Hostname: page-component-586b7cd67f-dsjbd Total loading time: 0 Render date: 2024-11-23T04:25:54.588Z Has data issue: false hasContentIssue false

Functional food science and substrate metabolism

Published online by Cambridge University Press:  09 March 2007

W. H. M. Saris*
Affiliation:
Nutrition Research Centre, Department of Human Biology, Maastricht University, PO Box 616, NL-6200 MD Maastricht, The Netherlands
N. G. L. Asp
Affiliation:
Chemical Centre, Applied Nutrition and Food Chemistry, University of Lund, PO Box 124, S-221 00, Lund, Sweden
I. Björck
Affiliation:
Chemical Centre, Applied Nutrition and Food Chemistry, University of Lund, PO Box 124, S-221 00, Lund, Sweden
E. Blaak
Affiliation:
Nutrition Research Centre, Department of Human Biology, Maastricht University, PO Box 616, NL-6200 MD Maastricht, The Netherlands
F. Bornet
Affiliation:
Vilvoorde Research and Development Centre, Nutrition and Health Service, Havenstraat 84, B-1800Vilvoorde, Belgium
F. Brouns
Affiliation:
Novartis Nutrition Research Unit, PO Box 1350, NL-6201 BJ Maastricht, The Netherlands
K. N. Frayn
Affiliation:
Oxford Lipid Metabolism Group, Sheikh Rashid Laboratory, Radclfle Infirmary, Oxford OX2 6HE, UK
P. Fürst
Affiliation:
Institute of Biological Chemistry and Nutrition, University of Hohenheim, PO Box 700 562, Garbenstrasse 30, D- 70593 Stuttgart, Germany
G. Riccardi
Affiliation:
Dipartimento di Medicina Clinica e Sperimentale, Universit´ degli Studi di Napoli-Federico II, Via Sergio Pansini 5, 1-8-131 Napoli, Italy
M. Roberfroid
Affiliation:
UCL, Ecole de Pharmacie, Tour Van Helmont, Avenue E. Mounier, B-1200 Brussels, Belgium
M. Vogel
Affiliation:
Dipl. Biochemiker-Biochemisches Lab, Südzucker AG Mannheim/Ochsenfurt, Zafes, Wormser Strasse II, D-67190 Obrigheim, Pfalz, Germany
*
*Dr W. H. M. Saris, fax +31 43 367 0976, email [email protected]
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.

The present review addresses the role of food constituents in the aetiology of metabolic conditions and chronic diseases, mostly related to energy metabolism and substrate regulation, such as obesity and non-insulin-dependent diabetes mellitus. Second, attention is paid to malnutrition, a major cause of mortality and morbidity in developing countries, which may be a cause of concern in Europe because of the increasing number of elderly people in the population. Finally, the role of diet during exercise, a condition of enormous substrate demands, is evaluated. Based on a critical evaluation of the existing knowledge in the literature, implications for future research in relation to functional foods are discussed.

Type
Research Article
Copyright
Copyright © The Nutrition Society 1998

References

Acheson, KJ, Zahorska-Markiewicz, B, Pittet, Ph, Anantharaman, K & Jéquier, E (1980) Caffeine and coffee. Their influence on metabolic rate and substrate utilization in normal weight and obese individuals. American Journal of Clinical Nutrition 33, 989997.CrossRefGoogle ScholarPubMed
Ader, M & Bergman, RN (1987) Insulin sensitivity in the intact organism. Ballière's Clinical Endocrinology and Metabolism 1, 879910.CrossRefGoogle ScholarPubMed
American Diabetes Association (1996) Nutrition recommendations and principles for people with diabetes mellitus. Diabetes Care 20, S14S17.Google Scholar
American Diabetes Association (1997 a) Guide to diagnosis and classification of diabetes mellitus and other categories of glucose intolerance. Diabetes Care 20, S21–S24.CrossRefGoogle Scholar
American Diabetes Association (1997 b) Clinical practice recommendations. Tests of glycaemia in diabetes. Diabetes Care 20, S18S20.CrossRefGoogle Scholar
Asp, NG (1996) Dietary carbohydrates: classification by chemistry and physiology. Food Chemistry 57, 914.CrossRefGoogle Scholar
Asp, NG & Björck, I (1992) Resistant starch. Trends in Food Science and Technology 3, 111114.CrossRefGoogle Scholar
Asp, NG, Amelsvoort, JMM & Hautvast, JGAJ (1996) Nutritional implications of resistant starch. Nutrition Research Reviews 9, 131.CrossRefGoogle ScholarPubMed
Astrup, A, Toubro, S, Cannon, S, Hein, P, Breum, L & Madsen, J (1989) Caffeine: a double-blind placebo-controlled study of its thermogenic metabolic and cardiovascular effects in healthy volunteers. American Journal of Clinical Nutrition 51, 759767.CrossRefGoogle Scholar
Austin, MA, King, M-C, Vranizan, KM & Krauss, RM (1990) Atherogenic lipoprotein phenotype. A proposed genetic marker for coronary heart disease. Circulation 82, 495506.CrossRefGoogle ScholarPubMed
Balsom, PD, Söderlund, K & Ekblom, B (1994) Creatine in humans with special reference to creatine supplementation. Sports Medicine 18, 268280.CrossRefGoogle ScholarPubMed
Bär, A, Kunz, M, Schiweek, H & Schwarz, E (1994) In Ullmanns's Encyclopedia of Industrial Chemistry, pp. 413437. Weinheim: VCH Verlagsgesellschaft.Google Scholar
