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Growth and survival characteristics of Campylobacter jejuni in liquid egg

Published online by Cambridge University Press:  19 October 2009

M. L. Hänninen
Affiliation:
College of Veterinary Medicine, Department of Food Hygiene, Hämeent. 57, 00550, Helsinki 55, Finland
H. Korkeala
Affiliation:
College of Veterinary Medicine, Department of Food Hygiene, Hämeent. 57, 00550, Helsinki 55, Finland
P. Pakkala
Affiliation:
National Board of Health, Finland
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Growth and survival of four Campylobacter jejuni strains in yolk, in liquid whole egg and in white during aerobic storage at 37, 20 and 4 °C was followed. In 48 h at 37 °C the coll counts of C. jejuni increased by about 3 log10 units in yolk and 1·60–3·3510 log units in liquid whole egg. The growth of C. jejuni was slightly better in yolk than in liquid whole egg. At 20 °C during 48 h the cell counts decreased by about 0·5–1·5 log10 units in yolk and in liquid whole egg. At 4 °C the decrease in cell counts after 21 days ranged from 1 to 2 log10 units, except for one strain, KH 3, which could not be detected after 14 days storage in yolk. In liquid whole egg the cell counts of this strain also decreased considerably during storage.

In white the number of inoculated C. jejuni cells decreased rapidly. The killing effect of white was shown to be temperature-dependent; at 37 and 20 °C no positive samples were detected after 24 h and at 4 °C no positive samples were found after 48 h.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1984

References

REFERENCES

Baird-Parker, A. C. (1965). The effect of recovery medium on the isolation of Staphylococcus aureua after heat treatment and after storage of frozen or dried cells. Journal of Applied Bacteriology 28, 390402.CrossRefGoogle Scholar
Banwart, G. J. & Ayres, J. C. (1957). The effect of pH on the growth of Salmonella and functional properties of liquid egg white. Food Technology 11, 244246.Google Scholar
Blankenship, I. C. & Craven, S. E. (1982). Campylobacter jejuni. Survival in chicken meat as a function of temperature. Applied and Environmental Microbiology 44, 8892.CrossRefGoogle ScholarPubMed
Blaser, M. J., Hardesty, H. L., Powers, B. & Wang, W. L. (1980). Survival of Campylobacter fetus subsp. jejuni in biological milieus. Journal of Clinical Microbiology 11, 309313.Google Scholar
Board, R. G. (1960). Microbiology Of the hen's egg. Advances in Applied Microbiology 11, 245281.CrossRefGoogle Scholar
Christopher, F. M., Smith, G. C. & Vanderzant, C. (1982). Effect of temperature and pH on the survival of Campylobacter fetus. Journal of Food Protection 45, 253259.Google Scholar
Doyle, M. P. & Roman, D. J. (1981). Growth and survival of Campylobacter fetus subsp. jejuni as a function of temperature and pH. Journal of Food Protection 44, 596601.CrossRefGoogle ScholarPubMed
Elliott, R. P. & Hobbs, B. C. (1980). Eggs and egg products. In Microbial Ecology of Foods. Vol. 2. Food Commodities, ICMSF, pp. 521566. New York: Academic Press.Google Scholar
Gill, C. O. & Harris, L. M. (1982). Survival and growth of Campylobacter fetus subsp. jejuni on meat and in cooked foods. Applied and Environmental Microbiology 44, 259263.Google Scholar
Grant, I. H., Richardson, N. J. & Bokkenheuser, V. D. (1980). Boiler chickens as potential source of Campylobacter infections in humans. Journal of Clinical Microbiology 11, 508510.Google Scholar
Hoffman, P. S., Krieg, N. R. & Smibert, R. M. (1970). Studies of the microaerophilic nature of Campylobacter fetus subsp. jejuni. I. Physiological aspects of enhanced aero- tolerance. Canadian Journal of Microbiology 25, 17.Google Scholar
Hänninen, M. L. & Raevuori, M. (1981). Occurrence of Campylobacter fetus subsp. jejuni and Yersinia enterocolilica in domestic animals and in some foods of animal origin in Finland. Nordisk Veterinär Medicin 33, 441445.Google Scholar
Kapperud, G., & Rosef, O. (1983). Avian wildlife reservoir of Campylobacter fetus subsp. jejuni, Yersinia spp. and Salmonella spp. in Norway. Applied and Environmental Microbiology 45, 375380.Google Scholar
Kraft, A. A., Ayres, J. C., Forsythe, H. R. & Sohultz, J. R. (1967). Keeping quality of pasteurized liquid egg yolk. Poultry Science 46, 1282.Google Scholar
Skirrow, M. B. (1982). Campylobacter enteritis – the first five years. Journal of Hygiene, 89, 175184.Google Scholar
Skirrow, M. B. & Benjamin, J. (1980). Differentiation of enteropathogenic campylobacter. Journal of Clinical Pathology 33, 1122.CrossRefGoogle ScholarPubMed