Hostname: page-component-cd9895bd7-hc48f Total loading time: 0 Render date: 2024-12-27T13:11:08.589Z Has data issue: false hasContentIssue false

Nutritional outcome and immunocompetence in mice fed on a diet containing raw field beans (Vicia faba, var. minor) as the source of protein

Published online by Cambridge University Press:  09 March 2007

J. Alfredo Martínez
Affiliation:
Department of Nutrition and Food Science, University of País Vasco, 01007, Vitoria, Spain
M. Teresa Macarulla
Affiliation:
Department of Nutrition and Food Science, University of País Vasco, 01007, Vitoria, Spain
Rafael Marcos
Affiliation:
Department of Physiology and Nutrition, University of Navarra, 31008, Pamplona, Spain
Jesús Larralde
Affiliation:
Department of Physiology and Nutrition, University of Navarra, 31008, Pamplona, Spain
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.

Feeding growing mice on diets containing raw field beans (Vicia faba var. minor) as the only source of protein brought about an impairment in growth, muscle mass and liver weight. No changes in food consumption were observed, but the food intake:weight gain ratio was increased in those animals. Plasma protein, triacylglycerols and cholesterol values were not affected by the dietary treatment although serum glucose and zinc levels fell after legume intake as well as the number of circulating erythrocytes. The relative enlargement of thymus and spleen in the legume-fed mice was apparently accompanied by a reduction in the cell number and an increase in cell size, while the protein synthesis capacity followed differentiated patterns in both tissues when assessed through protein, DNA and RNA determinations. The haemagglutination titres and the number of rosette-forming cells were lower in those animals fed on the field bean diet as well as the splenic lymphocyte responses to phytohaemagglutinin, Concanavalin A or lipopolysaccharide mitogens used to evaluate the functional status of T and B lymphocytes. The present study describes, apparently for the first time in mice, the involvement of field bean intake in some immunological disturbances affecting both humoral- and cell-mediated aspects of the immune response

Type
Nutritional Effects of Natural Toxicants
Copyright
Copyright © The Nutrition Society 1992