Bellisle, F, Blundell, JE, Fantino, M, Fern, E, Fletcher, RJ, Lambert, J, Roberfroid, M, Specter, S, Westenhöfer, J & Westerterp-Plantenga, MS (1998) Functional food science and behaviour and psychological functions. British Journal of Nutrition 80, Suppl. 1, S173–S193.CrossRefGoogle ScholarPubMed
Bendich, A (1991) Exercise and free radicals: effects of antioxidant vitamins. In Advances in Nutrition and Top Sport vol. 32, pp. 5978 [Brouns, F, Newsholme, E and Saris, WHM, editors]. Basel: Karger.Google Scholar
Björck, I (1996) Starch: nutritional aspects. In Carbohydrates in Food, pp. 505554 [ Eliasson, AC, editor]. New York, NY and Basel: Marcel Dekker Inc.Google Scholar
Björntorp, P (1991 a) Metabolic implications of body fat distribution. Diabetes Care 14, 11321143.CrossRefGoogle ScholarPubMed
Björntorp, P (1991 b) Importance of fat as a support nutrient for energy metabolism of athletes. Journal of Sports Sciences 9,7176.CrossRefGoogle ScholarPubMed
Björntorp, P & Brodoff, BN (editors) (1992) Obesity. Philadelphia, PA: J.B. Lippincott.Google ScholarPubMed
Blaak, EE & Saris, WHM (1995) Health aspects of various digestible carbohydrates. Nutrition Research 15, 15471573.CrossRefGoogle Scholar
Blaak, EE & Saris, WHM (1996) Postprandial thermogenesis and substrate utilization after ingestion of different dietary carbohydrates. Metabolism 45, 12351242.CrossRefGoogle ScholarPubMed
Blaak, EE, Baak, MA, Kemerink, GJ, Pakbiers, MTW, Heidendal, GAK & Saris, WHM (1994) Beta-adrenergic stimulation of whole body energy expenditure and skeletal muscle metabolism in relation to weight reduction in obese men. American Journal of Physiology 267, E316–E322.Google ScholarPubMed
Blundell, JE & Burley, VJ (1987) Satiation, satiety and the action of fibre on food intake. International Journal of Obesity 11, Suppl. 1, 925.Google ScholarPubMed
Bogardus, C, Lillioja, S, Mott, DM, Hollenbeck, C & Reaven, G (1985) Relationship between degree of obesity and in vivo insulin action in man. American Journal of Physiology 248, E286–E291.Google ScholarPubMed
Bolton-Smith, C & Woodward, M (1994) Dietary composition and fat to sugar ratios in relation to obesity. International Journal of Obesity 18, 820828.Google ScholarPubMed
Borkman, M, Storlien, LH, Pan, DA, Jenkins, AB, Chisholm, DJ & Campbell, LV (1993) The relation between insulin sensitivity and the fatty-acid composition of skeletal-muscle phospholipids. New England Journal of Medicine 328, 238244.CrossRefGoogle ScholarPubMed
Bouchard, C (1992) Genetic aspects of human obesity. In Obesity, pp. 343351 [Björntorp, P and Brodoff, BN, editors]. Philadelphia, PA: J.B. Lippincott.Google ScholarPubMed
Bouchard, C & Perusse, L (1993) Genetics of obesity. Annual Review of Nutrition 13, 337354.CrossRefGoogle ScholarPubMed
Bowman, BA & Forbes, AL (1993) Health effects of dietary fructose. American Journal of Clinical Nutrition 58, 72198235.Google Scholar
Brand Miller, JC (1994) Importance of GI in diabetes. American Journal of Clinical Nutrition 59, Suppl., 747S752S.CrossRefGoogle Scholar
Brighenti, F, Castellani, G, Benini, L, Casiraghi, M, Leopardi, E, Crovetti, R & Testolin, G (1995) Effect of neutralized and native vinegar on blood glucose and acetate responses to a mixed meal in healthy subjects. European Journal of Clinical Nutrition 49, 242247.Google ScholarPubMed
Brouns, F (1993) Nutritional Needs of Athletes. Chichester: John Wiley & Sons Ltd.Google Scholar
Brouns, F (1997 a) The effect of athletic training and dietary factors on the modulation of muscle glycogen. In The Clinical Pharmacology of Sport and Exercise, pp. 181193 [Reilly, T and Orne, M, editors]. Amsterdam: Elsevier Science B.V.Google Scholar
Brouns, F (1997 b) Aspects of dehydration and rehydration in sport. In Nutrition and Fitness. Metabolic and Behavioral Aspects in Health and Disease, pp. 6380 [Simopoulos, AP and Pavlou, KN, editors]. Basel: Karger.Google Scholar
Brouns, F, Saris, WHM & Schneider, H. (1992) Rationale for upper limits of electrolyte replacement during exercise. International Journal of Sport Nutrition 2, 229238.CrossRefGoogle ScholarPubMed
Brouns, F & Van der Vusse, GJ (1998) Utilization of lipids during exercise in humans: metabolic and dietary constraints. British Journal of Nutrition 79, 117128.CrossRefGoogle ScholarPubMed
Cameron-Smith, D, Colguhoun, EQ, Hettiarachchi, JM & Clark, MG (1990) Capsaicin and dihydrocapsaicin stimulate oxygen consumption in the perfused rat hindlimb. International Journal of Obesity 14, 259270.Google ScholarPubMed
Campfield, LA, Smith, FJ & Burn, P (1997) OB protein: a hormonal controller of central neural networks mediating behavorial, metabolic and neuroendocrine responses. Endocrinology and Metabolism 4, 81102.Google Scholar
Chandra, RK (1992) Effect of vitamin and trace-element supplementation on immune responses and infection in elderly subjects. Lancet 340, 11241127.CrossRefGoogle ScholarPubMed
