Abstract
The ability of polyphenolic compounds to form insoluble complexes with other macro-molecules such as proteins has long been associated with the observed reduction in nutritive value resulting from their inclusion in animal diets. Naturally occurring polyphenols, and in particular condensed tannins isolated from various plant sources, have been shown to inhibit in vitro a number of digestive enzymes including trypsin, α-amylase and lipase. In addition, the results of various feeding trials suggest that similar reductions in intestinal digestive enzyme activity may result from the feeding of high polyphenolic diets. The evidence for this is summarised and discussed in relation to the possible effect of enzyme inhibition on reduced nutritive value and it is concluded that the observed reduction in protein availability found in vivo on consuming high tannin diets cannot simply be explained by the formation of dietary protein tannin complexes and that the ability of polyphenolic compounds to inhibit digestive enzymes may be of greater significance than realised previously.
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References
Armstrong, W.D., Featherstone, W.R. and Rogler, J.C., 1973, Influence of methionine and other dietary additions on the performance of chicks fed bird resistant sorghum grain diets, Poultry Sci., 52:1592–1599.
Bond, D.A., 1976, In vitro digestibility of the testa in tannin-free field beans (Vicia faba L.), J. Agric Sci., 86:561–566.
Burns, R.E., 1966, Tannin in Sericea lespedeza, Georgia Agricultural Research Bulletin NS 164.
Daiber, K.H., 1975, Enzyme inhibition by polyphenols of sorghum grain and malt, J. Sci. Fd. Agric, 26:1399–1411.
Gertler, A. and Nitsan, Z., 1970, The effect of trypsin inhibitors on pancreatopeptidase E, trypsin, chymotrypsin and amylase in the pancreas and intestinal tract of chicks receiving raw and heated soyabean diets, Br. J. Nutr. 24:893–904.
Glick, Z. and Joslyn, M.A., 1970, Effect of tannic acid and related compounds on the absorbtion and utilisation of proteins in the rat, J. Nutr., 100:516–520.
Griffiths, D.W., 1981, The polyphenolic content and enzyme inhibiting activity of testas from bean (Vicia faba) and pea (Pisum spp.) varieties, J. Sci. Fd. Agric., 32:797–804.
Griffiths, D.W. and Jones, D.I.H., 1977, Cellulase inhibition by tannins in the testa of field beans (Vicia faba), J. Sci. Fd. Agric, 28:983–989.
Griffiths, D.W. and Moseley, G. 1980, The effect of diets containing field beans of high or low polyphenolic content on the activity of digestive enzymes in the intestines of rats, J. Sci. Fd. Agric, 31:225–259.
Harborne, J.B., 1979, Flavanoid Pigments, In Herbivores: Their interaction with secondary plant metabolites (Rosenthal, G.A. and Janzen, D.H. Eds.) Academic Press, London and New York, pp.619–656.
Haslam, E., 1966, The scope of vegetable tannin chemistry In The Vegetable Tannins (Haslam, E., Ed.) Academic Press, London and New York, pp. 1–13.
Jambunathan, R. and Mertz, E.T., 1973, Relationship between tannin levels, rat growth and diets, of proteins in sorghum, J. Agric Food Chem., 28:692–696.
Jones, W.T. and Mangan, J.L., 1977, Complexes of the condensed tannins of sainfoin (Onobrychis viciifolia Scop.) with Fraction 1 leaf protein with submaxillary mucoprotein, and their reversal by polyethylene glycol and pH, J. Sci., Fd. Agric, 28:126–136.
Lindgren, E., 1975, The nutritive value of peas and field beans for hens, Swed. J. Agric. Res., 5:159:161.
Martin-Tanguy, J., Guillaune, J and Kossa, A., 1977, Condensed tannins in horse bean seeds: chemical composition and apparent effect on poultry, J. Sci. Fd. Agric, 28:757–765.
Moseley, G. and Griffiths, D.W., 1979, Varietal variation in the anti-nutritive effects of field beans (Vicia faba) when fed to rats. J. Sci. Fd. Agric, 30:772–778.
Price, M.L. and Butler, L.G., 1980, Tannins and nutrition, Purdue University Agricultural Experiment Stations Bulletin No. 272.
Rowlands, D.G. and Corner, J.J., 1962, Genetics of pigmentation in field beans (Vicia faba), Eucarpia, 3:229–234.
Swain, T., 1965, The tannins. In Plant Biochemistry (Bonner, J. and Varner, J.E., Eds.), Acadamic Press, London and New York, pp.552–580.
Tamir, M. and Alumot, E., 1969, Inhibition of digestive enzymes by condensed tannins from green and ripe carobs, J. Sci. Fd. Agric, 20:199–202.
Thompson, R.S., Jacques, D., Haslam, E. and Tanner, R.J.N., 1972, Part 1, The isolation, structure and distribution in nature of plant procyanidins, J. Chenu Soc. Perkin Transactions I, pp.1387–1399.
Tilley, J.M.A. and Terry, R.A., 1963, A two stage technique for the in vitro digestion of forage crops, J. Br.Grassland Soc. 18:104–111.
Van Sumere, C.F., Albrect, J., Dedonder, H., De Pooter, H, and Pé, I., 1975, Plant proteins and pehnolics, In The chemistry and biochemistry of plant proteins (Harborne, J.B. and Van Sumere, C.F., Eds.) Academic Press, London and New York, pp. 211–264.
Williams, A.H., 1963, Enzyme inhibition by phenolic compounds, In Chemistry of phenolic compounds (Pridham, J.B., Ed.) Pergammon Press, Oxford and London, pp.87–95.
Wilson, B.J., McNab, J.M. and Bentley, H., 1972, Trypsin inhibitor activity in the field bean (Vicia faba L.), J. Sci. Fd. Agric, 23:679–684.
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© 1986 Plenum Press, New York
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Griffiths, D.W. (1986). The Inhibition of Digestive Enzymes by Polyphenolic Compounds. In: Friedman, M. (eds) Nutritional and Toxicological Significance of Enzyme Inhibitors in Foods. Advances in Experimental Medicine and Biology, vol 199. Springer, Boston, MA. https://doi.org/10.1007/978-1-4757-0022-0_29
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DOI: https://doi.org/10.1007/978-1-4757-0022-0_29
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