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A survey of the incidence of coagulase-positive staphylococci in market milk and cheese in England and Wales

Published online by Cambridge University Press:  01 June 2009

M. Elisabeth Sharpe
Affiliation:
National Institute for Research in Dairying, Shinfield, Reading
B. Gillian Fewins
Affiliation:
National Institute for Research in Dairying, Shinfield, Reading
B. Reiter
Affiliation:
National Institute for Research in Dairying, Shinfield, Reading
W. A. Cuthbert
Affiliation:
National Institute for Research in Dairying, Shinfield, Reading

Summary

The occurrence of coagulase-positive staphylococci in 954 samples of raw or heat-treated market milk and in 910 samples of cheese of different varieties, taken at 40 cheese factories or farms in England and Wales was determined. Only 9% of the cheeses contained more than 500 000 staphylococci/g, and these were all made from raw milk. All but the mildest of the heat treatments used were effective in greatly reducing the numbers of staphylococci present in milk and usually resulted in cheese virtually free from staphylococci. The effect of sublethal heat treatment on multiplication of these organisms in cheese curd is discussed.

Type
Original Articles
Copyright
Copyright © Proprietors of Journal of Dairy Research 1965

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References

REFERENCES

Baird Parker, A. C. (1962). J. appl. Bact. 25, 12.CrossRefGoogle Scholar
Jezeski, J. J., Morris, H. A., Zottola, E. A., George, E. & Busta, F. F. (1961). J. Dairy Sci. 44, 1160.Google Scholar
McPhillips, J. & Cunningham, E. A. (1962). Aust. J. Dairy Technol. 17, 95.Google Scholar
Miles, A. A. & Misra, S. S. (1938). J. Hyg., Camb., 38, 732.Google Scholar
Milk and Milk Products Technical Advisory Committee 1962 (1964). J. Soc. Dairy Technol. 17, 114.CrossRefGoogle Scholar
Munch-Petersen, E. (1960). Aust. J. Dairy Technol. 15, 25.Google Scholar
Murray, J. G. (1963). J. Soc. Dairy Technol. 16, 201.CrossRefGoogle Scholar
Reiter, B., Fewins, B. G., Fryer, T. F. & Sharpe, M. E. (1964). J. Dairy Res. 31, 261.CrossRefGoogle Scholar
Roughley, R. J. & McLeod, R. W. (1961). Aust. J. Dairy Technol. 16, 110.Google Scholar
Seeleman, M., Obiger, G., Rachov, H. G. & Welz, W. (1963). Dairy Sci. Abstr. 25, 3270.Google Scholar
Sharpe, M. E., Neave, F. K. & Reiter, B. (1962). J. appl. Bact. 25, 403.CrossRefGoogle Scholar
Takahashi, I. & Johns, C. K. (1959). J. Dairy Sci. 42, 1032.CrossRefGoogle Scholar
Thatcher, F. S., Comtois, R. D., Ross, D. & Erdman, I. E. (1959). Can. J. publ. Hlth, 50, 497.Google Scholar
Thatcher, F. S. & Ross, D. (1960). Can. J. publ. Hlth, 51, 226.Google Scholar
Zottola, E. A. & Jezeski, J. J. (1963). J. Dairy Sci. 46, 600.Google Scholar