Clarkson, PM (1991) Minerals: exercise performance and supplementation in athletes. Journal of Sports Sciences 9, 91116.CrossRefGoogle ScholarPubMed
Colditz, GA, Giovanucci, E & Rimm, ER (1991) Alcohol intake in relation to diet and obesity in women and men. American Journal of Clinical Nutrition 54, 4955.CrossRefGoogle ScholarPubMed
Costill, DL (1988) Carbohydrates for exercise: dietary demands for optimal performance. International Journal of Sports Medicine 9, 118.CrossRefGoogle ScholarPubMed
Coyle, EF (1991 a) Timing and method of increased carbohydrate intake to cope with heavy training, competition and recovery. Journal of Sports Sciences 9, 2952.CrossRefGoogle ScholarPubMed
Coyle, EF (1991 b) Carbohydrate feedings: effects on metabolism, performance and recovery. In Advances in Nutrition and Top Sport, vol. 32, pp. 114 [Brouns, F, Saris, WHM and Newsholme, EA, editors]. Basel: Karger.Google Scholar
Cummings, J (1993) Dietary fibre intakes in Europe. An overview. In Dietary Fibre Intakes in Europe. A Survey Conducted by Members of the Management Committee of COST 92: Metabolic and Physiological Aspects of Dietary Fibre in Food, pp. 1119 [Cummings, JH and Frolich, W, editors]. Brussels: Commission of the European Communities, Directorate-General Science, Research and Development.Google Scholar
Cummings, JH & Macfarlane, GT (1991) The control and consequences of bacterial fermentation in the human colon. Journal of Applied Bacteriology 70, 443459.CrossRefGoogle ScholarPubMed
D'Alessio, DA, Kavle, EC, Mozzoli, MA, Smalley, KJ, Polansky, M, Kendrick, ZV, Owen, LR, Bushman, MC, Boden, G & Owen, OE (1992) Thermic effect of food in lean and obese men. Journal of Clinical Investigation 81, 17811789.CrossRefGoogle Scholar
Després, J-P (1993) The insulin resistance-dyslipidemia syndrome: the most prevalent cause of coronary artery disease? Canadian Medical Association Journal 148, 13391340.Google ScholarPubMed
Després, J-P, Lamarche, B, Mauriège, P, Cantin, B, Dagenais, GR, Moorjani, S & Lupien, PJ (1996) Hyperinsulinemia as an independent risk factor for ischemic heart disease. New England Journal of Medicine 334, 952957.CrossRefGoogle ScholarPubMed
Diabetes and Nutrition Study Group of the European Association for the Study of Diabetes (1995) Recommendations for the nutritional management of patients with diabetes mellitus. Diabetes, Nutrition and Metabolism 8, 14.Google Scholar
Drent, ML & Van der Veen, EA (1993) Lipase inhibition: a novel concept in the treatment of obesity. International Journal of Obesity 17, 241244.Google ScholarPubMed
Drewnowski, A, Brunzell, JD, Sande, K, Iverius, PH & Greenwood, MRC (1985) Currently available hypolipidaemic drugs and future therapeutic developments. Bailliére's Clinical Endocrinology and Metabolism 9, 825847.Google Scholar
Felber, JP, Jéquier, E, Randin, JP, Tappy, L & Vaillamoz, D (1987) Comparative study of maltitol and sucrose by means of continuous indirect calorimetry. Journal of Parenteral and Enteral Nutrition 11, 250254.CrossRefGoogle ScholarPubMed
Finley, JW & Leveille, GA (1996) Macronutrient substitutes. In Present Knowledge in Nutrition, pp. 581595 [Ziegler, EE, editor]. Washington, DC: ILSI Press.Google Scholar
Finley, JW, Leveille, GA & Smith, ER (1994) Overview on salatrim, a family of low-calorie fats. Journal of Agricultural and Food Chemistry 42,432434.Google Scholar
Flatt, JP (1996) Glycogen levels and obesity. International Journal of Obesity 20, S1–S11.Google ScholarPubMed
Food and Agriculture Organization/World Health Organization (1998) Joint FAO/WHO Expert Consultation on Carbohydrates in Human Nutrition. Food and Nutrition Paper no. 66, Rome: FAO.Google Scholar
Food and Drug Administration (1996) In Food Additives Permitted for Direct Addition to Food for Human Consumption: Olestra. Federal register 1/30/1996;21 CRF Part 1, docket no. 87F–0179.Google Scholar
Frayn, KN (1993) Insulin resistance and lipid metabolism. Current Opinion in Lipidology 4, 197204.CrossRefGoogle Scholar
Frayn, KN (1995) Physiological regulation of macronutrient balance. International Journal of Obesity 19, S4–S10.Google ScholarPubMed
Frayn, KN (1996) Metabolic Regulation: A Human Perspective, p. 243. Colchester: Portland Press.Google Scholar
Frayn, KN & Kingman, SM (1995) Dietary sugars and lipid metabolism in humans. American Journal of Clinical Nutrition 62, Suppl., 250S263S.CrossRefGoogle ScholarPubMed
Frayn, KN, Williams, CM & Arner, P (1996) Are increased plasma non-eslertied fatty acid concentrations a risk marker for coronary heart disease and other chronic diseases? Clinical Science 90,243253.CrossRefGoogle ScholarPubMed
Frost, G, Keogh, B, Smith, D, Akinsanya, K & Leeds, A (1996) The effect of low-glycaemic carbohydrate on insulin and glucose response in vivo and in vitro in patients with coronary heart disease. Metabolism 45, 669672.CrossRefGoogle Scholar
Gerstein, HC & Yusuf, S (1996) Dysglycaernia and risk of cardiovascular disease. Lancet 347, 949950.CrossRefGoogle ScholarPubMed
