Analyze Diet

Topic:Iron

Iron is an essential trace mineral in horses that plays a significant role in various physiological processes, including oxygen transport, energy metabolism, and enzyme function. It is a key component of hemoglobin and myoglobin, proteins responsible for transporting oxygen in the blood and muscles, respectively. Iron is also involved in the function of certain enzymes and the synthesis of DNA. Horses typically obtain iron from their diet, with forages and grains being primary sources. However, both iron deficiency and overload can lead to health issues, such as anemia or hemosiderosis. This page compiles peer-reviewed research studies and scholarly articles that explore the metabolism, dietary requirements, and health implications of iron in equine physiology.
Differences in subunit composition and iron content of isoferritins.
The Journal of biological chemistry    July 25, 1975   Volume 250, Issue 14 5446-5449 
Ishitani K, Listowsky I.Horse spleen ferritin was fractionated into its constituent isoferritins by isoelectric focusing. Separated isoferritins were stable and showed no tendency to redistribute when re-examined by analytical gel focusing. All of the isoferritins were immunologically indistinguishable when tested with antibodies raised against unfractionated horse spleen ferritin. The separated isoferritins also had similar conformations as determined by circular dichroism. Iron distribution studies, however, revealed a wide disparity among the isoferritins. The most acidic components had the lowest iron content but...
[Diagnosis and therapy of preanemic iron deficiency on the thoroughbred horse].
Berliner und Munchener tierarztliche Wochenschrift    July 15, 1975   Volume 88, Issue 14 261-264 
Gutschow K, Raake W, Rakoczy F, Fernández MP, Vázquez JP.No abstract available
[Iron Dextran Administered to Horses (author’s transl)].
Tijdschrift voor diergeneeskunde    May 15, 1975   Volume 100, Issue 10 562-563 
Wagenaar G.A description is given of three cases in which horses died very shortly after being given an intramuscular injection of iron dextran. The use of iron dextran in the case of horses is inadvisable.
Equine hepatic and renal metallothioneins. Purification, molecular weight, amino acid composition, and metal content.
The Journal of biological chemistry    June 10, 1974   Volume 249, Issue 11 3537-3542 
Kägi JH, Himmelhoch SR, Whanger PD, Bethune JL, Vallee BL.No abstract available
Iron, zinc and copper in mare’s milk.
Journal of animal science    June 1, 1974   Volume 38, Issue 6 1276-1277 doi: 10.2527/jas1974.3861276x
Ullrey DE, Ely WT, Covert RL.No abstract available
The release of iron from horse spleen ferritin to 1,10-phenanthroline.
The Biochemical journal    January 1, 1974   Volume 137, Issue 1 67-70 doi: 10.1042/bj1370067
Hoy TG, Harrison PM, Shabbir M, Macara IG.The rate of release of iron to 1,10-phenanthroline from ferritin fractions of different iron contents has been studied. The experimental results could be interpreted by a simple hypothetical model of the shape of the hydrous ferric oxide micelle at different iron contents, and reasonable correlation obtained between the rate of release and the calculated micelle surface areas. Initial rates of release did not correlate significantly with protein concentration.
Synthesis of liver ferritin on free and membrane-bound polyribosomes of different sizes.
FEBS letters    December 1, 1973   Volume 37, Issue 2 249-252 doi: 10.1016/0014-5793(73)80471-5
Konijn AM, Baliga BS, Munro HN.No abstract available
Determination of serum total iron-binding capacity.
Journal of clinical pathology    June 1, 1973   Volume 26, Issue 6 457 doi: 10.1136/jcp.26.6.457-a
Betts CA, Stuart B.No abstract available
[Prevention of anemia in breeding horses].
Veterinariia    June 1, 1973   Volume 49, Issue 6 87-89 
Preger SM.No abstract available
The biochemistry of ferritin.
British journal of haematology    June 1, 1973   Volume 24, Issue 6 677-680 doi: 10.1111/j.1365-2141.1973.tb01695.x
Crichton RR.The researchers investigated the biochemical properties of ferritin, a protein responsible for iron storage in the body. They identified its distribution and structure, noting variations in different species and tissues. […]
Immunological studies on the organ and species specificity of ferritin from horse, rabbit and pig.
Comparative biochemistry and physiology. B, Comparative biochemistry    September 15, 1972   Volume 43, Issue 1 217-221 doi: 10.1016/0305-0491(72)90218-0
Marsden RJ, Ducker HA, Douglas TA, Renton JP.No abstract available
Serum iron levels in normal and anemic horses.
The Canadian veterinary journal = La revue veterinaire canadienne    May 1, 1972   Volume 13, Issue 5 105-108 
Osbaldiston GW, Griffith PR.No abstract available
Problems in the measurement of iron binding capacity in serum.
Clinica chimica acta; international journal of clinical chemistry    March 1, 1972   Volume 37 131-140 doi: 10.1016/0009-8981(72)90424-x
Williams HL, Conrad ME.No abstract available
[Trace element requirements of domestic animals and the consequences of their deficiency].
Annales de la nutrition et de l'alimentation    January 1, 1972   Volume 26, Issue 1 B231-B325 
Ferrando R.No abstract available
Hematopoietic response to hematinics in horses.
Journal of the American Veterinary Medical Association    December 1, 1971   Volume 159, Issue 11 1316-1318 
Kirkham WW, Guttridge H, Bowden J, Edds GT.No abstract available
Ferritin and ferritin iron measurement in tissues by a quantitative immunoprecipitation technique.
Analytical biochemistry    September 1, 1970   Volume 37, Issue 1 64-72 doi: 10.1016/0003-2697(70)90258-7
Leslie AJ, Kaldor I.No abstract available
Studies on the structure of ferritin and apoferritin from horse spleen. I. Tryptic digestion of ferritin and apoferritin.
