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Dietary fibre analysis

Published online by Cambridge University Press:  05 March 2007

Barry V. McCleary
Affiliation:
Megazyme International Ireland Limited, Bray Business Park, Bray, County Wicklow, Republic of Ireland
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Abstract

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The 'gold standard' method for the measurement of total dietary fibre is that of the Association of Official Analytical Chemists (2000; method 985.29). This procedure has been modified to allow measurement of soluble and insoluble dietary fibre, and buffers employed have been improved. However, the recognition of the fact that non-digestible oligosaccharides and resistant starch also behave physiologically as dietaryfibre has necessitated a re-examination of the definition of dietary fibre, and in turn, a re-evaluation of the dietary fibre methods of the Association of Official Analytical Chemists. With this realisation, the American Association of Cereal Chemists appointed a scientific review committee and charged it with the task of reviewing and, if necessary, updating the definition of dietary fibre. It organised various workshops and acceptedcomments from interested parties worldwide through an interactive website. More recently, the (US) Food and Nutrition Board of the Institute of Health, National Academy of Sciences, under the oversight of the Standing Committee on the Scientific Evaluation of Dietary Reference Intakes, assembled a panel to develop a proposed definition(s) of dietary fibre. Various elements of these definitions were in agreement, but not all. What was clear from both reviews is that there is an immediate need to re-evaluate the methods that are used for dietary fibre measurement and to make appropriate changes where required, and to find new methods to fill gaps. In this presentation, the 'state of the art' in measurement of total dietary fibre and dietary fibre components will be described and discussed, together with suggestions for future research.

Type
Symposium on ‘Dietary fibre in health and disease’ Session: General aspects of dietary fibre
Copyright
Copyright © The Nutrition Society 2003

