Hostname: page-component-78c5997874-xbtfd Total loading time: 0 Render date: 2024-11-20T01:35:25.414Z Has data issue: false hasContentIssue false

The influence of riboflavin deficiency on absorption and liver storage of iron in the growing rat

Published online by Cambridge University Press:  09 March 2007

Delana A. Adelekan
Affiliation:
Department of Human Nutrition, London School of Hygiene and Tropical Medicine, Keppel Street, London WClE 7HT
David I. Thurnham
Affiliation:
Department of Human Nutrition, London School of Hygiene and Tropical Medicine, Keppel Street, London WClE 7HT
Rights & Permissions [Opens in a new window]

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

1. Iron absorption was measured in weanling riboflavin-deficient (RD) rats or weight-matched (WM) controls fed on appropriate diets for 7 weeks. Concentrations of radio-Fe (68Fe) in plasma were monitored every 30 min for 4 h following intragastric administration.

2. Total Fe absorption in RD rats was significantly lower than that in WM controls, and the tissues of the stomach and small intestine of RD rats retained significantly (P < 0.001) more 68Fe by comparison with WM groups.

3. In a separate experiment, ferritin-Fe concentrations were measured in the livers of four groups of rats (adlib. (C), pair-fed (PF) and WM controls and RD) at day 0, and subsequently at days 14, 21, 28, 35 and 49.

4. Liver ferritin-Fe concentration was significantly lower (P < 0.05) in RD rats than in all other controls after 3 weeks on the respective diets and remained lower for the remainder of the experiment.

Type
Papers on General Nutrition
Copyright
Copyright © The Nutrition Society 1986

References

REFERENCES

Alfrey, C. P. & Lane, M. (1970). Seminars in HaematologyGoogle Scholar
Bothwell, T. H., Mallet, B., Oliver, R. & Smith, M. D.(1955). British Journal of Haematology 1, 352357.Google Scholar
Brown, E. B. Jr & Justus, B. W. (1958). American Journal of Physiology 194, 319326.Google Scholar
Cox, D. H. & Schlicker, S. A. (1967). Biochemical MedicineGoogle Scholar
Dowdle, E. B., Schacter, D. & Schenker, H. (1960). American Journal of Physiology 198, 609613.Google Scholar
Drysdale, J. W. & Ramsay, W. N. M. (1965). Biochemical Journal 95, 282288.Google Scholar
Duthie, H. L. (1964). British Journal of Haematology 10,Google Scholar
Finch, C. A., Ragan, H. A., Dyer, I. A. & Cook, J. D.(1978). Proceedings of the Society of Experimental Biology and Medicine 159, 335338.CrossRefGoogle Scholar
Glatzle, D., Körner, W. F., Christeller, S. & Wiss, O.(1970). International Journal of Vitamin and Nutrition Research 40, 166183.Google Scholar
Hoppel, R. L. & Tandler, B. (1975). Journal of NutritionGoogle Scholar
Howard, J. & Jacobs, A. (1972). British Journal of Haematology 23, 595603.Google Scholar
Jacobs, P., Bothwell, T. H. & Charlton, R. W. (1966). American Journal of Physiology 210, 694700.Google Scholar
Jamdar, S. C., Udupa, K. B. & Chatterji, A. (1968). Journal of Vitaminology 14, 219222.Google Scholar
Kaufman, N. & Wyllie, J. C. (1970). British Journal of Haematology 19, 515521.Google Scholar
Lane, M., Alfrey, C. P. JrMengel, D. E., Doherty, M. A. & Doherty, J. (1964). Journal of Clinical Investigation 43, 357373.Google Scholar
Leslie, A. J. & Kaldor, I. (1971). American Journal of Physiology 220, 10001004.Google Scholar
Linder, M. C., Moor, J. R., Scott, L. E. & Munro, H. N. (1972). Biochemical Journal 129, 455462.Google Scholar
Linder, M. C., Moor, J. R., Scott, L. E. & Munro, H. N. (1973). Biochimica et Biophysica Acta 297, 7080.CrossRefGoogle Scholar
McCance, R. A. & Widdowson, E. M. (1951). Journal of Physiology 112, 450458.CrossRefGoogle Scholar
Manis, J. G. & Schacter, D. (1962). American Journal of Physiology 203, 8186.Google Scholar
Mazur, A. & Carlton, A. (1965). Blood 26,Google Scholar
Mookerjea, S. & Hawkins, W. W. (1960). Journal of of Nutrition 14, 239246.CrossRefGoogle Scholar
Osaki, S. & Sirivech, S. (1971). Federation Proceedings 30, 1292 Abstr.Google Scholar
Rivlin, R. S. (1970). New England Journal of Medicine 283,CrossRefGoogle Scholar
Shiano-Chun, T., Becvar, J. E. & Hastings, J. W. (1979). Archives oflliochemistry and Biophysics 193, 110116.Google Scholar
Sirivech, S., Driskell, J. & Frieden, E. (1977). Journal of Nutrition 107, 739745.Google Scholar
Van Wyke, C. P., Linder-Horowitz, M. & Munro, H. N. (1971). Journal of Biological Chemistry 246, 10251031.Google Scholar
Wheby, M. S. (1970). Scandinavian Journal of Haematology 7,Google Scholar
Wheby, M. S., Jones, L. G. & Crosby, W. H. (1964) Journal of Clinical Investigation 43, 14331442.Google Scholar
Zaman, Z. & Verwilghen, R. L. (1977). Biochemical Society Transactions 5, 306308.Google Scholar