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Original Article

Chicken extract stimulates haemoglobin restoration in iron deficient rats

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Pages 351-360 | Published online: 06 Jul 2009

References

  • Albert A. Quantitative studies of the avidity of naturally occuring substances for trace metals. (1) Amino acids having only two ionizing groups. Biochem. J 1950; 47: 531–538
  • Albert A. Quantitative studies of the avidity of naturally occuring substances for trace metals. (1) Amino acids having only two ionizing groups. Biochem. J 1952; 50: 690–697
  • Boldyrev A A, Dupin A M, Pindel E V, Severin S E. Antioxidative properties of histidine-containing dipeptides from skeletal muscles of vertebrates. Comp. Biochem. Physiol 1988; 89B: 245–250
  • Brown C E. Interactions among carnosine, anserine, ophidine and copper in biochemical adaptation. J. Theoret. Biol 1981; 88: 245–256
  • Bjorn-Rasmussen E, Hallberg L, Isaksson B, Arvidsson B. Food iron absorption in man. Application of the two pool extrinsic tag method to measure heme and non heme iron absorption from the whole diet. J. Clin. Invest 1974; 53: 247–256
  • Buchowski M S, Mahoney A W, Kalpalathika M PV. Nonheme iron absorption, apparent iron absorption and hemoglobin regeneration efficiency in anemic and normal rats fed with dietary heme and nonheme iron at various levels. Nutr. Res 1989; 9: 773–783
  • Cardon K M, Anthony R J, Hendricks D G, Mahoney A W. Effect of atmospheric oxidation on bioavailability of meat iron and liver weights in rats. J. Nutr 1980; 110: 567–574
  • Conley M C, Hathcock J N. Effects of dietary protein and amino acids on iron utilization by iron depleted rats. J. Nutr 1978; 108: 475–480
  • Conrad M E, Benjamin B E, Williams H L, Foy A L. Human absorption of hemoglobin iron. Gastroenterology 1967; 53: 5–10
  • Cook J D, Monsen E R. Food iron absorption in human subjects. Ill. Comparison of the effects of animal proteins on nonheme iron absorption. Am. J. Clin. Nutr 1976; 29: 859–867
  • Erickson M C. Effect of histidine/carnosine on Fe(ll) autooxidation and enzymic or nonenzymic reduction of Fe(lll). Abstr. Am. Chem. Soc. 202nd meeting. 1991; 131
  • Fujimori H, Takamoto K, Kasai M, Yoshino Y. Therapeutic comparison between sodium ferrous citrate and a heme iron preparation for treatment of rats with iron deficiency anaemia. J. Japan Soc. Food Nutr 1993; 46: 503–506, in Japanese
  • Gordon D T, Godber J S. The enhancement of nonheme iron bioavailability by beef protein in the rat. J. Nutr 1989; 119: 446–452
  • Hallberg L. Iron. Human Nutrition and Dietetics, J S Garrow, W PT James. Churchill Livingstone, London 1993, ch. 12
  • Helbock J H, Saltman P. The transport of iron from rat intestines. Biochem. Biophys. Acta 1967; 135: 979–990
  • Jackson D, Grant D B, Clayton B E. A simple oral test of growth hormone secretion in children. Lancet 1968; 2: 373
  • Jansuittivechakul O, Mahoney A W, Cornforth D P, Hendricks D G, Kangasadalampai K. Effect of heat treatment on bioavailability of meat and hemoglobin iron fed to anemic rats. J. Food Sci 1985; 50: 407–409
  • Jansuittivechakul O, Mahoney A W, Cornforth D P, Hendricks D G, Sisson D V. Effect of heat treatment on meat enhancement of dietary iron bioavailability of meat/ferrous sulphate and meat/hemoglobin mixtures fed to rats. J. Food Sci 1986; 51: 263–267
  • Kapsokefalou M, Miller D D. Effects of meat and selected food components on the valence of nonheme iron during in vitro digestion. J. Food Sci 1991; 56: 352–355
  • Kapsokefalou M, Miller D D. Lean beef and beef fat interact to enhance nonheme iron absorption in rats. J. Nutr 1993; 123: 1428–1434