Gibney, MJ, Maloney, M & Shelley, E (1987) Food and nutrient intakes in randomly selected healthy adults. British Journal of Nutrition 61, 129137.CrossRefGoogle Scholar
Granfeldt, Y, Björck, I, Drews, A & Tovar, J (1992) An in vitro procedure based on chewing to predict metabolic response to starch in cereal and legume products. European Journal of Clinical Nutrition 46, 649660.Google Scholar
Granfeldt, Y, Hagander, B & Björck, I (1995) Metabolic responses to starch in oat and wheat products. On the importance of food structure in complete gelatinization or presence of viscous fibre. European Journal of Clinical Nutrition 49, 189199.Google Scholar
Griffin, BA & Zampelas, A (1995) Influence of dietary fatty acids on the atherogenic lipoprotein phenotype. Nutrition Research Reviews 8, 126.CrossRefGoogle ScholarPubMed
Grinker, JA (1978) Obesity and sweet taste. American Journal of Clinical Nutrition 31, 10781087.CrossRefGoogle ScholarPubMed
Haber, GB, Heaton, KW, Murphy, D & Burroughs, LF (1977). Depletion and disruption of dietary fibre: effects on satiety, plasma-glucose, and insulin. Lancet, 679682.CrossRefGoogle Scholar
Hamilton, CC & Anderson, JW (1992) Fiber and weight management. Journal of Florida Medical Association 9, 379381.Google Scholar
Hargreaves, M (1995) Skeletal muscle carbohydrate metabolism during exercise. In Exercise Metabolism, pp. 4172 [Har-greaves, EE, editor]. Champaign, IL: Human Kinetics Publishers, Inc.Google Scholar
Haussinger, D, Roth, E, Lang, F & Gerok, W (1993) Cellular hydration state: an important determinant of protein catabolism in health and disease. Lancet 341, 13301332.CrossRefGoogle ScholarPubMed
Hawley, JA, Dennis, SC & Noakes, TD (1992) Oxidation of carbohydrate ingested during prolonged endurance exercise. Sports Medicine 14, 2742.CrossRefGoogle ScholarPubMed
Henry, CJK & Emery, B (1986) Effect of spiced food on metabolic rate. Human Nutrition: Clinical Nutrition 40C, 165168.Google Scholar
Hill, JO, Peters, JC, Lin, D, Yakuba, F, Greene, H & Swift, L (1993) Lipid accumulation and body fat distribution is influenced by type of dietary fat fed to rats. International Journal of Obesity 17, 223236.Google ScholarPubMed
Hill, JO & Prentice, AM (1995) Sugar and body weight regulation. American Journal of Clinical Nutrition 62, Suppl., 26452745.CrossRefGoogle ScholarPubMed
Hokanson, JE & Austin, MA (1996) Plasma triglyceride level is a risk factor for cardiovascular disease independent of high-density lipoprotein cholesterol level: a meta-analysis of population-based prospective studies. Journal of Cardiovascular Risk 3, 213219.CrossRefGoogle Scholar
Hollenbeck, CB & Coulston, AM (1991) Effects of dietary carbohydrate and fat intake on glucose and lipoprotein metabolism in individuals with diabetes mellitus. Diabetes Care 14, 774785.CrossRefGoogle ScholarPubMed
Holm, J, Björk, I, Drews, A & Asp, NG (1986) A rapid method for the analysis of starch. Stärke 38, 224226.CrossRefGoogle Scholar
Hornstra, G, Barth, CA, Galli, C, Mensink, RP, Mutanen, M, Riemersma, RA, Roberfroid, M, Salminen, K, Vansant, G & Verschuren, PM (1998) Functional food science and the cardiovascular system. British Journal of Nutrition 80, Suppl. 1, S113–S146.CrossRefGoogle ScholarPubMed
Jenkins, DJA, Wolever, TMS, Jenkins, A, Brighenti, F, Vuksan, V, Venketshwer Rao, A, Cunnane, S, Ocana, A, Corey, P, Vezina, C, Connelly, P, Buckley, G & Patten, R (1991) Specific types of colonic fermentation may raise low-density-lipoprotein cholesterol concentrations. American Journal of Clinical Nutrition 54, 141147.CrossRefGoogle ScholarPubMed
Jenkins, D, Wolever, TMS, Jenkins, A, Giordano, C, Guidici, S, Thompson, L, Kalmusky, J, Josse, R & Wong, G (1986) Low glycemic response to traditionally processed wheat and rye products: bulgur and pumpemickel bread. American Journal of Clinical Nutrition 43, 516520.CrossRefGoogle ScholarPubMed
Jenkins, DJA, Wolever, TMS, Taylor, RH, Ghafari, H, Barker, HM, Fielden, H, Baldwin, JM, Bowling, AC, Newman, HC, Jenkins, AL & Goff, DV (1981) Glycemic index of foods: a physiological basis for carbohydrate exchange. American Journal of Clinical Nutrition 34, 362366.CrossRefGoogle Scholar
Jenkins, DJA, Wolever, TMS, Taylor, RH, Griffiths, C, Krzeminska, K, James, BA, Lawne, JA, Bennet, CM, Goff, DV, Sarson, DL & Bloom, SR (1982) Slow release dietary carbohydrate improves second meal tolerance. American Journal of Clinical Nutrition 35, 13391346.CrossRefGoogle ScholarPubMed
Jeukendrup, AE, Saris WHM, van Diessen, R, Brouns, F & Wagen makers, AJM (1996) Effect of endogenous carbohydrate availability on oral medium chain triglycerides oxidation during prolonged exercise. Journal of Applied Physiology 80,949954.CrossRefGoogle ScholarPubMed
Jeukendrup, AE, Saris, WHM & Wagenmakers, AJM (1998) Fat metabolism during exercise: a review. International Journal of Sports Medicine (In the Press).Google ScholarPubMed
