Analyze Diet

Topic:Hormones

Hormones in horses are chemical messengers produced by various glands and tissues, regulating numerous physiological processes essential for maintaining homeostasis. These hormones influence a wide range of functions, including growth, metabolism, reproduction, and stress responses. Key hormones in equine physiology include cortisol, estrogen, testosterone, and insulin, among others. The levels and effects of these hormones can vary based on factors such as age, sex, and environmental conditions, impacting overall health and performance. This page compiles peer-reviewed research studies and scholarly articles that explore the production, regulation, and physiological roles of hormones in equine biology.
A comparative immunochemical study of luteinizing hormone derived from ovine, murine, equine & human species.
Indian journal of biochemistry    December 1, 1971   Volume 8, Issue 4 314-320 
Raj HG, Moudgal NR.No abstract available
Maintenance of the corpus luteum in hysterectomized mares.
American journal of veterinary research    November 1, 1971   Volume 32, Issue 11 1687-1691 
Ginther OJ, First NL.No abstract available
[Feedback mechanism of diencephalis-pituitary-gonadal system: basic research and clinical studies].
Horumon to rinsho. Clinical endocrinology    November 1, 1971   Volume 19, Issue 11 863-868 
Kurachi K.No abstract available
Formation of estrogens by the pregnant mare. II. Metabolism of 14C-acetate and 3H-cholesterol injected into the fetal circulation.
Endocrinology    November 1, 1971   Volume 89, Issue 5 1152-1157 doi: 10.1210/endo-89-5-1152
Bhavnani BR, Short RV, Solomon S.A mixture of 14C-sodium acetate and 3H-cholesterol was injected into the umbilical circulation of a pregnant mare in the 3OOth day of gestation. The abdomen was closed and urine was collected for 3.5 days. The mare delivered a normal live foal 23 days later. Steroid conjugates present in the maternal urine were hydrolyzed and separated into neutral and phenolic fractions. From the phenolic “sulfate” fraction estrone, 17α-estradiol, equilin, equilenin, and 17α-dihydroequilenin were isolated. Only estrone and 17α-estradiol contained both 3H and 14C, while the ring-B unsaturated estrogens ...
Thin-layer chromatographic separation of equine estrogens on silica gel H-silver nitrate plates.
Journal of chromatography    October 28, 1971   Volume 62, Issue 1 158-160 doi: 10.1016/s0021-9673(01)96827-x
Crocker LE, Lodge BA.No abstract available
The use of premarin, conjugated estrogens-equine to control. Functional uterine bleeding and the urinary estrogen metabolism after administration.
Bulletin of the Osaka Medical School    October 1, 1971   Volume 17, Issue 2 130-142 
Hamada H.No abstract available
[Some notes on the practical use of oestrogens in veterinary obstetrics and gynaecology].
Tijdschrift voor diergeneeskunde    September 1, 1971   Volume 96, Issue 17 1165-1172 
de Bois CH.No abstract available
Steroid content of the equine ovary during the reproductive cycle.
The Journal of endocrinology    August 1, 1971   Volume 50, Issue 4 589-597 doi: 10.1677/joe.0.0500589
Younglai EV.Follicular fluid from individual follicles was collected from nine mares in oestrus and the concentration of the following steroids determined by gas—liquid chromatography: progesterone, 17α-hydroxyprogesterone, androstenedione, 19-norandrostenedione, epitestosterone, oestrone and oestradiol. The most vascular follicles, which were probably those destined to ovulate, tended to have the highest steroid concentrations. In these vascular follicles oestradiol was the main steroid found with an average concentration of 151 μg/100 ml. In two out of three samples of follicular fluid taken from...
Catecholamine secretion by the adrenal medulla of the foetal and new-born foal.
The Journal of physiology    August 1, 1971   Volume 216, Issue 3 659-682 doi: 10.1113/jphysiol.1971.sp009546
Comline RS, Silver M.1. The content and output of adrenaline and noradrenaline from the equine adrenal medulla has been investigated under different conditions in foetuses, foals and adult mares.2. In the foetus only small amounts of both amines were secreted in response to stimulation of the peripheral ends of the splanchnic nerves to the gland; during anoxia the adrenal discharge was far greater and was independent of any nervous mechanism.3. Whereas in the ruminant a direct adrenal response to low P(O2) is confined to the noradrenaline cells during foetal life only, the adrenal medulla of the foetal foal secret...
The oestrous cycle of the mare.
Equine veterinary journal    July 1, 1971   Volume 3, Issue 3 114-117 doi: 10.1111/j.2042-3306.1971.tb04451.x
Witherspoon DM.No abstract available
Volatile fatty acid tolerance and effect of glucose and VFA on plasma insulin levels in ponies.
The Journal of nutrition    June 1, 1971   Volume 101, Issue 6 723-729 doi: 10.1093/jn/101.6.723
Argenzio RA, Hintz HF.No abstract available
Regulation of pituitary ovulating hormone concentration in the immature rat treated with pregnant mare serum.
The Journal of endocrinology    March 1, 1971   Volume 49, Issue 3 387-392 doi: 10.1677/joe.0.0490387
Zarrow MX, Dinius J.No abstract available
[Therapeutic use of steroid hormones in the horse].
