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Serum albumin level in an urban Nigerian population

Published online by Cambridge University Press:  09 March 2007

H. O. Adewoye
Affiliation:
Department of Clinical Pathology, College of Medicine, University of Lagos, Private Mail Bag 12003, Lagos, Nigeria
J. F. Fawibe
Affiliation:
Department of Clinical Pathology, College of Medicine, University of Lagos, Private Mail Bag 12003, Lagos, Nigeria
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Abstract

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1. Serum albumin levels have been estimated in healthy adult Nigerians. The average level of albumin was 41.4 g/l and there was no sex difference, but the findings differed from that of a previous survey in Ibadan. The importance of serum albumin measurement in relation to the socio-economic and dietary habits of the population has been reviewed.

2. It is concluded that socio-economic, dietary and cultural changes associated with Western education could be responsible for the increased level of serum albumin in this healthy population.

3. It is suggested that similar surveys should be done by locally-practising chemical pathologists.

Type
Papers of direct relevance to Clinical and Human Nutrition
Copyright
Copyright © The Nutrition Society 1978

References

Arroyave, G. (1961). Fedn Proc. Fedn Am. Socs exp. Biol. 20, 39.Google Scholar
Association of Clinical Biochemists (Scientific and Technical Committee) (1967). Tech. Bull no. 11.Google Scholar
Baron, D. N. (1974). Short Textbook of Chemical Pathology, 3rd ed.London: English Universities Press.Google Scholar
Bartholomew, R. J. & Delaney, A. M. (1964). Proc. Aust. Ass. Clin. Biochem. 1, 64.Google Scholar
Bartholomew, R. J. & Delaney, A. M. (1966). Proc. Aust. Ass. Clin. Biochem. 1, 214.Google Scholar
Edozien, J. C. (1957). J. clin. Path. 10, 276.CrossRefGoogle Scholar
Edozien, J. C. (1958). W. Afr. med. J. 7, 121.Google Scholar
Edozien, J. C. (1965). Jl W. Afr. Sci. Ass. 10, 23.Google Scholar
Edozien, J. C., Morley, D. C. & Boyo, A. E. (1960). J. clin. Path. 13, 118.CrossRefGoogle Scholar
Gornall, A. G., Bardawill, C. J. & David, M. M. (1949). J. biol. Chem. 177, 751.CrossRefGoogle Scholar
Horrobin, D. & Gunn, A. (editors) (1970). In The International Handbook of Medical Science, p. 698. London: Medical and Technical Publishing Co. Ltd.Google Scholar
King, E. J. (1951). In Recent Advances in Clinical Pathology, 2nd ed. [Dyke, S. C., editor]. London: J. & A. Churchill.Google Scholar
Miyada, S., Baysinger, V., Notrica, S. & Nalcamuro, R. M. (1972). Clin. Chem. 18, 52.CrossRefGoogle Scholar
Reinhold, J. G. (1953). Standard Methods of Clinical Chemistry, Vol. 1, p. 88. [Reinder, M., editor]. New York: Academic Press.Google Scholar
Wolfson, W. Q., Cohn, C., Calvary, E. & Ichiba, F. (1948). Am. J. clin. Path. 18, 723.CrossRefGoogle Scholar
Zilva, J. F. & Panall, P. R. (1975). Clinical Chemistry in Diagnosis and Treatment, 2nd ed. Lloyd-Luke.Google Scholar