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.
[Effect of bradykinin on the secretion of milk by sheep and horses].
Archives internationales de physiologie et de biochimie    September 1, 1968   Volume 76, Issue 4 647-657 doi: 10.3109/13813456809058732
Houvenaghel A, Peeters G.No abstract available
A comparative study of vertebrate esterase multiplicity.
Comparative biochemistry and physiology    September 1, 1968   Volume 26, Issue 3 837-852 doi: 10.1016/0010-406x(68)90004-2
Holmes RS, Masters CJ, Webb EC.No abstract available
[Apo-transferrin in horse serum: its importance in phenotype typification].
Schweizer Archiv fur Tierheilkunde    September 1, 1968   Volume 110, Issue 9 463-467 
Baer A.No abstract available
Comparison of protein structure in the crystal and in solution. V. Solubility of horse methemoglobin and azide binding.
Journal of molecular biology    August 14, 1968   Volume 35, Issue 3 477-481 doi: 10.1016/s0022-2836(68)80007-5
Rupley JA, Gates V.No abstract available
The skin surface lipids of man compared with those of eighteen species of animals.
The Journal of investigative dermatology    August 1, 1968   Volume 51, Issue 2 83-89 doi: 10.1038/jid.1968.96
Nicolaides N, Fu HC, Rice GR.No abstract available
Inhibition of the pseudocholinesterase in horse serum by some choline analogues.
Biochemical pharmacology    August 1, 1968   Volume 17, Issue 8 1595-1599 doi: 10.1016/0006-2952(68)90220-7
Beckett AH, Vaughan CL, Mitchard M.No abstract available
Trehalase and maltase in the serum of vertebrates.
Comparative biochemistry and physiology    August 1, 1968   Volume 26, Issue 2 561-566 doi: 10.1016/0010-406x(68)90649-x
Van Handel E.No abstract available
Some properties of soluble proteins from chromaffin granules of different species.
Biochemical pharmacology    August 1, 1968   Volume 17, Issue 8 1553-1556 doi: 10.1016/0006-2952(68)90214-1
Strieder N, Ziegler E, Winkler H, Smith AD.No abstract available
Amino acid sequences around the cystine residues in horse growth hormone.
The Biochemical journal    August 1, 1968   Volume 109, Issue 1 19-24 doi: 10.1042/bj1090019
Oliver L, Hartree AS.The cystine-containing peptides of horse growth hormone were isolated and their amino acid sequences determined. Four unique half-cystine residues occur in two peptides, one containing 11 and the other, at the C-terminus of the protein, 15 amino acids. These sequences are compared with published data on growth hormones from other species.
The synthesis of some analogues of butyrylcholine and their hydrolysis by a purified horse serum cholinesterase.
Biochemical pharmacology    August 1, 1968   Volume 17, Issue 8 1591-1594 doi: 10.1016/0006-2952(68)90219-0
Beckett AH, Vaughan CL, Mitchard M.No abstract available
Kinetics of viral deoxyribonucleic acid, protein, and infectious particle production and alterations in host macromolecular syntheses in equine abortion (herpes) virus-infected cells.
Journal of virology    August 1, 1968   Volume 2, Issue 8 793-804 doi: 10.1128/JVI.2.8.793-804.1968
O'Callaghan DJ, Hyde JM, Gentry GA, Randall CC.Infection of exponential-phase suspension cultures of mouse fibroblast cells (L-M) with equine abortion virus (EAV) resulted in inhibition of cell growth and marked alterations in host metabolic processes. The synthesis of deoxyribonucleic acid (DNA) and ribonucleic acid was inhibited within 4 hr after infection and was suppressed by more than 90% by the time of maximal virus replication (14 to 18 hr). The overall rate of protein synthesis, however, was similar in uninfected and virus-producing cells as determined by measurements of net protein and isotope incorporation. The time course of vir...
Plasma and urine levels of phenylbutazone in the horse.
Journal of the American Veterinary Medical Association    July 15, 1968   Volume 153, Issue 2 195-198 
Piperno E, Ellis DJ, Getty SM, Brody TM.No abstract available
[Preliminary observations on the amylolytic enzymes of the blood of horses].
Bollettino della Societa italiana di biologia sperimentale    July 15, 1968   Volume 44, Issue 13 1056-1059 
Bonini PA, Franzini C.No abstract available
Three-dimensional Fourier synthesis of horse oxyhaemoglobin at 2.8 A resolution: (1) x-ray analysis.
Nature    July 6, 1968   Volume 219, Issue 5149 29-32 doi: 10.1038/219029a0
Perutz MF, Miurhead H, Cox JM, Goaman LC, Mathews FS, McGandy EL, Webb LE.No abstract available
Equine antihapten antibody. VI. Subunits of polyalanylated gamma-G(T)-immunoglobulin.
Biochemistry    July 1, 1968   Volume 7, Issue 7 2462-2468 doi: 10.1021/bi00847a003
Genco RJ, Karush F, Tenenhouse HS.No abstract available
Comparison of erythrocyte 6-phosphogluconate dehydrogenases of man and various ungulates.
