Analyze Diet

Topic:Biochemistry

The study of biochemistry in horses encompasses the chemical processes and substances that occur within equine organisms. This field investigates the molecular interactions and pathways that are fundamental to horse physiology, including metabolism, enzyme activity, and genetic expression. Key areas of interest include the examination of metabolic disorders, nutrient absorption, and the biochemical basis of muscle function and energy production. Researchers utilize biochemical analysis to understand health and disease mechanisms in horses, contributing to the development of diagnostic tools and therapeutic strategies. This page gathers peer-reviewed studies and scholarly articles that explore various biochemical processes and their implications for equine health and performance.
Pancreatic ribonuclease distribution and comparisons in mammals.
Nature: New biology    January 17, 1973   Volume 241, Issue 107 76-78 doi: 10.1038/newbio241076a0
Beintema JJ, Scheffer AJ, van Dijk H, Welling GW, Zwiers H.No abstract available
Lymphocyte receptors for autoantigens, autologous serum inhibits self-recognition.
Nature: New biology    January 3, 1973   Volume 241, Issue 105 25-26 doi: 10.1038/newbio241025a0
Wekerle H, Cohen IR, Feldman M.No abstract available
[The presence of plasminogen activator in kidney perfusate].
Przeglad lekarski    January 1, 1973   Volume 30, Issue 6 504-509 
Zuch A, Januszko T, Buluk K, Bielecki T.No abstract available
Studies on the metabolism of sympathomimetic amines. The metabolism of ( )-( 14 C) amphetamine in the horse.
Xenobiotica; the fate of foreign compounds in biological systems    January 1, 1973   Volume 3, Issue 1 49-61 doi: 10.3109/00498257309151499
Chapman DI, Marcroft J.No abstract available
Simulataneous determination of transferrin and albumin phenotypes in horses.
Archivum immunologiae et therapiae experimentalis    January 1, 1973   Volume 21, Issue 4 577-581 
Nikolajczuk M, Balbierz H.No abstract available
[Study of the mechanism of inhibition of horse liver alcohol dehydrogenase by 3, 5, 3′-triiodo-L-thyronine and its formic, acetic and propionic analogues].
Comptes rendus des seances de la Societe de biologie et de ses filiales    January 1, 1973   Volume 167, Issue 5 662-667 
Truchot R, Goudonnet H, Michel R.No abstract available
The metabolism of IgG in the newborn foal.
Research in veterinary science    January 1, 1973   Volume 14, Issue 1 136-137 
Reilly WJ, Macdougall DF.No abstract available
[Enzyme studies in the serum of large animals with reference to diagnosis and prognosis].
Tierarztliche Praxis    January 1, 1973   Volume 1, Issue 1 5-18 
Gerber H, Martig J, Straub R.No abstract available
Enzyme changes in ageing mammals.
Gerontologia    January 1, 1973   Volume 19, Issue 2 79-125 doi: 10.1159/000211964
Wilson PD.No abstract available
[Studies on gonadotrophic hormones. IX. Stability of pregnant mares serum gonadotrophin (author’s transl)]. Koshimura E.No abstract available
Species specificity in the isozyme spectrum of the alkaline phosphatase in bull, ram, stallion, boar and cock spermatozoa.
Comptes rendus de l'Academie Bulgare des sciences : sciences mathematiques et naturelles    January 1, 1973   Volume 26, Issue 11 1553-1555 
Petkov ZZ, Ivanov IN, Kichev GK.No abstract available
The organ-specificity of ferritin in human and horse liver and spleen.
The Biochemical journal    January 1, 1973   Volume 131, Issue 1 51-59 doi: 10.1042/bj1310051
Crichton RR, Millar JA, Cumming RL, Bryce CF.1. Ferritin was isolated from human and horse spleen and liver, and apoferritin prepared therefrom. 2. The electrophoretic mobilities of the four apoferritins were determined on polyacrylamide gels and on cellulose acetate strips, and all found to be equal. 3. Homologous ferritins share reactions of identity in immunodiffusion experiments, whereas heterologous ferritins show only partial identity. 4. The subunit molecular weight of each of the apoferritins was determined by polyacrylamide-gel electrophoresis in sodium dodecyl sulphate and by chromatography on agarose columns in 6m-guanidine-HC...
Primary structures of the proinsulin connecting peptides of the rat and the horse.
The Journal of biological chemistry    December 25, 1972   Volume 247, Issue 24 7936-7940 
Tager HS, Steiner DF.No abstract available
Bilirubin uridyldiphospho-glucuronyl transferase and -glucuronidase activity in tissues of horse (Equus caballus) and sheep (Ovis aries).
Comparative biochemistry and physiology. B, Comparative biochemistry    December 15, 1972   Volume 43, Issue 4 929-933 doi: 10.1016/0305-0491(72)90236-2
Anwer MS, Mia AS, Gronwall R.No abstract available
Equilibria of organic phosphates with horse oxyhemoglobin.
