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Aggregation of whey proteins during storage of acidified milk

Published online by Cambridge University Press:  01 June 2009

P. J. Argyle
Affiliation:
Unilever Research Laboratory Colworth/Welwyn, The Frythe, Welwyn, Herts., AL6 9AG
N. Jones
Affiliation:
Unilever Research Laboratory Colworth/Welwyn, The Frythe, Welwyn, Herts., AL6 9AG
R. C. Chandan
Affiliation:
Unilever Research Laboratory Colworth/Welwyn, The Frythe, Welwyn, Herts., AL6 9AG
J. F. Gordon
Affiliation:
Unilever Research Laboratory Colworth/Welwyn, The Frythe, Welwyn, Herts., AL6 9AG

Summary

Slow, irreversible aggregation of whey proteins in acidified milk or whey at pH 3·4–4·6 held for up to 10 d at 35–45°C was revealed by the reduction of discrete bands in disc electrophoresis. The aggregation was confirmed by precipitation of protein observed in stored, acid whey. The rate of aggregation of all protein fractions increased with the acidity and the storage temperature. It was enhanced by the presence of casein, but was unaffected by the presence of milk fat or by pasteurization of the fresh, unacidified milk at 70°C. The effect may contribute to the physical properties of certain fresh cheeses and other cultured dairy products.

Type
Research Article
Copyright
Copyright © Proprietors of Journal of Dairy Research 1976

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References

REFERENCES

Chandan, R. C., Argyle, P. J., Jones, N. & Gordon, J. F. (1970). 18th International Dairy Congress, Sydney 1E, 415.Google Scholar
Evenhuis, N. & de Vries, T. R. (1957). Netherlands Milk and Dairy Journal 11, 213.Google Scholar
Hartman, G. H. Jr & Swanson, A. M. (1965). Journal of Dairy Science 48, 1161.Google Scholar
Larson, B. L. & Rolleri, G. D. (1955). Journal of Dairy Science 38, 351.Google Scholar
Lowry, O. H., Rosebrough, N. J., Farr, A. L. & Randall, R. J. (1951). Journal of Biological Chemistry 193, 265.Google Scholar
Mcdonald, C. E. & Chen, L. L. (1965). Analytical Biochemistry 10, 175.CrossRefGoogle Scholar
Morr, C. V. (1969). Journal of Dairy Science 52, 1174.CrossRefGoogle Scholar
Parry, R. M. Jr (1974). In Fundamentals of Dairy Chemistry, 2nd edn, p. 619. (Eds Webb, B. H., Johnson, A. H. and Alford, J. A..) Westport, Conn.: Avi Publishing Co.Google Scholar
Rowland, S. J. (1937). Journal of Dairy Research 8, 6.CrossRefGoogle Scholar
Sabarwal, P. K. & Ganguli, N. C. (1972). Journal of Dairy Science 55, 765.CrossRefGoogle Scholar
Sawyer, W. H. (1969). Journal of Dairy Science 52, 1347.CrossRefGoogle Scholar
Shahani, K. M. (1966). Journal of Dairy Science 49, 907.CrossRefGoogle Scholar