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Paper

Iron availability: An updated review

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Pages 597-606 | Published online: 06 Jul 2009

References

  • Aît-oukhatar N, Bouhallab S, Bureau F, Arhan P, Maubois JL, Drosdowsky M, Bouglé D. Bioavailability of caseinophosphopeptide bound iron in the young rat. J. Nutr. Biochem. 1997; 8: 190–194
  • Aît-oukhatar N, Bouhallab S, Arhan P, Maubois JL, Drosdowsky M, Bouglé D. Iron tissue storage and hemoglobin levels of deficient rats repleted with iron bound to the caseinophosphopeptide 1-25 of β-casein. J. Agric. Food Chem. 1999; 47: 2786–2790
  • Aranda, P, Llopis, J. (1993): Minerales. In Nutrición y Dietética, Aspectos Sanitarios. pp. 179–240.Madrid: Consejo General de Colegios Oficiales de Farmacéuticos.
  • Baech SB, Hansen M, Bukhave K, Jensen M, Sorensen SS, Kristensen L, Purslow PP, Skibsted LH, Sandström B. Nonheme-iron absorption from a phytate-rich meal is increased by the addition of small amounts of pork meat. Am. J. Clin. Nutr. 2003; 77: 173–179
  • Beard JL, Dawson H, Pinero DJ. Iron metabolism: a comprehensive review. Nutr. Rev. 1996; 54: 295–317
  • Bendich A. Calcium supplementation and iron status of females. Nutrition 2001; 17: 46–51
  • Benito P, Miller D. Iron absorption and bioavailability: an updated review. Nutr. Res. 1998; 18: 581–603
  • Berner LA, Miller DD. Effects of dietary proteins on iron availability—A review. Food Chem. 1985; 18: 47–69
  • Boato F, Wortley GM, Hai Lu R, Glahn RP. Red grape juice inhibits iron availability: Application of an in vitro digestion/Caco-2 cell model. J. Agric. Food Chem. 2002; 50: 6935–6938
  • Brune M, Hallberg L, Skanberg A. Determination of iron binding by phenolic groups in foods. J. Food Sci. 1991; 56: 128–167
  • Brune M, Rossander-Hulté L, Hallberg L, Gleerup A, Sandburg AS. Iron absorption from bread in humans: Inhibiting effects of cereal fiber, phytate and inositol phosphates with different numbers of phosphate groups. J. Nutr. 1992; 122: 442–449
  • Bruner AB, Joffe A, Duggan AK, Casella JF, Brandt J. Randomized study of cognitive effects of iron supplementation in non-anemic iron-deficient adolescent girls. Lancet 1996; 348: 992–996
  • Carpenter CE, Mahoney AW. Contributions of heme and nonheme iron to human nutrition, Crit. Rev. Food Sci. Nutr. 1992; 31: 333–367
  • Chabance B, Marteau P, Rambaud JC, Migliore-Samour D, Boynard M, Perrotin P, Guillet R, Jollès P, Fiat AM. Casein peptide release and passage to the blood in humans during digestion of milk or yoghurt. Biochimie 1998; 80: 155–165
  • Cook JD, Reddy MB, Hurrell RF. The effect of red and white wines on nonheme-iron absorption in humans. Am. J. Clin. Nutr. 1995; 61: 800–804
  • Davidsson L, Galan P, Kastenmayer P, Cherouvrier F, Juillerat MA, Hercberg S, Hurrell RF. Iron bioavailability studied in infants: the influence of phytic acid and ascorbic acid in infant formulas based on soy isolate. Pediatr. Res. 1994; 36: 816–822
  • Davidsson L, Walczyk T, Morris A, Hurrell RF. Influence of acid ascorbic on iron absorption from an iron-fortified, chocolate-favored milk drink in Jamaican children. Am. J. Clin. Nutr. 1998; 67: 873–877
  • Davidsson L, Dimitrion T, Walczyk T, Hurrell RF. Iron absorption from experimental infant formulas based on pea (Pisum sativum)-protein isolate: The effect of phytic acid and ascorbic acid. Br. J. Nutr. 2001; 85: 59–63
  • Debon SJJ, Tester RF. In vitro binding of calcium, iron and zinc by non-starch polysaccharides. Food Chem. 2001; 73: 401–410
