humidifier water. Journal of Allergy and Clinical Immunology 68, 128132.CrossRefGoogle ScholarPubMed
Pepys, J. & Jenkins, P. A. (1965). Precipitin (F.L.H.) test in farmer's lung. Thorax 20, 2135.CrossRefGoogle ScholarPubMed
Persson, P. E. (1979). The source of muddy odor in bream (Abramis bramo) from the Porvoo Sea area (Gulf of Finland). Journal of the Fisheries Research Board of Canada 36, 883890.CrossRefGoogle Scholar
Pickering, C. A. C, Moore, W. K. S., Lacey, J., Holford-Strevens, V. C. & Pepys, J. (1976). Investigation of a respiratory disease associated with an air-conditioning system. Clinical Allergy 6, 109118.CrossRefGoogle ScholarPubMed
Rylander, R. & Lundholm, M. (1978). Bacterial contamination of cotton and cotton dust and effects on the lung. British Journal of Industrial Medicine 35, 204207.Google ScholarPubMed
Rylander, R., Haglind, P., Lundholm, M., Mattsby, I. & Stenqvist, K. (1978). Humidifier fever and endotoxin exposure. Clinical Allergy 8, 511516.CrossRefGoogle ScholarPubMed
Schatz, M., Patterson, R. & Fink, J. (1977). Itnmunopathogenesis of hypersensitivity pneumonitis. Journal of Allergy and Clinical Immunology 60, 2737.CrossRefGoogle ScholarPubMed
Seppänen, P. & Jokinen, S. (1969). Sädesienten merkityksestä sinilevien aihcuttamissa hajuilmiöissä. Limnologisymposion, Suomen Limnologinen Yhdistys, 6987 (in Finnish).Google Scholar
Silvey, J. K. G. (1963). The relationship between aquatic organisms and tastes and odors Public Works 94, 106194.Google Scholar
Silvey, J. K. G. & Roach, A. (1959). Laboratory culture of taste- and odorproducing aquatic actinomycetes. Journal of American Water Work's Association 51, 2032.CrossRefGoogle Scholar
Tendler, M. D. & Burkholder, P. R. (1961). Studies on the thermophilic actinomycetes. Applied Microbiology 9, 394399.CrossRefGoogle ScholarPubMed
Terho, E. O. & Lacey, J. (1979). Microbiological and serological studies of fanner's lung in Finland. Clinical Allergy 9, 4352.CrossRefGoogle Scholar
Wadsworth, C. (1962). A microplate technique employing a gel chamber compared with other micro- and macroplate techniqes for immune diffusion. International Archives of Allergy 21, 131137.CrossRefGoogle Scholar
Willoughby, L. G. (1969). A study of the aquatic netinomycetes of Blelham Tarn. Hydrobiologia 34, 465483.CrossRefGoogle Scholar