Biochemistry    December 5, 1972   Volume 11, Issue 25 4660-4668 doi: 10.1021/bi00775a004
Hedlund B, Danielson C, Lovrien R.Organic phosphates, ATP, AMP, and 2,3-di-phosphoglycerate (DPG) were interacted with horse oxyhemo-globin. Binding parameters were obtained by means of dialysis equilibrium in buffers at 5°, and from calorimetry at 5 and 25°, all in the pH mom 6.5-7.3. The calorimetric results were evaluated assuming a single strong site, and assuming that the pH shifts which occur in the absence of added salt are due to electrostatic effects and not to changes in side-chain titration, upon mixing samples previously ad-justed to the same pH. There was obtained for ATP and 2,3- diphosphoglycerate. respectivel...
Chemical properties of equine pituitary follicle-stimulating hormone.
Endocrinology    December 1, 1972   Volume 91, Issue 6 1418-1422 doi: 10.1210/endo-91-6-1418
Nuti LC, Grimek HJ, Braselton WE, McShan WH.No abstract available
Ovulation induced by pregnant mare serum gonadotrophin in the immature rat treated neonatally with a low or a high dose of androgen.
The Journal of endocrinology    December 1, 1972   Volume 55, Issue 3 533-541 doi: 10.1677/joe.0.0550533
Uilenbroek JT, van Werff ten Bosch JJ.No abstract available
On the occurrence and nature of one of the gamma immunoglobulins in horse antisera.
Zeitschrift fur Immunitatsforschung, experimentelle und klinische Immunologie    December 1, 1972   Volume 144, Issue 4 381-388 
Lostický C.No abstract available
Subcellular distribution of cyclic AMP-dependent protein phosphotransferases in horse thyroid gland.
Archives internationales de physiologie et de biochimie    December 1, 1972   Volume 80, Issue 5 984-985 
Sand G, Verhaegen M.No abstract available
Kininase activity in equine plasma.
Biochemical pharmacology    November 15, 1972   Volume 21, Issue 22 3078-3082 doi: 10.1016/0006-2952(72)90202-x
O-Ishi S, Sakuma A, Katori M.No abstract available
Proton magnetic resonance study of the histidine residues of sperm whale and horse myoglobins.
Journal of molecular biology    November 14, 1972   Volume 71, Issue 2 513-519 doi: 10.1016/0022-2836(72)90367-1
Cohen JS, Hagenmaier H, Pollard H, Schechter AN.No abstract available
An examination of the oxidation of aldehydes by horse liver alcohol dehydrogenase.
The Journal of biological chemistry    November 10, 1972   Volume 247, Issue 21 7106-7107 
Hinson JA, Neal RA.No abstract available
Mechanisms of the reactions of cytochrome c. Rate and equilibrium constants for ligand binding to horse heart ferricytochrome c.
The Journal of biological chemistry    November 10, 1972   Volume 247, Issue 21 6932-6936 
Sutin N, Yandell JK.No abstract available
Spectroscopic properties of N-bromosuccinimide-modified horse heart cytochrome c + .
Biochemistry    November 7, 1972   Volume 11, Issue 23 4209-4216 doi: 10.1021/bi00773a003
Myer YP, Pal PK.No abstract available
Use of radioactive triiodothyronine in the study of thyroid function in normal horses.
Veterinary medicine, small animal clinician : VM, SAC    November 1, 1972   Volume 67, Issue 11 1225-1228 
Motley JS.No abstract available
Cultural characteristics of a cell line derived from an equine sarcoid.
Applied microbiology    November 1, 1972   Volume 24, Issue 5 727-731 doi: 10.1128/am.24.5.727-731.1972
Watson RE, England JJ, Larson KA.A cell line, derived from a spontaneous equine connective tissue tumor (equine sarcoid), has been established. The morphological and growth characteristics indicative of malignant transformation of the cells include a disoriented, rapid growth and loss of contact inhibition. Further evidence of transformation is the agglutination of these cells by concanavalin A and their ability to divide in semisolid media.
Glutathione reduction and other enzyme activities in equine erythrocytes.
Comparative biochemistry and physiology. B, Comparative biochemistry    October 15, 1972   Volume 43, Issue 2 413-417 doi: 10.1016/0305-0491(72)90301-x
Smith JE, Kiefer S, Lee M.1. Reduced glutathione regeneration rates as measured in erythro- cytes of ten horses were considerably lower than rates reported in human and sheep erythrocytes. 2. Theactivityofenzymesinvolvedinreducedglutathioneregenerationwas at least three times the observed reduction rate. 3. Despitehighglucose-6-phosphatedehydrogenaseactivity,equineerythro- cytes could not adequately accelerate the hexose monophosphate pathway. 4. Activities of enzymes involved in regulating the glycolytie pathway were less than 5/~moles/min per g hemoglobin; of other glycolytic enzymes greater than 10/~moles/min per...
Erythrocytic methaemoglobin reductases of various mammalian species.
Experientia    October 15, 1972   Volume 28, Issue 10 1248-1249 doi: 10.1007/BF01946202
Agar NS, Harley JD.No abstract available
Purification and some molecular properties of horse liver acyl phosphatase.
Biochimica et biophysica acta    October 12, 1972   Volume 284, Issue 2 485-496 doi: 10.1016/0005-2744(72)90147-7
Ramponi G, Nassi P, Cappugi G, Treves C, Manao G.No abstract available
[Mechanisms of action of interferon].
Antibiotiki    October 1, 1972   Volume 17, Issue 10 940-945 
Tazulakhova EB, Ershov FI.No abstract available