References

Anonymous (2001a) The definition of dietary fibre. Cereal Foods World 46, 112126.Google Scholar
Anonymous (2001b) Dietary Reference Intakes; Proposed Definition of Dietary Fibre Washington, DC Food and Nutrition Board of the Institute of Health, National Academy of Science, National Academy PressGoogle Scholar
Asp, N-G (2001) Development of dietary fibre methodology Advanced Dietary Fibre Technology, pp.7788 [ McCleary, BV and Prosky, L, Editors ]. Oxford: Blackwell Science Ltd.Google Scholar
Asp, N-G & Johansson, C-G (1981) Techniques for measuring dietary fiber In. The Analysis of Dietary Fiber in Food. pp.173189 [ James, WPT and Theander, O, Editors ]. New York: Marcel DekkerGoogle Scholar
Asp, N-G & Johansson, C-G (1984) Dietary fibre analysis. Nutrition Abstracts and Reviews 54, 735752.Google Scholar
Asp, N-G, Schweizer, TF, Southgate, DAT & Theander, O (1992) Dietary fibre analysis Dietary Fibre – A Component of Food. Nutritional Function in Health and Disease. pp.57102 [ Schweizer, TF and Edwards, CA, Editors ] London: Springer-VerlagGoogle Scholar
American Association of Cereal ChemistsAmerican Association of Cereal Chemists (2000) Method 32–20 for insoluble dietary fibre Association of Official Analytical Chemists (2000) Method 985.29 for dietary fibre.Google Scholar
Association of Official Analytical ChemistsAssociation of Official Analytical Chemists (2000) Method 991.43 for soluble and insoluble dietary fibre.Google Scholar
Association of Official Analytical ChemistsAssociation of Official Analytical Chemists (2000) Method 994.13; the Uppsala enzymic/chemical method.Google Scholar
Champ, M, Kozlowski, F & Lecannu, G (2001)In Advanced Dietary Fibre Technology. pp.106119 [ McCleary, BV and Prosky, L, Editors ]. Oxford: Blackwell Science Ltd.Google Scholar
Champ, M, Marti, L, Noah, L & Gratas, M (1999) Analytical methods for resistant starch. In Complex Carbohydrates in Food pp.169187 [ Cho, SS, Prosky, L and Dreher, M, Editors ]. New York: Marcel Dekker Inc.Google Scholar
Cho, S, DeVries, J & Prosky, L (1997) Dietary Fibre Analysis and Applications. Gaithesburg, MD: Association of Official Analytical Chemists InternationalGoogle Scholar
Craig, AS (2001) Polydextrose: analysis and physiological benefits. In Advanced Dietary Fibre Technology, 503508 [ McCleary, BV and Prosky, L, Editors ]. Oxford: Blackwell Science Ltd.Google Scholar
De Slegte, J (2002) Determination of trans -galactooligosaccharides in selected food products by ion-exchange chromatography: collaborative study. Journal of the Association of Official Analytical Chemists 85, 417423.Google ScholarPubMed
Englyst, HN (1981) Determination of carbohydrates and its composition in plant materials. In The Analysis of Dietary Fiber in Food, 173189 [ James, WPT and Theander, O, Editors ]. New York: Marcel Dekker.Google Scholar
Englyst, HN & Cummings, JH (1984) Simplified method for the measurement of total non-starch polysaccharides by gas-liquid chromatography of constituent sugars as alditol acetates. Analyst 109, 937942.CrossRefGoogle Scholar
Englyst, HN & Hudson, G (1987) Colorimetric method for routine measurement of dietary fibre as non-starch polysaccharides. A comparison with gas-liquid chromatography. Food Chemistry 24, 6376.CrossRefGoogle Scholar
Englyst, HN, Kingman, SM & Cummings, JH (1992) Classification and measurement of nutritionally important starch fractions. European Journal of Clinical Nutrition 46, S33S39.Google ScholarPubMed
Furda, I (1977) Fractionation and examination of biopolymers from dietary fiber. Cereal Foods World 22, 252254.Google Scholar
Furda, I (1981) Simultaneous analysis of soluble and insoluble dietary fiber. In The Analysis of Dietary Fiber in Food, pp.163172 [ James, WPT and Theander, O, Editors ] New York: Marcel Dekker.Google Scholar
Goni, I, Garcia-Diz, E, Manas, E & Saura-Calixto, F (1996) Food Chemistry 56, 445449.CrossRefGoogle Scholar
Gordon, DT & Okuma, K (2002) Determination of total dietary fibre in selected foods containing resistant maltodextrins by enzymatic-gravimetric method and liquid chromatography: collaborative study. Journal of the Association of Official Analytical Chemists 85, 435444.Google ScholarPubMed
Hellendoorn, EW, Noordhoff, MG & Slagman, J (1975) Enzymatic determination of the indigestible residue (dietary fibre) content of human food. Journal of the Science of Food and Agriculture 26, 14611468.CrossRefGoogle Scholar
Henneberg, W & Stohmann, F (1860) Beiträge zur Begründung einer rationellen Fütterung der Wiederkäuer, Vol. 1 Braunschweig, Germany.Google Scholar
Hirayama, M & Hidaka, H (1993) Production and utilization of microbial fructans. In Science and Technology of Fructans, pp.273302 [ Suzuki, M and Chatterton, NJ, Editors ]. Boca Raton, FL: CRC PressGoogle Scholar
Hoebregs, H (1997) Fructans in food and food products, ionexchange-chromatographic method: Collaborative study. Journal of the Association of Official Analytical Chemists 80, 10291037.Google Scholar
Lee, S, Prosky, L & DeVries, J (1992) Determination of total, soluble, and insoluble dietary fiber in foods: Enzymatic-gravimetric method, MES-TRIS buffer: Collaborative study. Journal of the Association of Official Analytical Chemists 75, 395416.Google Scholar
McCance, RA & Lawrence, RD (1929) The Carbohydrate Content of Foods. Medical Research Council Special Report Series no. 135 London: H.M. Stationery Office.Google Scholar
