Analyze Diet

Topic:Metabolism

Equine metabolism encompasses the biochemical processes that occur within horses to maintain life, including the conversion of food into energy, the synthesis of necessary compounds, and the elimination of waste products. These processes are essential for supporting various physiological functions such as growth, reproduction, and physical performance. Key components of equine metabolism include carbohydrate, fat, and protein metabolism, each of which contributes to the overall energy balance and health of the horse. Factors influencing metabolic rate and efficiency in horses include age, breed, diet, exercise, and health status. This page compiles peer-reviewed research studies and scholarly articles that explore the mechanisms, regulation, and implications of metabolic processes in equine physiology.
Metallothionein: a cadmium and zinc-containign protein from equine renal cortex. II. Physico-chemical properties.
The Journal of biological chemistry    September 1, 1961   Volume 236 2435-2442 
KAGI JH, VALLEE BL.No abstract available
Partial purification of a plasmakinin-forming enzyme from horse urine.
Experientia    January 15, 1961   Volume 17 31-32 doi: 10.1007/BF02157937
PRADO ES, PRADO JL.No abstract available
The effect of time and temperature on the gonadotrophic potency of pregnant mare serum.
American journal of veterinary research    July 1, 1960   Volume 21 585-590 
SANTAMARINA E, JOVEN LL.No abstract available
Biosynthesis of steroids in stallion testis tissue.
Endocrinology    April 1, 1960   Volume 66 617-624 doi: 10.1210/endo-66-4-617
SAVARD K, GOLDZIEHER JW.No abstract available
Studies on the binding of 65Zn by equine erythrocytes in vitro.
The Biochemical journal    March 1, 1960   Volume 74, Issue 3 561-567 doi: 10.1042/bj0740561
SIVARAMA SASTRY K, VISWANATHAN L, RAMAIAH A, SARMA PS.No abstract available
[On the problem of lactic acid concentration in the blood of the horse].
Zeitschrift fur Biologie    December 1, 1959   Volume 111 271-276 
WITTKE G, BOHN M.No abstract available
The effect of systematic training on plasma electrolytes, haematocrit value, and blood sugar in thoroughbred race horses.
Canadian journal of biochemistry and physiology    February 1, 1959   Volume 37, Issue 2 273-283 
SRETER FA.No abstract available
Isolation of delta 5,7,9-oestratrienol-3-one-17 from the urine of pregnant mares.
Nature    November 8, 1958   Volume 182, Issue 4645 1308-1309 doi: 10.1038/1821308b0
GLEN WL, BARBER R, PAPINEAUCOUTURE G.No abstract available
Molybdenum content of equine liver tissue.
Nature    October 25, 1958   Volume 182, Issue 4643 1175-1176 doi: 10.1038/1821175b0
MOORE PA.No abstract available
The relationship between cholinesterase activity and the effects of succinylcholine chloride in the horse and cow.
The Cornell veterinarian    July 1, 1958   Volume 48, Issue 3 241-259 
STOWE CM, BIETER RN, ROEPKE MH.No abstract available
BLOOD volume, body water and fat in the horse.
Nutrition reviews    January 1, 1958   Volume 16, Issue 1 14-15 doi: 10.1111/j.1753-4887.1958.tb00612.x
No abstract available
The oxidation of cystamine and homocystamine by mammalian enzymes.
British journal of pharmacology and chemotherapy    December 1, 1957   Volume 12, Issue 4 513-516 doi: 10.1111/j.1476-5381.1957.tb00174.x
BERGERET B, BLASCHKO H.The oxidative deamination of cystamine and homocystamine by mammalian oxidases has been studied. The histaminase of pig kidney oxidizes homocystamine much more slowly than cystamine. The amine oxidase of mammalian liver (guinea-pig, rabbit) oxidizes homocystamine more rapidly than cystamine. Both amines are oxidized by plasma (or serum) of ruminants (ox, sheep, goat) and of the horse. In the enzymatic oxidation of homocystamine both aminogroups are removed; there is no evidence that a ring compound analogous to cystaldimine is accumulating.
[An alpha 1-mucoprotein in pregnant mare serum, and its role in the transport of the gonadotropic hormone].
Bulletin de la Societe de chimie biologique    September 26, 1957   Volume 39, Issue 9-10 1119-1128 
BOURRILLON R, GOT R, BOUGUEREAU J, MARCY R.No abstract available
The concentration of blood sugar during starvation in the newborn calf and foal.