Comparative biochemistry and physiology    July 1, 1968   Volume 26, Issue 1 137-142 doi: 10.1016/0010-406x(68)90320-4
Smith JE, McCants M, Parks P.No abstract available
[Copper, manganese, zinc and magnesium content of the endocrine organs of the horse, ox and pig].
Zentralblatt fur Veterinarmedizin. Reihe A    July 1, 1968   Volume 15, Issue 5 477-479 
Stöckl W, Weiser M.No abstract available
A mutant form of lactate dehydrogenase in the horse.
Annals of the New York Academy of Sciences    June 14, 1968   Volume 151, Issue 1 672-677 doi: 10.1111/j.1749-6632.1968.tb11927.x
Rauch N.No abstract available
Horse spleen apoferritin: N-terminal and C-terminal residues.
Archives of biochemistry and biophysics    June 1, 1968   Volume 125, Issue 3 975-980 doi: 10.1016/0003-9861(68)90536-5
Mainwaring WI, Hofmann T.No abstract available
The correlation of serum levels of two transaminases with tissue levels in six vertebrate species.
Comparative biochemistry and physiology    June 1, 1968   Volume 25, Issue 3 1081-1089 doi: 10.1016/0010-406x(68)90593-8
Zimmerman HJ, Dujovne CA, Levy R.No abstract available
Distribution and intensity of monoamine oxidase activity in the mammalian duodenum.
Acta physiologica Scandinavica    May 1, 1968   Volume 73, Issue 1 121-127 doi: 10.1111/j.1748-1716.1968.tb04089.x
Penttilä A.No abstract available
[Transaminase activity of mare’s milk and koumiss in the process of its ripening].
Voprosy pitaniia    May 1, 1968   Volume 27, Issue 3 87-89 
Il'iasov IZ, Shaĭkhiev AA.No abstract available
Equine antibodies to human gamma-G-globulin. II. Isolation and antigenic analysis of gamma-2- and gamma-1-antibody fractions from equine antisera to human gamma-G-globulin.
Journal of immunology (Baltimore, Md. : 1950)    May 1, 1968   Volume 100, Issue 5 942-954 
Johnston SL, Allen PZ.No abstract available
Structure and function of haemoglobin. IV. A three-dimensional Fourier synthesis of horse deoxyhaemoglobin at 5.5 A resolution.
Journal of molecular biology    April 14, 1968   Volume 33, Issue 1 283-297 doi: 10.1016/0022-2836(68)90294-5
Bolton W, Cox JM, Perutz MF.No abstract available
Paper electrophoretic fractionation and chemical determination of horse serum proteins and lipoproteins.
American journal of veterinary research    April 1, 1968   Volume 29, Issue 4 813-815 
Hort I.No abstract available
The sialic acids of horse serum with special reference to their virus inhibitory properties.
Biochimica et biophysica acta    March 11, 1968   Volume 156, Issue 2 317-326 doi: 10.1016/0304-4165(68)90261-4
Pepper DS.No abstract available
L-Asparaginase activity in human and animal sera.
Nature    February 24, 1968   Volume 217, Issue 5130 758-759 doi: 10.1038/217758a0
Lee MB, Bridges JM.No abstract available
Tissue distribution of sulfadimethoxine and sulfamonomethoxine in horses after intravenous injection.
Nihon juigaku zasshi. The Japanese journal of veterinary science    February 1, 1968   Volume 30, Issue 1 21-23 doi: 10.1292/jvms1939.30.21
Oishi S.The author has already reported on the time course of blood level of sulfonamides in horses at various dose schedules3). The present paper is concerned with the tissue distri-bution of sulfadimethoxine and sulfamonomethoxine in horses. The distribution of sulfonamides has been reported by KoNDol) in experimental animals, in which the concentrations of these drugs in the kidney, liver, lung and spleen were found to be close to the blood level. Many investigators ascribed the low concen-tration of sulfonamides in the spinal fluid to the existence of a blood-brain barrier, and also observed that ...
A comparative study of the multiplicity of mammalian esterases.
Biochimica et biophysica acta    January 8, 1968   Volume 151, Issue 1 147-158 doi: 10.1016/0005-2744(68)90169-1
Holmes RS, Masters CJ.Multiple forms of soluble esterase activity have been resolved in horse, sheep, ox and possum tissue extracts and sera. 2. By comparing esterase zymograms from different tissues and from different species, it is apparent that the distribution and multiplicity of esterase activity is tissue and species specific. 3. By means of substrate and inhibitor studies, the esterase multiple forms have been characterized into four main classes : carboxylesterases, arylesterases, acetylesterases, and cholinesterases. Each of these can be considered as an isoenzymic group. 4. Evidence is presented for furth...
[Vitamin C content in the blood serum of various animal species under stress. 3. Effect of work stress on serum ascorbic acid and blood sugar in the horse].
Archiv fur experimentelle Veterinarmedizin    January 1, 1968   Volume 22, Issue 6 1165-1173 
Axt J, Richter W, Ott W.No abstract available