McCleary, BV (1999) Enzyme purity and activity in fibre determinations. Cereal Foods World 44, 590596.Google Scholar
McCleary, BV (2000) The importance of enzyme purity and activity in the measurement of total dietary fibre and dietary fibre components. Journal of the Association of Official Analytical Chemists 83, 9971005.Google Scholar
McCleary, BV & Blakeney, AB (1999) Measurement of inulin and oligofructan. Cereal Foods World 44, 398406.Google Scholar
McCleary, BV & Monaghan, DA (2002) Measurement of resistant starch. Journal of the Association of Official Analytical Chemists 85, 665675.Google ScholarPubMed
McCleary, BV, Murphy, A & Mugford, DC (2000) Measurement of oligofructan and fructan polysaccharides in foodstuffs by an enzymic/spectrophotometric method: Collaborative study. Journal of the Association of Official Analytical Chemists 83, 356364.Google Scholar
Meyer, D & Tungland, B (2001) Non-digestible oligosaccharides and polysaccharides: their physiological effects and health implications.In Advanced Dietary Fibre Technology, pp.455470. [ McCleary, BV and Prosky,, L Editors ] Oxford: Blackwell Science Ltd.Google Scholar
Mongeau, R & Brassard, R (1986) A rapid method for the determination of soluble and insoluble dietary fiber: Comparison with AOAC total dietary fiber procedure and Englyst's method. Journal of Food Science 51, 13331336.CrossRefGoogle Scholar
Mongeau, R & Brassard, R (1990) Determination of insoluble, soluble, and total dietary fiber: Collaborative study of rapid gravimetric method. Cereal Foods World 35, 319325.Google Scholar
Prosky, L, Asp, NG, Furda, I, DeVries, JW, Schweizer, TF & Harland, BF (1984) Determination of total dietary fiber in foods, food products, and total diets: Interlaboratory study. Journal of the Association of Official Analytical Chemists 67, 10441052.Google Scholar
Prosky, L, Asp, NG, Furda, I, DeVries, JW, Schweizer, TF & Harland, BF (1985) Determination of total dietary fiber in foods and food products: collaborative study. Journal of the Association of Official Analytical Chemists 68, 677679.Google ScholarPubMed
Quemener, B, Thibault, J-F & Coussement, P (1997) Integration of inulin determination in the AOAC method for measurement of General aspects of dietary fibre 9 total dietary fibre. International Journal of Biological Macromolecules 21, 175178.CrossRefGoogle Scholar
Quigley, ME & Englyst, HN (1992) Determination of neutral sugars and hexosamines by high-performance liquid chromatography with pulsed amperometric detection. Analyst 117, 17151718.CrossRefGoogle Scholar
Schaller, DA (1976) Analysis of dietary fiber. Food Production and Development 11, 7072.Google Scholar
Schweizer, TF & Würsch, P (1979) Analysis of dietary fibre. Journal of the Science of Food and Agriculture 30, 613619.CrossRefGoogle ScholarPubMed
Schweizer, TF & Würsch, P (1981) Analysis of dietary fiber. In The Analysis of Dietary Fiber in Food, pp.203216 [ James, WPT and Theander, O, Editors ] New York: Marcel Dekker.Google Scholar
Southgate, DAT (1969a) Determination of carbohydrates in food. I. Available carbohydrates. Journal of the Science of Food and Agriculture 20, 326330.CrossRefGoogle Scholar
Southgate, DAT (1969b) Determination of carbohydrates in food. II. Unavailable carbohydrates. Journal of the Science of Food and Agriculture 20, 331335.CrossRefGoogle ScholarPubMed
Southgate, DAT (1981) Use of the Southgate method for unavailable carbohydrates in the measurement of dietary fiber The Analysis of Dietary Fiber in Food 1 – 19 James WPT Theander O New York Marcel DekkerGoogle Scholar
Southgate, DAT, Hudson, GJ & Englyst, HN (1978) The analysis of dietary fibre: the choices for the analyst. Journal of the Science of Food and Agriculture 29, 979988.CrossRefGoogle ScholarPubMed
Theander, O & Åman, P (1979) Studies on dietary fibres. I. Analysis and chemical characterization of water-soluble and waterinsoluble dietary fibres. Swedish Journal of Agricultural Research 9, 97106.Google Scholar
Theander, O, Åman, P, Westerlund, E & Graham, H (1990) The Uppsala method for rapid analysis of total dietary fiber. In New Developments in Dietary Fiber, pp.273281. [ Furda, I and Brine, CJ, Editors ] New York: Plenum PressCrossRefGoogle Scholar
Thomas, B (1972) Beiträge zur Nomenklatur und Analytik pflanzlicher Zellwandsubstanzen. Getreide, Mehl und Brot 26, 158165 168–169Google Scholar
Van Soest, P (1963a) Use of detergents in the analysis of fibrous feeds. I. Preparation of fiber residues of low nitrogen content. Journal of the Official Agricultural Chemists 46, 825829.Google Scholar
Van Soest, P (1963b) Use of detergents in the analysis of fibrous feeds. II. A rapid method for the determination of fiber and lignin. Journal of the Official Agricultural Chemists 46, 829835.Google Scholar
Van Soest, P & Wine, RH (1967) Use of detergents in the analysis of fibrous feeds. IV. Determination of plant cell wall constituents. Journal of the Official Agricultural Chemists 50, 5055.Google Scholar
Widdowson, EM & McCance, RA (1935) The available carbohydrates of fruits. Determination of glucose, fructose, sucrose, and starch. Biochemical Journal 29, 151156.CrossRefGoogle ScholarPubMed
Williams, RD & Olmstedt, W (1935) A biochemical method for determining indigestible residue (crude fibre) in faeces: lignin, cellulose, and non-water soluble hemicelluloses. Journal of Biological Chemistry 108, 653666.CrossRefGoogle Scholar