  • Kapsokefalou M, Miller D D. Iron speciation in intestinal contents of rats fed diets composed of meat and nonmeat sources of protein and fat. Food Chem 1995; 52: 47–56
  • Kohen R, Yamamoto Y, Cundy K C, Ames B N. Antioxidant activity of carnosine, homocarnosine and anserine present in muscle and brain. Proc. Natl Acad. Sci. USA 1988; 85: 3175–3179
  • Kroe D J, Kinney T D, Kaufman N, Klavins J V. The influence of amino acids on iron absorption. Blood 1963; 21: 546–552
  • Kroe D J, Kaufman N, Klavins J V, Kinney T D. Interrelation of amino acids and pH on intestinal iron absorption. Am. J. Physiol 1966; 211: 414–418
  • Layrisse M, Martinez-Torres C, Roche M. Effect of interaction of various foods on iron absorption. Am. J. Clin. Nutr 1968; 21: 1175–1183
  • Layrisse M, Martinez-Torres C, Leets I, Taylor P, Ramirez J. Effect of histidine, cystein, glutathione or beef on iron absorption in humans. J. Nutr 1984; 114: 217–223
  • Kholk Li, Vladimirov Y A, Deev Al. Comparative study of the effect of carnosine and other antioxidants of chemoluminescence of monolayer liposome suspension in the presence of ferrum ions. Biofizica 1990; 35: 82–85, in Russian
  • Mahoney A W, Hendricks D G. Efficiency of hemoglobin regeneration as a method of assessing iron bioavalability in food products. Nutritional Bioavailability of Iron, C Kries. American Chemical Society, Washington, DC 1982; 1–11
  • Martinez-Torres C, Layrisse M. Effect of amino acids on iron absorption from staple vegetable food. Blood 1970; 35: 669–682
  • Martinez-Torres C, Layrisse M. Iron absorption from veal muscle. Am. J. Clin. Nutr 1971; 24: 531–540
  • Martinez-Torres C, Romano E, Layrisse M. Effect of cysteine on iron absorption in man. Am. J. Clin. Nutr 1981; 34: 322–328
  • Okamoto K, Yasui T, Kawaguchi H, Ama T, Hidaka J. Universal coordination mode of carnosine (β-alanyl-L-histidine) in a cobalt(III) complex. Chem. Lett 1988; 88: 335–338
  • Siedel J, Wahleseld A W, Ziegenhorn J. Improved ferrozine (R)-based reagent for the determination of serum iron (transfer iron) without deproteinization. Clin. Chem 1984; 30: 975
  • Simpson R J, Moore R, Peters T J. Significance of non-esterified fatty acids in iron uptake by intestinal brush border membrane vesicles. Biochim. Biophy. Acta 1988; 941: 39–47
  • Terato K, Fujita T, Yoshino Y. Studies on iron absorption l. The role of low molecular polymer in iron absorption. Digest. Dis 1973; 18: 121–128
  • Thannoun A M, Mahoney A W, Hendricks D G, Zhang D. Effect of meat-bread mixtures on bioavailability of dietary iron for anaemic rats. Cereal Chem 1987; 64: 399–403
  • Van Campen D. Effect of histidine and ascorbic acid on the absorption and retention of 59Fe by iron-depleted rats. J. Nutr 1972; 102: 165–170
  • Van Campen D, Gross E. Effect of histidine and ascorbic acid on the absorption and retention of 59Fe by iron-depleted rats. J. Nutr 1969; 99: 68–74
  • Van Kampen E J, Ziglstra W G. Standardisation of haemoglobinometry II: the haemoglobin-cyanide method. Clin. Chem. Acta 1961; 6: 538–544
  • Yoshino Y, Hiramatsu Y, Yagashita A, Terato K. The acceleration of iron absorption in response to iron deficiency anaemia of rats. J. Japan Soc. Food Nutr 1971; 24: 206–210, in Japanese
  • Zhang D, Hendricks D G, Mahoney A W. Bioavailability of total iron from meat, spinach (Spinacea oleracea L) and meat-spinach mixtures by anaemic and non-anaemic rats. Br. J. Nutr 1989; 61: 331–343
  • Zhang D, Hendricks D G, Mahoney A W, Yu Y, Thannoun A M, Sisson D V. Bioavailability of total dietary iron from beef and soy protein isolate, alone or combined in anemic and healthy rats. Cereal Chem 1991; 68: 194–200

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