Wiener tierarztliche Monatsschrift    January 1, 1971   Volume 58, Issue 10 328-332 
Arbeiter K.No abstract available
Endocrine physiology following parturition.
Journal of animal science    January 1, 1971   Volume 32 Suppl 1 1-16 
Wagner WC, Oxenreider SL.No abstract available
Occurrence of 19-oxoandrost-4-ene-3,17-dione in the course of oestrogen biosynthesis by equine testicular microsomes.
Acta endocrinologica    January 1, 1971   Volume 67, Issue 4 665-676 doi: 10.1530/acta.0.0670665
Oh R, Tamaoki B.No abstract available
The plasma concentrations of corticosteroids in normal and diseased horses.
Journal of the American Veterinary Medical Association    December 1, 1970   Volume 157, Issue 11 1590-1594 
Hoffsis GF, Murdick PW.No abstract available
H-exchange behaviour and extent of reversible conformation changes in human, bovine, ovine, porcine and equine growth hormones.
Biochimica et biophysica acta    November 17, 1970   Volume 221, Issue 2 290-296 doi: 10.1016/0005-2795(70)90269-2
Cambiaso CL, Retegui LA, Dellacha JM, Santomé JA, Paladini AC.No abstract available
Hydrotestosterone in testicular tissue, and its androgenic potency in vivo.
The Journal of endocrinology    October 1, 1970   Volume 48, Issue 2 199-204 doi: 10.1677/joe.0.0480199
Jeffcoate WJ, Short RV.No abstract available
Effect of month and stallion on seminal characteristics and sexual behavior.
Journal of animal science    October 1, 1970   Volume 31, Issue 4 713-728 doi: 10.2527/jas1970.314713x
Pickett BW, Faulkner LC, Sutherland TM.No abstract available
Nocturnal ovulation in the equine animal.
The Veterinary record    September 12, 1970   Volume 87, Issue 11 302-304 doi: 10.1136/vr.87.11.302
Witherspoon DM, Talbot RB.No abstract available
Progesterone concentrations in the peripheral plasma of the mare during the oestrous cycle.
The Journal of endocrinology    August 1, 1970   Volume 47, Issue 4 523-524 doi: 10.1677/joe.0.0470523
Smith ID, Bassett JM, Williams T.No abstract available
[Gonadotropin content of pregnant mare serum].
Veterinariia    August 1, 1970   Volume 8 96-98 
Shlygin AN, Shlygina IN.No abstract available
Plasma concentrations of cortisol and corticosterone in the normal horse.
American journal of veterinary research    August 1, 1970   Volume 31, Issue 8 1379-1387 
Hoffsis GF, Murdick PW, Tharp VL, Ault K.The plasma concentration of cortisol and corticosterone in the normal horse was determined by competitive protein-binding analysis (radiostereoassay). The mean plasma concentration of the 2 steroids in resting horses was 5.12 μg./ml., with standard deviation of 1.67 μg. There were no significant differences in the mean values according to age, sex, and pregnancy. Seemingly, diurnal variations in concentrations of the steroids existed in horses; values were high in the morning and low in the evening. Plasma values were increased in horses given corticotropin (acth) and were decreased in those...
Pathways of steroid biosynthesis in the intact Graafian collicle of mares in oestrus.
The Journal of endocrinology    July 1, 1970   Volume 47, Issue 3 321-331 doi: 10.1677/joe.0.0470321
Younglai EV, Short RV.No abstract available
Purification and properties of follicle-stimulating and luteinizing hormones from horse pituitary glands.
Archives of biochemistry and biophysics    July 1, 1970   Volume 139, Issue 1 45-58 doi: 10.1016/0003-9861(70)90043-3
Braselton WE, McShan WH.No abstract available
Some normal values of thyroid function in horses.
Journal of the American Veterinary Medical Association    June 15, 1970   Volume 156, Issue 12 1888-1891 
Kallfelz FA, Lowe JE.Three thyroid function tests were carried out on ten normal yearling horses. These were the T-4 test which allows the determination of total serum thyroxine and FBI, the labelled triiodothyronine resin sponge uptake test (T-3 test), and the chemical determination of FBI. The T-4 test appeared to be superior to the chemical determination of FBI in assessing thyroid function in the horse. The value of the T-3 test could not be assessed.--BMW.
Steroidogenesis in equine testis.
Acta endocrinologica    May 1, 1970   Volume 64, Issue 1 1-16 doi: 10.1530/acta.0.0640001
O R, Tamaoki B.No abstract available
Recent approaches to the treatment of neoplastic disease in animals.
Journal of the American Veterinary Medical Association    February 1, 1970   Volume 156, Issue 3 355-364 
Cardeilhac PT.No abstract available
A comparison of the chemical tests for oestrogens used in equine pregnancy diagnosis.
The Veterinary record    January 24, 1970   Volume 86, Issue 4 97-100 doi: 10.1136/vr.86.4.97
Cox JE, Galina CS.No abstract available
[Determining the activity of pregnant mare serum and blood].
Veterinariia    January 1, 1970   Volume 46, Issue 4 100-102 
Nemchinov GA, Misaĭlov VD.No abstract available
1 91 92 93 94 95 98