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Studies on plasma amino acids in East African adults in relation to endomyocardial fibrosis

Published online by Cambridge University Press:  09 March 2007

M. A. Crawford
Affiliation:
Nuffield Institute of Comparative Medicine, The Zoological Society of London, Regent's Park, London, NW 1
M. M. Gale
Affiliation:
Nuffield Institute of Comparative Medicine, The Zoological Society of London, Regent's Park, London, NW 1
K. Somers
Affiliation:
Departments of Medicine and Biochemistry, Makerere University College, Kampala, Uganda
I. L. Hansen
Affiliation:
Departments of Medicine and Biochemistry, Makerere University College, Kampala, Uganda
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Abstract

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1. An examination has been made of the plasma amino acids of adult Uganda Africans at risk to endomyocardial fibrosis compared with people from areas where the disorder is rare. The amino acid profile, both free and in the protein of the main staples, has also been examined.

2. Plasma tryptophan was found to be low in adults at risk and intermediate in Africans receiving a higher protein intake, as compared with Europeans whose protein intake might include more than 40 % as animal products.

3. Leucine and valine were also low in the plasma of adult Africans at risk.

4. The non-essential amino acids alanine and glycine were increased in the adult Africans at risk.

5. The similarity of these changes with the changes seen in kwashiorkor by other workers suggests that adherence to limited vegetable diets may introduce a chronic stress with regard to certain essential amino acids.

6. Studies on the vegetable staples used by Africans established that they are particularly poor in tryptophan and such Africans are probably dependent on other sources for their trypto-phan. None of the staples was a rich source of leucine. Plantain contained relatively large amounts of histidine, and cassava of arginine.

7. A comparative study of muscle protein suggests that the composition is similar regardless of diet and species. Leucine is quantitatively one of the most important amino acids in the muscle profile.

8.The above findings are discussed in the context of the requirements for heart muscle and the high incidence of cardiomyopathies within such African communities.

Type
Research Article
Copyright
Copyright © The Nutrition Society 1970

References

Banwell, J. & Crawford, M. A. (1963). Biochem. J. 89, 69 p.Google Scholar
Bennett, F. J., Jelliffe, D. B., Jelliffe, E. F. P. & Moffat, M. (1968). E. Afr. med. J. 45, 229.Google Scholar
Brock, J. F., Hansen, J. D. L., Howe, E. E., Davel, J. G. A., Pretorius, P. J. & Hendrickse, R. G. (1955). Lancet ii, 355.CrossRefGoogle Scholar
Busson, F. (1965). Plantes alimentaires de l'ouest africain. Marseilles: Leconte.Google Scholar
Christensen, H. N. (1963). Fedn Proc. Fedn Am. Socs exp. Biol. 22, 1110.Google Scholar
Crawford, M. A. (1964). E. Afr. med. J. 41, 228.Google Scholar
Crawford, M. A. (1968 a). Adv. Pharmac. 6, 176.CrossRefGoogle Scholar
Crawford, M. A. (1968 b). Vet. Rec. 82, 305.Google Scholar
Crawford, M. A. (1968 c). Proc. Nutr. Soc. 27, 163.CrossRefGoogle Scholar
Crawford, M. A., Patterson, J. & Yardley, L. (1968). Symp. zool. Soc. Lond. no. 21, p. 367.Google Scholar
Dean, R. F. A. & Burgess, H. J. L. (1962). E. Afr. med. J. 39, 356.Google Scholar
Dean, R. F. A. & Whitehead, R. G. (1964). Lancet ii, 98.CrossRefGoogle Scholar
Denckla, W. D. & Dewey, H. K. (1967). J. Lab. clin. Med. 69, 160.Google Scholar
Gale, M. M. & Crawford, M. A. (1969). Trans. R. Soc. trop. med. Hyg. 63, 821, 826.CrossRefGoogle Scholar
Greaves, J. P. & Tan, J. (1966). Nutrition 20, 112.Google Scholar
Gustafsson, B. E. (1968 a). Ciba Fdn Study Grps no. 31, p. 3.Google Scholar
Gustafsson, B. E. (1968 b). Ciba Fdn Study Grps no. 31, p. 66.Google Scholar
Hansen, J. D. L. & Brock, J. F. (1964). Lancet i, 1278.CrossRefGoogle Scholar
Hansen, I. L. & Crawford, M. A. (1966). J. Chromat. 22, 330.CrossRefGoogle Scholar
Harper, A. E. (1962). Am. J. clin. Nutr. 11, 382.CrossRefGoogle Scholar
Harper, A. E. (1967). In The Chemical Senses and Nutrition, p. 155. [ Morley, R., Kareand, and Owen, Maker, editors.] Baltimore, Maryland: The Johns Hopkins Press.Google Scholar
Harper, A. E., Becker, R. V. & Stucki, W. P. (1966). Proc. Soc. exp. Biol. Med. 121, 695.CrossRefGoogle Scholar
Harper, A. E., Leung, P., Yoshida, A. & Rogers, Q. R. (1964). Fedn Proc. Fedn Am. Socs exp. Biol. 23, 1087.Google Scholar
Holton, J. B. (1968). Clin. chim. acta 21, 241.CrossRefGoogle Scholar
Lombard, J. H. & de Lange, D. J. (1965). Analyt. Biochem. 10, 260.CrossRefGoogle Scholar
Milne, M. D. (1968). Clin. Pharmac. Ther. 9, 484.CrossRefGoogle Scholar
Milne, M. D., Crawford, M. A., Girao, C. B. & Loughridge, L. (1960 a). Q. Jl Med. 29, 407.Google Scholar
Milne, M. D., Crawford, M. A., Girao, C. B. & Loughridge, L. (1960 b). Clin. Sci. 19, 165.Google Scholar
Pronczuk, A. W., Baliga, B. S., Triant, J. W. & Munro, H. N. (1968). Biochim. biophys. Acta 157, 204.CrossRefGoogle Scholar
Shaper, A. G. & Coles, R. M. (1965). Br. Heart J. 27, 121.CrossRefGoogle Scholar
Somers, K., Brenton, D. P. & Sood, N. K. (1968). Br. Heart J. 30, 309.CrossRefGoogle Scholar
Somers, K. & D'Arbela, P. G. (1964). International Topic on the Epidemiology of Cardiovascular Diseases: Heart Disease in Uganda. Proceedings of the Third Asian-Pacific Congress of Cardiology, Kyoto. Vol. I, p. 162.Google Scholar
Tulloch, J. A., Kanyerezi, R. B., D'Arbela, P. G. & Sood, N. K. (1968). Trans. R. Soc. trop. med. Hyg. 62, 362.CrossRefGoogle Scholar
Uganda Atlas (1962). Lands and Surveys Department, Uganda Government.Google Scholar
Weissbach, H., King, W., Sjoerdsma, A. & Udenfriend, S. (1959). J. biol. Chem. 234, 81.CrossRefGoogle Scholar
Whitehead, R. G. (1964). Lancet i, 250.CrossRefGoogle Scholar
Whitehead, R. G. (1965). Lancet ii, 567.CrossRefGoogle Scholar