Jones, JM (1996) Fat substitutes: nutritional promise or potential disaster? Chemistry & Industry 3, 494498.Google Scholar
Jones, PJH, Pencharz, JB & Clandinin, MB (1985) Whole body oxidation of dietary fatty acids: implications for energy utilization. American Journal of Clinical Nutrition 42, 769777.CrossRefGoogle ScholarPubMed
Jones, PJH, Ridgen, JE, Phang, PT & Birmingham, CL (1992) Influence of dietary fat polyunsaturated to saturated ratio on energy substrate utilization in obesity. Metabolism 41,396401.CrossRefGoogle ScholarPubMed
Jones, PJH & Schoeller, DA (1988) Polyunsaturated : saturated ratio of diet fat influences energy substrate utilization in the human. Metabolism 37, 145151.CrossRefGoogle ScholarPubMed
Kieffer, F (1986) Trace elements: their importance for health and physical performance. Deutsche Zeitschriftfür Sportmedizin 37, 145151.Google Scholar
Klarlund Pedersen, B & Rohde, T (1997) Exercise, glutamine and the immune system. In Exercise Immunology, pp. 7588 [Klarlund Pedersen, B, editor]. Heidelberg: Springer-Verlag.Google Scholar
Klesges, RC, Mealer, CZ & Klesges, LM (1994) Effect of alcohol intake on resting energy expenditure in young women social drinkers. American Journal of Clinical Nutrition 59, 805809.CrossRefGoogle ScholarPubMed
Langkilde, A-M & Anderson, H (1994) In vivo quantification of resistant starch in EURESTA reference materials using the ileostomy model. In Proceedings of the Concluding Plenary Meeting of EURESTA. European FLAIR-Concerted Action no. 11 (COST 911), pp. 3132 [Asp, N-G, Van Amelsvoort, JMM and Hautvast, JGAJ, editors]. Wageningen: EURESTA.Google Scholar
Lemon, PWR (1991 a) Effect of exercise on protein requirements. Journal of Sports Sciences 9, 5370.CrossRefGoogle ScholarPubMed
Lemon, PWR (1991 b) Protein and amino acid needs of the strength athlete. International Journal of Sport Nutrition 1, 127145.CrossRefGoogle ScholarPubMed
Life Sciences Research Office/Federation of American Societies for Experimental Biology (1991) Evaluation of the Health Aspects of Caprenin. Bethesda, MD: LSRO/FASEB.Google Scholar
Life Sciences Research Office/Federation of American Societies for Experimental Biology (1994) The Evaluation of Energy of Certain Sugar Alcohols Used as Food Ingredients. Bethesda, MD: LSRO/FASEB.Google Scholar
Liljeberg, H & Björck, I (1996) Delayed gastric emptying rate as a potential mechanism for lowered glycemia after eating sourdough bread: studies in humans and rats using test products with added organic acids or an organic salt. American Journal of Clinical Nutrition 64, 886893.CrossRefGoogle ScholarPubMed
Lissner, L, Levitsky, DA, Strupp, BJ, Kalkwarf, HJ & Roe, DA (1987) Dietary fat and the regulation of food intake in human subjects. American Journal of Clinical Nutrition 44, 772778.Google Scholar
Livesey, G (1994) Energy value of resistant starch. In Proceedings of the Concluding Plenary Meeting of EURESTA. European FLAIR-Concerted Action no. 11 (COST 911), pp. 5662 [Asp, N-G, Van Amelsvoort, JMM and Hautvast, JGAJ, editors]. Wageningen: EURESTA.Google Scholar
Lovejoy, J & DiGirolamo, M (1992) Habitual dietary intake and insulin sensitivity in lean and obese adults. American Journal of Clinical Nutrition 55, 11741179.CrossRefGoogle ScholarPubMed
Ma, J, Folsom, AR, Melnick, SL, Eckfeldt, JH, Sharrett, AR, Nabulsi, AA, Hutchinson, RG & Metcalf, PA (1995) Associations of serum and dietary magnesium with cardiovascular disease, hypertension, diabetes, insulin, and carotid arterial wall thickness: the ARIC study. Atherosclerosis Risk in Communities Study. Journal of Clinical Epidemiology 48, 927940.CrossRefGoogle ScholarPubMed
Macdonald, I, Debry, G & Westerterp, K (1993) Alcohol and overweight. In Health Issues Related to Alcohol Consumption, pp. 263280 [Verschuren, PM, editor]. Washington, DC: ILSI Europe.Google Scholar
Macfarlane, GT & Cummings, JH (1991) The colonic flora, fermentation, and large bowel digestive function. In The Large Intestine: Physiology, Pathophysiology and Disease, pp. 5193 [Phillips, SF, Pemberton, JH and Shorter, RG, editors]. New York, NY: Raven Press.Google Scholar
McKeigue, PM, Shah, B & Marmot, MG (1991) Relation of central obesity and insulin resistance with high diabetes prevalence and cardiovascular risk in South Asians. Lancet 337, 382386.CrossRefGoogle ScholarPubMed
Matthews, DR, Hosker, JP, Rudenski, AS, Naylor, BA, Treacher, DF & Turner, RC (1985). Homeostasis model assessment: insulin resistance and B-cell function from fasting plasma glucose and insulin concentrations in man. Diabetologia 28, 412419.CrossRefGoogle Scholar
Maughan, RJ (1991) Fluid and electrolyte loss and replacement in exercise. Journal of Sports Sciences 9, 117142.CrossRefGoogle ScholarPubMed
Maughan, RJ, Leiper, JB & Shirreffs, SM (1997) Factors influencing the restoration of fluid and electrolyte balance after exercise in the heat. British Journal of Sports Medicine 31, 175182.CrossRefGoogle ScholarPubMed