  • de Vos S, de Schrijver R. Lipid metabolism, intestinal fermentation and mineral absorption in rats consuming black tea. Nutr. Res. 2003; 23: 527–537
  • Engelmann MDM, Davidsson L, Sandström B, Walczyk T, Hurell RF, Michaelsen KF. The influence of meat on nonheme iron absorption in infants. Pediatr. Res. 1998; 43: 768–773
  • Fidler MC, Davidsson L, Zeder C, Walczyck T, Hurrell RF. Iron absorption from ferrous fumarate in adult women is influenced by ascorbic acid but not by Na2EDTA. Br. J. Nutr. 2003; 90: 1081–1085
  • Fly AD, Czarnecki-Maulden GL. Iron bioavailability from hemoglobin and hemin in chick, rat, cat, and dog: a comparative study. Nutr. Res. 2000; 20: 237–248
  • Galdi M, Valencia ME. Stability of iron (III) chelates of nutritional interest. J. Food Sci. 1988; 53: 1844–1847
  • García-Casal MaN, Leets I, Layrisse M. β-carotene and inhibitors of iron absorption modify iron uptake by Caco-2 cells. J. Nutr. 2000; 130: 5–9
  • Gibson GR, Roberfroid MB. Dietary modulation of the colonic microbiota introducing the concept of prebiotic. J. Nutr. 1995; 125: 140–141
  • Glahn RP, Wortley GM, South PK, Miller DD. Inhibition of iron uptake by phytic acid, tannic acid and ZnCl2: Studies using an in vitro digestion/Caco-2 cell model. J. Agric. Food Chem. 2002; 50: 390–395
  • Gleerup A, Rossander-Hulthen L, Gramatkovski E. Iron absorption from the whole diet: Comparison of the effect of two different distributions of daily calcium intake. Am. J. Clin. Nutr. 1995; 61: 97
  • Grasbeck R, Majuri R, Kouvonen I, Tenhunen R. Spectral and other studies on the intestinal haem receptor of the pig. Biochem. Biophys. Acta. 1982; 700: 137–142
  • Hallberg L. Combating iron deficiency: daily administration of iron is far superior to weekly administration. Am. J. Clin. Nutr. 1998a; 68: 213–217
  • Hallberg L. Does calcium interfere with iron absorption?. Am. J. Clin. Nutr. 1998b; 68: 3
  • Hallberg L, Brune M, Erlandsson M. Calcium: Effect of different amounts on nonheme and heme iron absorption in humans. Am. J. Clin. Nutr. 1991; 53: 112
  • Hallberg L, Rossander-Hulthen L, Brune M, Gleerup A. Inhibition of haem-iron absorption in man by calcium. Br. J. Nutr. 1992; 69: 533–540
  • Hurrell RF, Lynch SR, Trinidad TP, Dassenko SA, Cook JD. Iron absorption in humans as influenced by bovine milk proteins. Am. J. Clin. Nutr. 1989; 49: 546–552
  • Hurrell RF, Reddy M, Cook JD. Inhibition of non-haem iron absorption in man by polyphenolic-containing beverages. Br. J. Nutr. 1999; 81: 289–295
  • Jovaní M, Alegría A, Barberá R, Farré R, Lagarda MJ, Clemente G. Effect of proteins, phytates, ascorbic acid and citric acid on dialysability of calcium, iron zinc and copper in soy-based infant formulas. Nahrung 2000; 44: 114–117
  • Kalpalathika PV, Clark EM, Mahoney AW. Heme iron content in selected ready-to-serve beef products. J. Agric. Food Chem. 1991; 39: 1091–1093
  • Kane AP, Miller DD. In vitro estimation of the effects of selected proteins on iron bioavailability. Am. J. Clin. Nutr. 1984; 39: 393–401
  • Kapsokefalou M, Miller DD. Effects of meat and selected food components on the valence of non-haem iron during in vitro digestion. J. Food Sci. 1991; 56: 352–358
  • Kim M, Lee DT, Lee YS. Iron absorption and intestinal solubility in rats are influenced by dietary proteins. Nutr. Res. 1995; 15: 1705–1716
  • Kim M, Atallah MT, Amarsiwardena C, Barnes R. Pectin with low molecular weight and high degree of esterification increases absorption of 59Fe in growing rats. J. Nutr. 1996; 126: 1883–1890