Journal of comparative pathology    July 1, 1957   Volume 67, Issue 3 289-296 doi: 10.1016/s0368-1742(57)80028-9
GOODWIN RF.Graham, Sampson and Hester (1941) observed that hypoglycaemia was a pathognomonic feature in a fatal disease of newborn pigs and subsequently made the important observation that starvation alone could rapidly produce a similar syndrome (Sampson, Hester and Graham, 1942). In contrast, Hanawalt and Sampson (I947a) found that older pigs, weighing between 20 and 40 lb., were resistant to a long period of starvation (24 and 28 days), the main development of this resistance occurring during the first week of life (Hanawalt and Sampson, I947b). Thus starvation from birth was fatal in less than...
Lipid mobilization by a crystalline peptide isolated from plasma of horses administered cortisone. SEIFTER J, BAEDER DH.No abstract available
Steroids of pregnant mare’s urine. V. Identification of two androstane-3:16-diols; the structure of uranolone.
The Biochemical journal    April 1, 1957   Volume 65, Issue 4 663-668 doi: 10.1042/bj0650663
BROOKS RV, KLYNE W.No abstract available
Zinc in horse liver alcohol dehvdrogenase.
The Journal of biological chemistry    March 1, 1957   Volume 225, Issue 1 185-195 
VALLEE BL, HOCH FL.No abstract available
The biosynthesis of allopregnane-3beta, 16alpha, 20beta-triol from acetate-1-C14 in the pregnant mare.
Endocrinology    February 1, 1957   Volume 60, Issue 2 214-218 doi: 10.1210/endo-60-2-214
BOLKER HI, HEARD RD, O'DONNELL VJ.No abstract available
[Significance of weight changes occurring during rehydration in horses].
Comptes rendus des seances de la Societe de biologie et de ses filiales    January 1, 1957   Volume 151, Issue 6 1176-1180 
LEMAIRE R, DUPONT M, SABATHIER J.No abstract available
The relation between sweating and the innervation of sweat glands in the horse.
The Journal of physiology    November 28, 1956   Volume 134, Issue 2 421-426 doi: 10.1113/jphysiol.1956.sp005654
BELL FR, EVANS CL.No abstract available
Occurrence of trans-unsaturated fatty acids in horse faeces.
Nature    November 10, 1956   Volume 178, Issue 4541 1057-1058 doi: 10.1038/1781057b0
HARTMAN L, SHORLAND FB.No abstract available
The effect of sulfanilamide on phosphorus metabolism of horses.
American journal of veterinary research    October 1, 1956   Volume 17, Issue 65 687-694 
ALSTROM I, JERSIN M.No abstract available
[Glycogen content and phosphorylative glycogen degradation in the epithelium of the mucous membrane of horse bladder].
Pflugers Archiv fur die gesamte Physiologie des Menschen und der Tiere    September 30, 1956   Volume 263, Issue 3 331-340 doi: 10.1007/BF00412766
KLUGE A.No abstract available
The relation between sweating and the catechol content of the blood in the horse.
The Journal of physiology    June 28, 1956   Volume 132, Issue 3 542-552 doi: 10.1113/jphysiol.1956.sp005547
EVANS CL, SMITH DF, WEIL-MALHERBE H.No abstract available
Blood volume, body water and body fat of the horse.
Journal of applied physiology    May 1, 1956   Volume 8, Issue 6 651-653 doi: 10.1152/jappl.1956.8.6.651
JULIAN LM, LAWRENCE JH, BERLIN NI, HYDE GM.No abstract available
Isolation of beta-dihydroequilin and alpha-dihydroequilenin from the urine of pregnant mares.
Nature    April 21, 1956   Volume 177, Issue 4512 753 doi: 10.1038/177753a0
GLEN WL, BARBER R, MCCONKEY HM, GRANT GA.No abstract available
Sweating responses in the horse.
Proceedings of the Royal Society of London. Series B, Biological sciences    March 27, 1956   Volume 144, Issue 918 61-83 doi: 10.1098/rspb.1956.0018
EVANS CL, SMITH DF.No abstract available
[Ponderal variations during dehydration and rehydration in horses].
Comptes rendus des seances de la Societe de biologie et de ses filiales    January 1, 1956   Volume 150, Issue 12 2224-2227 
LEMAIRE R, DUCROS H, DUPONT M.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.
Biogenesis of the estrogens: the conversion of testosterone-4-C14 to estrone in the pregnant mare.
Endocrinology    August 1, 1955   Volume 57, Issue 2 200-204 doi: 10.1210/endo-57-2-200
HEARD RD, JELLINCK PH, O'DONNELL VJ.No abstract available