Maughan, RJ & Noakes, TD (1991) Fluid replacement and exercise stress - a brief review of studies on fluid replacement and some guidelines for the athlete. Sports Medicine 12, 1631.CrossRefGoogle Scholar
Mertz, W (1993) Chromium in human nutrition: a review. Journal of Nutrition 123, 626633.CrossRefGoogle ScholarPubMed
Miller, DK, Morley, JE & Rubenstein, LZ (1995) An overview of international aging and nutrition. In Geriatric Nutrition, pp. 14 [Morley, JE, Glick, Z and Rubenstein, LZ, editors]. New York, NY: Raven Press.Google Scholar
Miller, WC, Lindermann, AK, Wallace, J & Nierderpruem, M (1990) Diet composition, energy intake and exercise in relation to body fat in men and women. American Journal of Clinical Nutrition 52,426430.CrossRefGoogle ScholarPubMed
Mitchell, BD, Kammerer, CM, Mahaney, MC, Blangero, J, Comuzzie, AG, Atwood, LD, Haffner, SM, Stern, MP & MacCluer, JW (1996) Genetic analysis of the IRS. Pleiotropic effects of genes influencing insulin levels on lipoprotein and obesity measures. Arteriosclerosis, Thrombosis and Vascular Biology 16, 281288.CrossRefGoogle ScholarPubMed
Mitsuoka, T, Hata, Y & Takahashi, Y (1986) Effects of long term intake of Neosugar on intestinal flora and serum lipids. In Proceedings of the 3rd Neosugar Research Conference, topic 14. Tokyo.Google Scholar
Morley, JE (1995) Anorexia of aging and protein-energy-under-nutrition. In Geriatric Nutrition, pp. 7578 [Morley, JE, Glick, Z and Rubenstein, LZ, editors]. New York, NY: Raven Press.Google Scholar
Move, M & Bohmer, T (1991) Anorexia of aging. Journal of the American Geriatric Society 39, 10891092.Google Scholar
Nestel, PJ (1990) Effects of n-3 fatty acids on lipid metabolism. Annual Review of Nutrition 10, 149167.CrossRefGoogle ScholarPubMed
Newsholme, EA & Start, C (1973) Adipose tissue and the regulation of fat metabolism. In Regulation in Metabolism, pp. 195246 [Newsholme, EA and Start, C, editors]. Chichester: John Wiley and Sons.Google Scholar
Nicklas, BJ, Goldberg, AP, Bunyard, LB & Poehlman, ET (1995) Visceral adiposity is associated with increased lipid oxidation in obese, postmenopausal women. American Journal of Clinical Nutrition 62, 918922.CrossRefGoogle ScholarPubMed
Nilsson, LH & Hultman, E (1974) Liver and muscle glycogen in man after glucose and fructose ingestion. Scandinavian Journal of Clinical and Laboratory Investigation 33, 510.CrossRefGoogle Scholar
Nuttall, FQ (1993) Dietary fiber in the management of diabetes. Diabetes 42, 503508.CrossRefGoogle ScholarPubMed
Pan, DA, Hulbert, AJ & Storlien, LH (1994) Dietary fats, membrane phospholipids, and obesity. Journal of Nutrition 124, 14441565.CrossRefGoogle ScholarPubMed
Parillo, M, Giacco, R, Riccardi, G, Pacioni, D & Rivellese, A (1985) Different glucaemic responses to pasta, bread and potatoes in diabetic patients. Diabetic Medicine 2, 374377.CrossRefGoogle Scholar
Parillo, M & Riccardi, G (1985) Dietary carbohydrates and glucose metabolism in diabetic patients. Diabète et Metabolisme 21, 391401.Google Scholar
Perrotti, N, Santoro, D, Genovese, S, Giacco, A, Rivellese, A & Riccardi, G (1984) Effect of digestible carbohydrates of glucose control in insulin dependent diabetic patients. Diabetes Care 7, 354359.CrossRefGoogle ScholarPubMed
Prentice, AM, Black, AE, Coward, WA, Davies, HL, Goldberg, GR, Murgatroyd, PR, Ashford, J, Sawyer, M & Whitehead, RG (1986) High levels of energy expenditure in obese women. British Medical Journal 292,983987.CrossRefGoogle ScholarPubMed
Prentice, AM & Jebb, SA (1995) Obesity in Britain: gluttony or sloth? British Medical Journal 311, 437439.CrossRefGoogle ScholarPubMed
Prentice, AM & Poppitt, SD (1996) Importance of energy density and macronutrients in the regulation of energy intake. International Journal of Obesity 20, S18–S23.Google ScholarPubMed
Ravussin, E, Lillioja, S, Knowler, WC, Cristin, L, Freymond, D, Abbot, WGH, Boyce, V, Howard, BV & Bogardus, C (1988) Reduced rate of energy expenditure as a risk factor for body weight gain. New England Journal of Medicine 318, 467472.CrossRefGoogle ScholarPubMed
Reaven, GM (1995) Pathophysiology of insulin resistance in human disease. Physiological Reviews 75, 473486.CrossRefGoogle ScholarPubMed
Riccardi, G (1994) Diet, blood glucose control and long term complications of diabetes: a lesson from the diabetes control and complication trial (DCCT). Nutrition, Metabolism and Cardiovascular Disease 4, 5960.Google Scholar
Riccardi, G & Rivellese, AA (1987) No indices for selection of carbohydrate foods in the diabetic diet: hopes and limitations. Diabetic Medicine 4, 140143.CrossRefGoogle ScholarPubMed
Riccardi, G & Rivellese, AA (1991) Effects of dietary fiber and carbohydrate on glucose and lipoprotein metabolism, in diabetic patients. Diabetes Care 14, 115125.CrossRefGoogle ScholarPubMed