Biochimica et biophysica acta    November 11, 1969   Volume 194, Issue 1 34-42 doi: 10.1016/0005-2795(69)90176-7
Crichton RR.No abstract available
[Content of trace elements in the teeth of domestic animals].
Berliner und Munchener tierarztliche Wochenschrift    September 1, 1969   Volume 82, Issue 17 326-330 
Dürr U.No abstract available
[Comparative studies on ferritin isolated from various animal species. 3. I. Fractionation of ferritin from the spleen of dolphin (Dolphinus cetacea). II. Comparative studies of ferritin from the spleens of terrestial mammals (horses, rabbits) and marine mammals (tunafish, dolphins)].
Seikagaku. The Journal of Japanese Biochemical Society    February 1, 1969   Volume 41, Issue 2 61-71 
Kato T.No abstract available
The binding of plutonium to serum proteins in vitro.
Radiation research    October 1, 1968   Volume 36, Issue 1 22-30 
Turner GA, Taylor DM.The interactions between tetravalent plutonium and horse serum proteins were studied in vitro by electrophoresis on cellulose acetate and by gel filtration. The results show that in horse serum, as in other mammalian sera, the plutonium is associated principally with the transferrin component of the beta1-globulins. The formation of the plutonium-transferrin complex requires the presence of HCO3-, and plutonium is displaced from the complex by excess iron, thus indicating that similar binding sites may be involved in the complexing of iron and plutonium. The plutonium complex is considered to ...
Bacteriostatic effects of horse sera and serum fractions on Clostridium welchii Type A, and the abolition of bacteriostasis by iron salts.
Immunology    March 1, 1967   Volume 12, Issue 3 285-301 
Rogers HJ.Under a variety of conditions of concentration, Eh, and pH, horse anti- serum and normal horse serum exerted similar bacteriostatic effects against Type A. Ferric iron abolished the bacteriostatic effect when added during the first 2 hours of incubation at Eh+60 mV. Ferrous iron abolished the bacteriostatic effect when added after 3 hours. Ferric iron abolished the bacteriostatic effect at—140 mV. A mixture consisting of horse β- and γ-globulins together with human transferrin exerted a bacteriostatic effect similar to that of whole serum. This system responded in the same way as whole se...
[Heterogeneity of horse spleen ferritin. I. Comparison of “free” apoferritin and alfa-ferritin].
Seikagaku. The Journal of Japanese Biochemical Society    January 1, 1967   Volume 39, Issue 1 23-28 
Shinjyo S, Kume M, Danjo T.No abstract available
Electrophoretic and Immunological Studies of Horse and Human Ferritin.
Clinica chimica acta; international journal of clinical chemistry    September 1, 1963   Volume 8 794-798 doi: 10.1016/0009-8981(63)90148-7
FINE JM, HARRIS G.No abstract available
Separation of iron-containing ferritin from horse-spleen into three distinct fractions by starch-gel electrophoresis.
Nature    June 1, 1963   Volume 198 892-893 doi: 10.1038/198892a0
KOPP R, VOGT A, MAASS G.No abstract available
[Immunological analogies of ferritin and equine hemosiderin].
Bulletin de la Societe de chimie biologique    January 1, 1963   Volume 45 377-382 
de BORNIER B.No abstract available
Hemosiderin; isolation from horse spleen and characterization. LUDEWIG S.1. A method is outlined for isolating hemosiderin from horse spleen by sedimentation from salt solutions of different specific gravities. 2. The iron, nitrogen, phosphorus and ash concentration varied considerably in hemosiderin samples obtained from different spleens. Fractionation of these preparations by sedimentation in organic liquids showed that fractions could be obtained which varied in their iron concentrations from about 25 to 41% iron. 3. Hemosiderin has been found to contain hexoseamine, galactose, mannose and fucose.
[Conditions of separation of the mineral complex of ferritin from the horse spleen].
Comptes rendus des seances de la Societe de biologie et de ses filiales    January 1, 1956   Volume 150, Issue 8-9 1595-1597 
MAGNAN DE BORNIER B.No abstract available
The effect of ferrimyoglobin on the oxidation of succinic acid by horse heart muscle preparations.
Experientia    October 15, 1955   Volume 11, Issue 10 399-400 doi: 10.1007/BF02158505
AZZONE GF.In a series of model reactions, it is shown that residues of ~-aminoacids may be inserted by a particular rearrangement into certain carboxyl or carbonylamido groups. Repeated insertion results in the formation of a peptide derivative. It is concluded that natural peptides or proteins must not necessarily be formed by head to tail combination of aminoacids, Other implications of the new principle are discussed.
Levels of some chemical constituents in normal horse sera.
Journal of comparative pathology    October 1, 1953   Volume 63, Issue 4 286-293 doi: 10.1016/s0368-1742(53)80030-5
JENNINGS FW, MULLIGAN W.THE chemical analyses reported in this paper arc the result of an investigation on the sera of thirty normal horses from a heavy draught horse stable in Glasgow. Determinations have been made of scrum proteins (albumin and total globulin), alkaline phosphatase, bilirubin, calcium, magnesium, inorganic phosphate and urea. Estimations of some of these constituents have already been carried out by a number of workers, but in the majority of cases the investigation has been confined to one or two constituents relevant to the problem being studied, and many of the data available are a by-product of...
[Regeneration of erythrocytes, hemoglobin and proteins in horses after bleeding; effect of iron and soy bean].
Memorias do Instituto Butantan    January 1, 1952   Volume 24, Issue 1 1-7 
NAHAS L, ROSENFELD G.No abstract available