References

REFERENCES

Barratt, M. E. J., Strachan, P. J. & Porter, P. (1979). Immunologically mediated nutritional disturbances associated with soya-protein antigens. Proceedings of the Nutrition Society 38, 143149.CrossRefGoogle ScholarPubMed
Bell, R. G., Hazell, L. A. & Price, P. (1978). Influence of dietary restriction on lymphoid tissues. Clinical and Experimental Immunology 26, 314326.Google Scholar
Bello, J., Cenarruzabeitia, M. N. & Larralde, J. (1972). Antinutritive substances contained in seeds of field beans (Vicia faba). 2. Effects of heat treatment and aminoacid supplementation. Revista de Nutrition Animal 10, 139149.Google Scholar
Bergmeyer, H. U. (1974). Methoden der enzymatischen Analyse. Weinhein: Verlag Chemie.Google Scholar
Bond, D. A. (1981). Vicia faba: Feeding value. The Hague, The Netherlands: Martin Nijhoff.Google Scholar
Bounous, G. & Kongshavn, P. A. L. (1985). Differential effect of dietary protein type on the B-cell and T-cell immune responses in mice. Journal of Nutrition 115, 14031408.CrossRefGoogle ScholarPubMed
Bounous, G., Létourneau, L. & Kongshavn, P. A. L. (1983). Influence of diet protein type on the immune system of mice. Journal of Nutrition 113, 14151421.CrossRefGoogle ScholarPubMed
Böyum, A. (1968). Separation of leukocytes from blood and bone marrow. Scandinavian Journal of Clinical Laboratory Investigation 21, Suppl. 97, 9109.Google Scholar
Chandra, R. K. (1988). Nutrition and immune response. Nutrition Research 8, 225237.CrossRefGoogle Scholar
Chandra, R. K. (1991). Micronutrient, nutrition and immunity. Nutrition Research and Reviews 4, 143162.CrossRefGoogle Scholar
Crass, R. A., Oates, P. S. & Morgan, R. G. M. (1987). The effect of fasting on enzyme levels in the enlarged and involuting rat pancreas. British Journal of Nutrition 58, 427436.CrossRefGoogle ScholarPubMed
Dowd, P. S., Kelleher, J. & Guillou, P. J. (1986). T-lymphocyte subsets and IL-2 production in zinc-deficient rats. British Journal of Nutrition 55, 5969.CrossRefGoogle ScholarPubMed
Eggum, B. O. (1986). Factors affecting the nutritional value of field beans. Journal of the Science of Food and Agriculture 37, 11901198.Google Scholar
Eisemann, J. H., Hammond, A. C. & Rumsey, T. S. (1989). Tissue protein synthesis and nucleic acid concentrations in steers treated with somatotropin. British Journal of Nutrition 62, 657671.CrossRefGoogle ScholarPubMed
Ferguson, A. (1985). Immunological response to foods. Proceedings of the Nutrition Society 44, 7380.CrossRefGoogle Scholar
Forbes, R. M. (1984). Use of laboratory animals to define physiological functions and bioavailability of zinc. Federation Proceedings 43, 28352839.Google ScholarPubMed
Garvey, I. S., Cremer, N. E. & Sussdorf, D. H. (1981). Methods in Immunology. Philadelphia: W. A. Benjamin Inc.Google Scholar
Gershwin, M. E., Beach, R. S. & Hurley, L. S. (1985). Nutrition and Immunity. New York: Academic Press.Google Scholar
Giugliano, R. & Millward, D. J. (1987). The effects of severe zinc deficiency on protein turnover in muscle and thymus. British Journal of Nutrition 57, 139155.CrossRefGoogle ScholarPubMed
Goodlad, J. S. & Mathers, J. C. (1990). Large bowel fermentation in rats given diets containing raw peas (Pisum sativum). British Journal of Nutrition 64, 569587.CrossRefGoogle ScholarPubMed
Grant, G., More, L. J., McKenzie, N. H., Syeward, J. C. & Pusztai, A. (1983). A survey of the nutritional and haemagglutination properties of legume seeds available in the UK. British Journal of Nutrition 50, 207213.CrossRefGoogle ScholarPubMed
Grant, G., Oliveira, J. T. A., Dorward, P. M., Annand, M. A., Woldron, M. & Pusztai, A. (1987). Metabolic and hormonal changes in rats resulting from consumption of kidney beans or soya bean. Nutrition Reports International 36, 763772.Google Scholar
Gupta, Y. P. (1987). Anti-nutritional and toxic factors in food legumes: a review. Plant Foods for Human Nutrition 37, 201228.CrossRefGoogle ScholarPubMed
Hansen, A. M., Fernandes, G. & Good, R. A. (1982). Nutrition and immunity. Annual Review of Nutrition 2, 151177.CrossRefGoogle ScholarPubMed