Ritz, P, Krempf, M, Cloarec, D, Champ, M & Charbonnel, B (1991) Comparative continuous indirect calorimetry study of two carbohydrates with different glycemic indices. American Journal of Clinical Nutrition 54, 855859.CrossRefGoogle ScholarPubMed
Rivellese, AA, Maffettone, A, Lovine, C, Di Marino, L, Annuzzi, G, Mancini, M & Riccardi, G (1996) Long term effects of fish oil on insulin resistance and plasma lipoproteins in NIDDM patients with hypertriglyceridemia. Diabetes Care 19, 12071213.CrossRefGoogle ScholarPubMed
Rolls, RJ & Shide, DJ (1992) The influence of dietary fat on food intake and body weight. Nutrition Reviews 50, 283290.CrossRefGoogle ScholarPubMed
Salmerón, J, Ascherio, A, Rimm, EB, Colditz, GA, Spiegelman, D, Jenkins, DJ, Stampfer, MJ, Wing, AL & Willett, WC (1997 a) Dietary fiber, glycaemic load and risk of NIDDM in men. Diabetes Care 20, 545550.CrossRefGoogle ScholarPubMed
Salmerón, J, Stampfer, MJ, Colditz, GA, Manson, JE, Wing, AL & Willett, WC (1997 b) Dietary fiber, glycaemic load and risk of non-insulin-dependent diabetes mellitus in women. Journal of the American Medical Association 277, 472477.CrossRefGoogle ScholarPubMed
Saris, WHM, van Erp-Baart, MA, Brouns, F, Westerterp, KR & ten Hoor, F (1989) Study on food intake and energy expenditure during extreme sustained exercise: the Tour de France. International Journal of Sports Medicine 10, S26–S31.CrossRefGoogle Scholar
Sawka, MN & Pandolf, KB (1990) Effects of body water loss on physiological function and exercise performance. In Perspectives in Exercise Science and Sports Medicine. Fluid Homeostasis During Exercise, vol. 3, pp. 138 [Gisolfi, CV and Lamb, DR, editors]. Camel: Benchmark Press.Google Scholar
Scheppach, W (1994) Effects of short-chain fatty acids on gut morphology and function. Gut 35, Suppl. 1, 535538.CrossRefGoogle ScholarPubMed
Scheppach, W, Fabian, C, Sachs, M & Kasper, H (1988) The effect of starch malabsorption on faecal short-chain fatty acid excretion in man. Scandinavian Journal of Gastroenterology 23, 755759.CrossRefGoogle ScholarPubMed
Schiweck, H & Ziesenitz, SC (1996) Physiological properties of polyols in comparison with metabolisable saccharides. In Advances in Sweeteners, pp. 5684 [Grenby, TH, editor]. Glasgow: Blackie.CrossRefGoogle Scholar
Schutz, Y & Jéquier, E (1989) Failure of dietary fat intake to promote fat oxidation: a factor favoring the development of obesity. American Journal of Clinical Nutrition 50, 307314.CrossRefGoogle ScholarPubMed
Seaton, TB, Welle, SL, Warenko, MK & Campbell, RG (1986) Thermic effect of medium chain and long chain triglycerides in man. American Journal of Clinical Nutrition 44, 630634.CrossRefGoogle ScholarPubMed
Segal, KR, Edano, A & Tomas, MB (1990) Thermic effect of a meal over 3 and 6 hours in lean and obese men. Metabolism 39, 985992.CrossRefGoogle ScholarPubMed
Seidell, JC (1997) What is the cost of obesity? International Journal of Obesity 21, Suppl. 2, S1.Google Scholar
Shechter, Y (1990) Insulin-mimetic effects of vanadate. Possible implications for future treatment of diabetes. Diabetes 39, 15.CrossRefGoogle ScholarPubMed
Sonko, BJ, Prentice, AM, Murgatroyd, PR, Goldberg, GR, de Ven, MLHM & Coward, WA (1994) Effect of alcohol on postmeal fat storage. American Journal of Clinical Nutrition 59, 619625.CrossRefGoogle ScholarPubMed
Stamler, J, Vaccaro, O, Neaton, J & Wentworth, D (1993) Diabetes, other risk factors and 12 years cardiovascular mortality for men screened in the multiple risk factors intervention trial. Diabetes Care 16, 434441.CrossRefGoogle Scholar
Stock, MJ (1989) New approaches to the control of obesity in animals and their clinical potential. In Nutrition in the Prevention of Disease, pp. 3237 [Somogyi, JC, editor]. Basel: Kärger.CrossRefGoogle Scholar
Storlien, LH, Baur, LA, Kriketors, AD, Pan, DA, Cooney, GJ, Jenkins, AB, Calvert, GD & Campbell, LV (1996) Dietary fats and insulin action. Diabetologia 39, 621631.CrossRefGoogle ScholarPubMed
Sugano, M, Watanabe, S, Kishi, A, Izume, M & Ohtakara, A (1988) Hypocholesterolemic action of chitosans with different viscosity in rats. Lipids 23, 187191.CrossRefGoogle ScholarPubMed
Suter, PM, Schutz, Y & Jéquier, E (1992) The effect of ethanol on fat storage in healthy subjects. New England Journal of Medicine 326, 983987.CrossRefGoogle ScholarPubMed
Tappy, L, Randin, JP, Felber, JP, Chiolero, R, Simonson, DC, Jéquier, E & DeFronzo, RA (1986) Comparison of the thermogenic effect of fructose and glucose in normal humans. American Journal of Physiology 250, E718–E724.Google ScholarPubMed
The Diabetes Control and Complications Trial Research Group (1993) The effect of intensive treatment of diabetes on the development and progression of long term complications in insulin dependent diabetes mellitus. New England Journal of Medicine 329, 977986.CrossRefGoogle Scholar