  • Kirwan FM, O'Connor I, Morrisey PA, Flynn A. Effect of myofibrillar muscle proteins on in vitro bioavailability of iron. Proc. Nutr. Soc. 1993; 52: 21a
  • Larsson M, Rossander-Hulthen L, Sandstrom B, Sandsberg AS. Improved zinc and iron absorption from breakfast meals containing malted oats with reduced phytate content. Br. J. Nutr. 1996; 76: 677–688
  • Layrisse M, Chavez JF, Méndez-Castellano H, Bosch V, Tropper E, Bastardo B, González E. Early response to the impact of iron fortification in the Venezuelan population. Am. J. Clin. Nutr. 1996; 64: 903–907
  • Layrisse M, García-Casal M, Solano L, Barón MA, Arguello F, Llovera D, Ramírez J, Leets I, Tropper E. The role of vitamin A on the inhibitors of nonheme iron absorption: Preliminary studies. J. Nutr. Biochem. 1997; 8: 61–67
  • Levrat-Verny MA, Coudray C, Bellanguer J, Lopez HW, Demigné C, Rayssiguier Y, Rémésy C. Wholewheat flour ensures higher mineral absorption and bioavailability than white wheat flour in rats. Br. J. Nutr. 1999; 82: 17–21
  • Lombardi-Boccia G, Carbonaro M, Di Lullo G, Carnovale E. Influence of protein components (G1, G2 and albumin) on Fe and Zn dialysability from bean. Int. J. Food Sci. Nutr. 1994; 45: 183–190
  • Lombardi-Boccia G, Schlemmer U, Cappelloni M, Di Lullo G. The inhibitory effect of albumin extracts from white beans (Phaseolus vulgaris) on in vitro iron and zinc dialisability: role of phytic acid. Food Chem. 1998; 63: 1–7
  • Lombardi-Boccia G, Martínez-Domínguez B, Aguzzi A. Total heme and non-heme iron in raw and cooked meats. J. Food Sci. 2002; 67: 1738–1741
  • Lopez HW, Coudray C, Levrat-Verny MA, Feillet-Coudray C, Demigné C, Rémesy C. Fructooligosaccharides enhance mineral apparent absorption and counteract the deleterious effectys of phytic acid on mineral homeostasis in rats. J. Nutr. Biochem. 2000; 11: 500–508
  • Lucarini M, Di Lullo G, Cappelloni M, Lombardi-Boccia G. In vitro estimation of iron and zinc dialysability from vegetables and composite dishes commonly consumed in Italy: Effect of red wine. Food Chem. 2000; 70: 39–44
  • MacPhail AP, Bothwell TH. The prevalence and causes of nutritional iron deficiency anemia. Nutritional anemias. Series 30. Nestlé Nutritional Workshop, SJ Fomon, S Zlotkin. Raven Press, NewYork 1992; 1–12
  • Mahé S, Tomé D, Dumontier AM, Desjeux JF. Absorption of intact β-casomorphins (β-CM) in rabbit ileum in vitro. Reprod. Nutr. Dev. 1989; 29: 725–732
  • Miller DD, Berner LA. Is solubility in vitro a reliable predictor of iron bioavailability?. Biol. Trace Element. Res. 1989; 19: 11–24
  • Mulvihill B, Morrisey P. Influence of the sulphydryl content of animal proteins on in vitro bioavailability of non-heme iron. Food Chem. 1998; 61: 1–7
  • Mulvihill B, Kirwan FM, Morrisey PA, Flynn A. Effect of myofibrillar muscle proteins on the in vitro bioavailability of non-haem iron. Int. J. Food Sci. Nutr. 1998; 49: 187–192
  • Muñoz JM, Harland BF. Overview of the effects of dietary fiber on the utilization of minerals and trace elements. CRC Handbook of dietary fiber in human nutrition2nd ed, GA Spiller. CRC Press, Boca Raton, FL 1993; 245–252
  • Ohta A, Ohtsuki M, Baba S, Takizawa T, Adachi T, Kimura S. Effects of fructooligosaccharides on the absorption of iron, calcium and magnesium in iron deficient anemic rats. J. Nutr. Sci. Vitamol. 1995; 41: 281–291
  • Ohta A, Ohtsuki M, Uehara M, Ozono S, Hirayama M, Adachi T, Hara H. Dietary fructooligosaccharides prevent postgastrectomy anemia and osteopenia in rats. J. Nutr. 1998; 128: 485–490