Harland, B. F. (1989). Dietary fibre and mineral bioavailability. Nutrition Research and Reviews 2, 133147.CrossRefGoogle ScholarPubMed
Hasdai, A., Nitsan, Z., Volcani, R. & Birk, Y. (1989). Growth, digestibility and enzyme activities in the pancreas and intestines of guinea-pigs fed on raw or heated soya bean flour. British Journal of Nutrition 62, 529537.CrossRefGoogle ScholarPubMed
Hebblethwaite, P. D. (1983). Faba Beans: A Basis for Improvement. London: Butterworths.Google Scholar
Hockaday, T. D. R. (1982). Beans in the management of diabetes. Proceedings of the Nutrition Society 41, 8182.CrossRefGoogle Scholar
Hudson, L. & Hay, F. C. (1989). Practical Immunology. Oxford: Blackwell Scientific Publications.Google Scholar
Huisman, J., Van Der Poel, A. F. B., Mouwen, J. M. V. M. & Van Weerden E. J. (1900 a). Effect of variable protein contents in diets containing Phaseolus vulgaris beans on performance, organ weights and blood variables in piglets, rats and chickens. British Journal of Nutrition 64, 755764.CrossRefGoogle Scholar
Huisman, J., Van Der Poel, A. F. B., Van Leeuwen, P. & Verstegen, M. W. A. (1990 b). Comparison of growth, nitrogen metabolism and organ weights in piglets and rats fed on diets containing Phaseolus vulgaris beans. British Journal of Nutrition 64, 743753.CrossRefGoogle ScholarPubMed
Keith, M. O. & Bell, J. M. (1988). Digestibility of nitrogen and amino acids in selected protein sources fed to mice. Journal of Nutrition 118, 561568.CrossRefGoogle ScholarPubMed
Kilshaw, P. J. & Slade, H. (1982). Villus atrophy and crypt elongation in the small intestine of preruminant calves fed with heated soybean flour or wheat gluten. Research Veterinary Science 33, 305308.CrossRefGoogle ScholarPubMed
King, T. P., Begbie, R. R. & Cadenhead, A. (1983). Nutritional toxicity of raw kidney beans in pigs. Immunocytochemical and cytopathological studies on the gut and the pancreas. Journal of the Science of Food and Agriculture 34, 14041412.CrossRefGoogle ScholarPubMed
Larralde, J. & Martinez, J. A. (1989). A reappraisal of the nutritional utilization of legumes. Revista española de Fisiología 45, Suppl., 220227.Google ScholarPubMed
Liener, I. E. (1989). Antinutritional factors in legume seeds: state of the art. Recent Advances of Research in Antinutritional Factors in Legume Seeds, pp. 613 [Huissman, J.Van der Poel, T. F. B. and Liener, I. E., editors]. Wageningen: Pudoc.Google Scholar
Lowry, O. H., Rosebrough, N. J., Farr, A. L. & Randall, R. J. (1951). Protein measurement with the Folin phenol reagent. Journal of Biological Chemistry 193, 265275.CrossRefGoogle ScholarPubMed
McConnell, I., Munro, A., Gurner, B. W. & Coombs, R. R. A. (1969). Studies of actively allergenized cells. 1. The cytodynamics and morphology of rosette forming lymph node cells in mice and inhibition of rosette formation with antibody to mouse immunoglobulins. International Archives of Allergy 35, 209218.CrossRefGoogle Scholar
McFarlane, H. & Hamid, J. (1973). Cell-mediated immune response in malnutrition. Clinical and Experimental Immunology 13, 153164.Google ScholarPubMed
Macarulla, M. T., Martinez, J. A., Barcina, Y. & Larralde, J. (1989). Intestinal absorption of d-galactose in the presence of extracts from Phaseolus vulgaris hulls. Plant Foods for Human Nutrition 39, 359368.CrossRefGoogle ScholarPubMed
Martínez, J. A., Barcina, Y. & Larralde, J. (1985). Interrelationships between zinc supply and protein source in young and adult rats. Nutrition Reports International 32, 10371046.Google Scholar
Martínez, J. A., Barcina, Y. & Larralde, J. (1986). Induced biochemical and physiological changes in young and adult growing rats fed on a vegetable or animal protein diet. Growth 50, 178184.Google ScholarPubMed
Martínez, J. A., Goena, M., Santidrián, S. & Larralde, J. (1987). Response of muscle, liver and whole body protein turnover to two different sources of protein. Annals of Nutrition and Metabolism 31, 146153.Google ScholarPubMed
Martínez, J. A. & Larralde, J. (1984). Influence of diets containing different levels of field bean on body protein composition and nitrogen balance of growing rats. Annals of Nutrition and Metabolism 28, 174180.Google Scholar