Thompson, L, Button, C & Jenkins, D (1987) Phytic acid and calcium affect the in vitro rate of navy bean starch digestion and blood glucose response in humans. American Journal of Clinical Nutrition 46, 467.CrossRefGoogle ScholarPubMed
Thorburn, A & Proietto, J (1993) Carbohydrate fermentation decreases hepatic glucose output in healthy subjects. Metabolism 42, 780785.CrossRefGoogle ScholarPubMed
Torún, B & Viteri, FE (1988) Protein-energy malnutrition. In Modern Nutrition in Health and Disease, pp. 746773 [Shils, ME and Young, VR, editors]. Philadelphia, PA: Lea & Febiger.Google Scholar
Tremblay, A, Wouters, E, Wenker, M, St-Pierre, S, Bouchard, C & Després, JP (1995) Alcohol and high fat diet: a combination favoring overfeeding. American Journal of Clinical Nutrition 62,639644.CrossRefGoogle ScholarPubMed
Truswell, A (1994) Food carbohydrates and plasma lipids - an update. American Journal of Clinical Nutrition 59, Suppl. 9, 710S718S.CrossRefGoogle ScholarPubMed
Truswell, A, Seach, J & Thorburn, A (1988) Incomplete absorption of pure fructose in healthy subjects and the facilitating effect of glucose. American Journal of Clinical Nutrition 48, 14241430.CrossRefGoogle ScholarPubMed
Van der Beek, EJ (1985) Vitamins and endurance training. Food for running or faddisch claims. Sports Medicine 2, 175197.CrossRefGoogle ScholarPubMed
Van Erp-Baart, AMJ, Saris, WHM, Binkhorst, RA, Vos, JA & Elvers, JWH (1989 a) Nationwide survey on nutritional habits in elite athletes. Part I. Energy, carbohydrate, protein, and fat intake. International Journal of Sports Medicine 10, S3–S10.CrossRefGoogle ScholarPubMed
Van Erp-Baart, AMJ, Saris, WHM, Binkhorst, RA, Vos, JA & Elvers, JWH (1989 b) Nationwide survey on nutritional habits in elite athletes. Part 11: Mineral and vitamin intake. International Journal of Sports Medicine 10, S11–S16.CrossRefGoogle Scholar
Van Hall, G, Raaymakers, J, Saris, WHM & Wagenmakers, A (1995) Ingestion of branched-chain amino acids and tryptophan during sustained exercise in man: failure to affect performance. Journal of Physiology 486, 789794.CrossRefGoogle ScholarPubMed
VanItallie, TB (1992) Body weight, morbidity and longevity. In Obesity, pp. 361369 [Björntorp, P and Brodoff, BN, editors]. Philadelphia, PA: J.B. Lippincott Company.Google Scholar
Venter, C, Vorster, H & Cummings, J (1990). Effect of dietary propionate on carbohydrate and lipid metabolism in healthy subjects. American Journal of Clinical Nutrition 85, 549553.Google Scholar
Vessby, B (1995) Nutrition, lipids and diabetes mellitus. Current Opinion in Lipidology 6, 37.CrossRefGoogle ScholarPubMed
Vessby, B, Tengblad, S & Lithell, H (1994) Insulin sensitivity is related to the fatty acid composition of serum lipids and skeletal muscle phospholipids in 70-year-old men. Diabetologia 37, 10441050.CrossRefGoogle Scholar
Virtanen, SM & Aro, A (1994) Dietary factors in the aetiology of diabetes. Annals of Medicine 26, 460478.CrossRefGoogle ScholarPubMed
Wagenmakers, AJM (1991) L-Camitine supplementation and per- formance in man. In Advances in Nutrition and Top Sport, vol. 32, pp. 110127 [Brouns, F, Saris, WHM and Newsholme, EA, editors]. Basel: S. Karger.Google Scholar
Wagenmakers, AJM, Beckers, EJ, Brouns, F, Kuipers, H, Soeters, PB & van der Vusse, GJ (1991) Carbohydrate supplementation, glycogen depletion, and amino acid metabolism during exercise. American Journal of Physiology 260, E883–E890.Google ScholarPubMed
Waterlow, JC (1992) Some general questions. In Protein-Energy Malnutrition, pp. 1425 [Waterlow, JC, editor]. London: Edward Arnold.Google Scholar
Westrate, JA, Wunnink, I, Deurenberg, P & Hautvast, JGAJ (1990) Alcohol and its acute effects on resting metabolic rate and diet induced thermogenesis. British Journal of Nutrition 64, 413425.CrossRefGoogle Scholar
White, JR Jr & Campbell, RK (1993) Magnesium and diabetes: a review. Annals of Pharmacotherapy 27,775780.CrossRefGoogle ScholarPubMed
World Health Organization Study Group (1994) Prevention of Diabetes Mellitus. Geneva: World Health Organization.Google Scholar
Wursch, P, Vedovo, S & Koellreutter, B (1986) Cell structure and starch nature as key determinants of the digestion rate of starch in legumes. American Journal of Clinical Nutrition 43, 2529.CrossRefGoogle Scholar
Yamashita, K, Kawai, K & Itakura, M (1984) Effects of fructo-oligosaccharides on blood glucose and serum lipids in diabetic subjects. Nutrition Research 4, 961966.CrossRefGoogle Scholar
Young, VR (1992) Macronutrient needs in the elderly. Nutrition Reviews 50,454462.CrossRefGoogle ScholarPubMed
Yudkin, J (1988) Sucrose, coronary heart disease, diabetes and obesity: do hormones provide a link? American Heart Journal 115, 493498.CrossRefGoogle ScholarPubMed
Zurlo, F, Lillioja, S, Esposito-Del Punete, A, Nyomba, BL, Raz, I, Saad, MF, Swinbum, BA, Bowler, WC, Bogardus, C & Ravussin, E (1990) Low ratio of fat to carbohydrate oxidation as predictor of weight gain: study of 24-h RQ. American Journal of Physiology 259, E650E657.Google ScholarPubMed