  • Pallarés I, Campos MS, López-Aliaga I, Barrionuevo M, Gómez-Ayala AE, Alferez MJ, Hartiti S, Lisbona F. Ann. Nutr. Metab. 1996; 40: 81–90
  • Pérès JM, Bouhallab S, Bureau F, Maubois JL, Arhan P, Bouglé D. Absorption digestive du fer lié ai caséinophosphopeptide 1-25 de la β-caséine. Lait 1997; 77: 433–440
  • Pérès JM, Bouhallab S, Bureau F, Maubois JL, Arhan P, Bouglé D. Reduction of iron/zinc interactions using metal bound to the caseinphosphopeptide 1-25 of β-casein. Nutr. Res. 1999a; 19: 1655–1663
  • Pérès JM, Bouhallab S, Bureau F, Neuville D, Maubois JL, Devroede G, Arhan P, Bouglé D. Mechanism of absorption of caseinophosphopeptide bound iron. J. Nutr. Biochem. 1999b; 10: 215–222
  • Pollit E. Iron deficiency and cognitive function. Annu. Rev. Nutr. 1993; 13: 521–537
  • Purchas RW, Simcock DC, Knight TW, Wilkinson BHP. Variation in the form of iron in beef and lamb meat and losses of iron during cooking and storage. Int. J. Food Sci. Technol. 2003; 38: 827–837
  • Pushpanjali F, Khokhar S. In vitro availability of iron and zinc from some Indian vegetarian diets: Correlations with dietary fibre and phytate. Food. Chem. 1996; 56: 111–114
  • Roncagliolo M, Garrido M, Walter T, Peirano P, Lozoff B. Evidence of altered central nervous system development in infants with iron deficiency anemia at 6 month: Delayed maturation of auditory brainstem responses. Am. J. Clin. Nutr. 1998; 68: 683–690
  • Sakai K, Ohta A, Shiga K, Takasaki M, Tokunaga T, Hara H. The cecum and dietary short-chain fructooligosaccharides are involved in preventing postgastrectomy anemia in rats. J. Nutr. 2000; 130: 1608–1612
  • Samman S, Sandstrom B, Toft MB, Bukhave K, Jensen M, Sorensen SS, Hansen M. Green tea or rosemary extract added to foods reduces nonheme-iron absorption. Am. J. Clin. Nutr. 2001; 73: 607–612
  • Sanstead HH. Causes of iron and zinc deficiencies and their effects on brain. J Nutr. 2000; 130: 347S–349S
  • Scholl TO, Reilly T. Anemia, iron and pregnancy outcome. J. Nutr. 2000; 130: 443S–447S
  • Scholz B, Gross R, Sastroamidjojo S. Anemia is associated with reduced productivity of women workers even in less physically strenuous tasks. Br. J. Nutr. 1997; 77: 147–157
  • Scrimshaw N. Iron deficiency. Sci. Am. 1991; 265: 46–52
  • Skoglund E, Lönnerdal B, Sandberg AS. Inositol phosphates influence iron uptake in Caco-2 cells. J. Agric. Food Chem. 1999; 47: 1109–1113
  • Slatkavitz CA, Clydesdale FM. Solubility of inorganic iron as affected by proteolytic digestion. Am. J. Clin. Nutr. 1988; 47: 487–495
  • South PK, Lei X, Miller DD. Meat enhances nonheme iron absorption in pigs. Nutr. Res. 2000; 20: 1749–1759
  • Torre M, Rodríguez AR, Saura-Calixto F. Effects of dietary fiber and phytic acid on mineral availability. Crit. Rev. Food Sci. Nutr. 1991; 1: 1–22
  • Van Dyck K, Tas S, Robberecht H, Deelstra H. The influence of different food components on the in vitro availability of iron, zinc and calcium from a composed meal. Int. J. Food Sci. Nutr. 1996; 47: 499–506
  • Wapnir RA. Nutritional factors, proteins and the absorption of iron and cobalt. Protein nutrition and mineral absorption, RA Wapnir. CRC Press, Boca Raton, FL 1990; 99–129
  • West DW. Structure and function of the phosphopyrilated residues of casein. J. Dairy Sci. 1986; 53: 333–352
  • World Health Organization. National strategies for overcoming micronutrient malnutrition. Document A 45/3. World Health Organization, Geneva 1992

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