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Dietary intakes of starch and non-starch polysaccharides in a West African village

Published online by Cambridge University Press:  09 March 2007

Geoffrey J. Hudson
Affiliation:
MRC Dunn Clinical Nutrition Centre, Hills Road, Cambridge CB2 2DH
Hans N. Englyst
Affiliation:
MRC Dunn Clinical Nutrition Centre, Hills Road, Cambridge CB2 2DH
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Abstract

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Dietary intakes of starch and non-starch polysaccharides (NSP) have been estimated for a rural West African community. These people eat directly from shared bowls of cooked food, and so measurement of any individual's food intake is not possible. Recently developed methodology for estimating food intake under these circumstances and the analysis of samples for dietary polysaccharides are combined to yield estimates of intakes of about 375 g starch and 25 g NSP/d for adult males, with lower intakes for women and children, related to their smaller body weights. These intakes are not direct measurements but are extremely plausible when compared with values obtained for other societies where the complication of the shared food bowl does not impinge upon the measurements.

Type
Starch and non-starch polysaccharide intakes in West Africa
Copyright
Copyright © The Nutrition Society 1995

References

Anderson, T. L., Heird, W. C. & Winters, R. W. (1977) Clinical and physiological consequences of total parenteral nutrition in the paediatric patient. In Current Concepts in Parenteral Nutrition, pp. 111127 [Greep, J.M., Soeters, P. B., Westdorp, R. I. C., Phaf, C. W. R. and Fischer, J. E., editors]. The Hague: Nijhoff Medical Division.CrossRefGoogle Scholar
Bingham, S. A., Pett, S. & Day, K. C. (1990) Non-starch polysaccharide intake of a representative sample of British adults. Journal of Human Nutrition and Dietetics 3, 333337.CrossRefGoogle Scholar
Englyst, H. N. & Kingman, S. M. (1990) Dietary fibre and resistant starch. A nutritional classification of plant polysaccharides. In Dietary Fiber, pp. 4965 [Kritchevsky, D., Bonfield, C. and Anderson, J. W., editors]. New York: Plenum Press.CrossRefGoogle ScholarPubMed
Englyst, H. N., Kingman, S. M. & Cummings, J. H. (1992 a) Classification and measurement of nutritionally important starch fractions. European Journal of Clinical Nutrition 46, Suppl.2, S33S50.Google ScholarPubMed
Englyst, H. N., Quigley, M. E. & Hudson, G. J. (1994) Determination of dietary fibre as non-starch polysaccharides with gas-liquid chromatographic, high-performance liquid chromatographic or spectro-photometric measurement of constituent sugars. Analyst 119, 14971509.CrossRefGoogle ScholarPubMed
Englyst, H. N., Quigley, M. E., Hudson, G. J. & Cummings, J. H. (1992 b) Determination of dietary fibre as non-starch polysaccharides by gas–liquid chromatography. Analyst 117, 17071714.CrossRefGoogle ScholarPubMed
Englyst, H. N., Wiggins, H. S. & Cummings, J. H. (1982) Determination of the non-starch polysaccharides in plant foods by gas-liquid chromatography of constituent sugars as alditol acetates. Analyst 107, 307318.CrossRefGoogle ScholarPubMed
EURESTA (1993) European FLAIR-concerted action on resistant starch. Physiological implications of the consumption of resistant starch in man. Newsletter IV (2). Wageningen: Wageningen Agricultural University. Hudson, G. J. (1992) Food intake in a West African village. PhD thesis, CNAA, London.Google Scholar
Hudson, G. J. (1995) Food intake in a West African village. Estimation of food intake from a shared bowl. British Journal of Nutrition 73, 551569.CrossRefGoogle Scholar
Kay, R. M. & Truswell, A. S. (1980) Dietary fiber: effects on plasma and biliary lipids in man. In Medical Aspects of Dietary Fiber, pp. 153173 [Spiller, G.A. and Kay, R. M., editors]. New York: Plenum.CrossRefGoogle Scholar
Quigley, M. & Englyst, H. N. (1992) Measurement of neutral sugars and uronic acids by high-pressure liquid chromatography with pulsed amperometric detection. Analyst 117, 17151718.CrossRefGoogle Scholar
Quigley, M. E. & Englyst, H. N. (1994) Determination of the uronic acid constituents of non-starch polysaccharides by high-performance liquid chromatography with pulsed amperometric detection. Analyst 119, 15111518.CrossRefGoogle ScholarPubMed
Southgate, D. A. T. (1969 a) Determination of carbohydrates in foods. I. Available carbohydrates. Journal of the Science of Food and Agriculture 20, 326330.CrossRefGoogle Scholar
Southgate, D. A. T. (1969 b) Determination of carbohydrates in foods. II. Unavailable carbohydrates. Journal of the Science of Food and Agriculture 20, 331335.CrossRefGoogle ScholarPubMed
Story, J. A. & Kelley, M. J. (1982) Dietary fiber and lipoproteins. In Dietary Fiber in Health and Disease, pp. 229236 [Vahouny, G.V. and Kritchevsky, D., editors]. New York: Plenum.CrossRefGoogle Scholar