Mendis, S. & Kumaransunderam, R. (1990). The effect of daily consumption of coconut fat and soya-bean fat on plasma lipids and lipoproteins of young normolipidaemic men. British Journal of Nutrition 63, 547552.CrossRefGoogle ScholarPubMed
Mengheri, E., Scarino, S. L., Vignolini, F. & Spadoni, A. (1985). Modifications in plasma cholesterol and apolipoproteins of hypercholesterolaemic rats induced by ethanol-soluble factors of Vicia faba. British Journal of Nutrition 53, 223232.CrossRefGoogle Scholar
Munro, H. N. & Fleck, A. (1966). Nucleic acid determination. Analyst 9, 7884.CrossRefGoogle Scholar
Oliveira, J. T. A., Pusztai, A. & Grant, G. (1988). Changes in organ and tissues induced by feeding of purified kidney bean lectins. Nutrition Research 8, 943947.CrossRefGoogle Scholar
Park, J. H. Y., Grandjean, C. J., Antonson, D. L. & Vanderhoof, J. A. (1986). Effects of isolated zinc deficiency on the composition of skeletal muscle, liver and bone during growth in rats. Journal of Nutrition 116, 610617.CrossRefGoogle ScholarPubMed
Prakash, D. & Migra, P. S. (1988). Protein content and amino acid profile of some leguminous seeds. Plant Foods for Human Nutrition 38, 6165.CrossRefGoogle ScholarPubMed
Pusztai, A., Grant, G. & Oliveira, J. T. A. (1986). Local (gut) and systemic responses to dietary lectins. IRCS Medical Science 14, 205208.Google Scholar
Radix, P. M., Walters, C. S. & Adkins, J. A. (1983). The influence of ethionine-supplemented soy protein diet on cell-mediated and humoral immunity. Journal of Nutrition 113, 159164.CrossRefGoogle ScholarPubMed
Ridout, C. L., Wharf, S. G., Price, K. R., Johnson, I. T. & Fenwick, G. R. (1988). UK mean daily intakes of saponins-intestine-permeabilizing factors in legumes. Food Sciences and Nutrition 42F, 111116.CrossRefGoogle Scholar
Rubio, L. A., Brenes, A. & Castaño, M. (1990). The utilization of raw and autoclaved faba beans and faba bean fractions. British Journal of Nutrition 63, 419430.CrossRefGoogle ScholarPubMed
Sever, J. L. (1962). Application of a microtechnique to viral serological investigations. Journal of Immunology 88, 320329.CrossRefGoogle ScholarPubMed
Shutler, S. M., Bircher, G. M., Tredger, J. A., Morgan, L. M., Walker, A. F. & Low, A. G. (1989). The effect of daily baked bean consumption on plasma lipids levels in young normo-cholesterolaemic men. British Journal of Nutrition 61, 257265.CrossRefGoogle ScholarPubMed
Sissons, J. W., Pedersen, H. E., Duvaux, C., Hepell, L. M. J. & Turvey, A. (1989). Gut dysfunction and diarrhoea in calves fed antigenic soya bean protein. In Recent Advances of Research in Antinutritional Factors in Legume Seeds, pp. 359362 [Huissman, J.Van der Poel, T. F. B. and Liener, I. E., editors]. Wageningen: Pudoc.Google Scholar
Smith, R. H. & Sissons, J. W. (1975). The effect of different feeds, including those containing soya-bean products, on the passage of digesta from the abomasum of the preruminant calf. British Journal of Nutrition 33, 329336.CrossRefGoogle ScholarPubMed
Stinnet, J. D. (1987). Nutrition and the Immune Response. Boca Raton, FL: CRC Press.Google Scholar
Suttle, N. F. & Jones, D. G. (1989). Recent developments in trace element metabolism and function. Journal of Nutrition 119, 10551061.CrossRefGoogle ScholarPubMed
Verma, P. C., Gupta, R. P., Sodane, J. K. & Gupta, R. K. P. (1988). Effect of experimental zinc deficiency and repletion on some immunological variables in guinea-pigs. British Journal of Nutrition 59, 149154.CrossRefGoogle ScholarPubMed
Villanueva, M. R., Martinez, J. A. & Larralde, J. (1987). Intestinal disaccharidase and dipeptidase activities in growing rats fed a raw field bean diet. Journal of the Science of Food and Agriculture 39, 163168.CrossRefGoogle Scholar
Waterlow, J. C., Millward, D. J. & Garlick, P. J. (1978). Protein Turnover in Mammalian Tissues and in the Whole Body. Amsterdam: Elsevier.Google Scholar
Williams, P. E. V., Pusztai, A., McDearmid, A. & Innes, G. M. (1984). The use of kidney beans in diets for young beef steers. Animal Feed and Science Technology 12, 110.CrossRefGoogle Scholar