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.
Effect of administration of an alpha 2-adrenergic agonist, xylazine, on pulsatile gonadotrophin secretion in anoestrous horse mares.
Journal of reproduction and fertility    November 1, 1988   Volume 84, Issue 2 693-700 doi: 10.1530/jrf.0.0840693
Fitzgerald BP, Mellbye LB.Two experiments were performed to test the hypothesis that the seasonal suppression of gonadotrophin pulse frequency in anoestrous horse mares reflects inhibitory neural mechanisms. In a preliminary experiment (Exp. 1) conducted in February, 4 anoestrous mares were sedated by repeated intravenous injections of xylazine, an alpha 2-adrenergic receptor agonist. On the day of treatment, 1-2 LH pulses were observed in xylazine-treated mares. In contrast, during a 12-h period only 1/8 untreated control mares exhibited a LH pulse. In Exp. 2, the effect of xylazine-induced sedation on pulsatile gonad...
Variation in plasma concentrations of oestradiol-17 beta and their relationship to those of progesterone, 13,14-dihydro-15-keto-prostaglandin F-2 alpha and oxytocin across pregnancy and at parturition in pony mares.
Journal of reproduction and fertility    November 1, 1988   Volume 84, Issue 2 635-646 doi: 10.1530/jrf.0.0840635
Haluska GJ, Currie WB.Concentrations of plasma progesterone were similar to values reported in the literature except that a significant decrease in progesterone during the last day, but before parturition, was detected by systematic, high-intensity blood sampling. Mean concentrations of oestradiol-17 beta increased sharply and significantly, plateaued for 132.8 +/- 1.5 days (mean +/- s.e.m., N = 9), then declined sharply in each mare. There was obvious variation between the mares in when these increases and decreases in oestradiol-17 beta occurred, with the events being related closely to ambient photoperiod condit...
In-vitro and in-vivo responsiveness of the corpus luteum of the mare to gonadotrophin stimulation.
Journal of reproduction and fertility    November 1, 1988   Volume 84, Issue 2 593-600 doi: 10.1530/jrf.0.0840593
Kelly CM, Hoyer PB, Wise ME.Dispersed horse luteal cells were used to evaluate the ability of horse LH, hCG and PMSG to stimulate progesterone secretion in vitro. Morphological characterization of these cells before gonadotrophin stimulation indicated the presence of two populations of cells based on cell diameters. In luteal cells incubated as suspended cells, horse LH and hCG stimulated (P less than or equal to 0.05) progesterone production at all levels of treatment. Stimulation of progesterone secretion by hCG was greater (P less than or equal to 0.05) than by horse LH over the range of concentrations utilized. When ...
Testosterone blood content is regulated by testicular aromatization-conjugation in the stallion.
Steroids    October 1, 1988   Volume 52, Issue 4 353-354 doi: 10.1016/0039-128x(88)90143-2
Silberzahn P, Bouhamidi R, Zwain I, Gaillard JL, Martin B.No abstract available
Controlling seasonal anoestrus in mares.
The British veterinary journal    September 1, 1988   Volume 144, Issue 5 417-418 doi: 10.1016/0007-1935(88)90081-4
Hyland JH.No abstract available
Circulating immunoreactive beta endorphin concentrations in the perinatal foal.
Equine veterinary journal. Supplement    September 1, 1988   Issue 5 46-49 doi: 10.1111/j.2042-3306.1988.tb04637.x
Dudan FE, Little TV, Hillman RB, Lit WI, Chen CL.No abstract available
Restricted conceptus mobility results in failure of pregnancy maintenance in mares.
Biology of reproduction    September 1, 1988   Volume 39, Issue 2 340-348 doi: 10.1095/biolreprod39.2.340
McDowell KJ, Sharp DC, Grubaugh W, Thatcher WW, Wilcox CJ.Cycling pony mares were bred and used to test the effect of restricted conceptus mobility on luteal maintenance (i.e. maternal recognition of pregnancy). In Experiment 1, uterine horns were ligated to restrict conceptus mobility to one uterine horn, Group 1; one horn plus the uterine body, Group 2; or one horn, the body and approximately 80% of the second horn, Group 3. Pregnancies were monitored with real-time ultrasonography. Four of five mares in Group 1 and two of four mares in Group 2 returned to estrus (Day 16.0 +/- 1.9 and 14.5 +/- 0.7, respectively) and subsequently lost the embryonic ...
Concentration of serum testosterone in XY sex reversed horses.
Journal of endocrinological investigation    September 1, 1988   Volume 11, Issue 8 609-613 doi: 10.1007/BF03350191
Kent MG, Schneller HE, Hegsted RL, Johnston SD, Wachtel SS.The XY Sex Reversal Syndrome of the horse is a condition associated with female or intersexual development in genetic males. In our previous study, 38 sex reversed XY mares were classified according to behavior, gross clinical phenotype, gonadal status, and H-Y phenotype. Four classes were described, ranging from potentially fertile female (Class I) to virilized intersex (Class IV). In the present study, serum testosterone concentrations were measured in 29 sex-reversed XY mares, 3 normal mares and 3 normal stallions. Serums were obtained during the breeding season (March-August), and were sto...
Reproductive physiology of the nonpregnant mare. An overview and update.
The Veterinary clinics of North America. Equine practice    August 1, 1988   Volume 4, Issue 2 161-176 doi: 10.1016/s0749-0739(17)30634-x
Adams GP, Bosu WT.This article reviews the reproductive events in the nonpregnant mare with emphasis on recent advances. The discussion is restricted to the salient features of puberty (prenatal and prepubertal events), seasonality (gonadotropins, photoperiod, and other modifying factors), and the estrous cycle (hormones, estrus, diestrus, and the control of cyclicity) in the nonpregnant mare.
Some applications of chromatography to steroid analysis in the horse.
The Analyst    August 1, 1988   Volume 113, Issue 8 1179-1187 doi: 10.1039/an9881301179
Houghton E, Dumasia MC, Teale P.No abstract available
XY sex reversal syndrome in the mare: clinical and behavioral studies, H-Y phenotype.
Human genetics    August 1, 1988   Volume 79, Issue 4 321-328 doi: 10.1007/BF00282169
Kent MG, Shoffner RN, Hunter A, Elliston KO, Schroder W, Tolley E, Wachtel SS.An inherited genetic disorder causes XY embryos of the horse to develop as mares. On the basis of our study of 38 such mares, we have identified four grades or classes of XY sex reversal according to this scheme: class I, nearly normal female, of which some are fertile; class II, female with gonadal dysgenesis, normal mullerian development; class III, intersex mare with gonadal dysgenesis, abnormal mullerian development, enlarged clitoris; class IV, virilized intersex characterized by high levels of testosterone. In general, class I and class II mares were typed H-Y antigen-negative whereas cl...
Control of the estrous cycle in the mare.
The Veterinary clinics of North America. Equine practice    August 1, 1988   Volume 4, Issue 2 177-196 doi: 10.1016/s0749-0739(17)30635-1
Lofstedt RM.All current approaches to manipulating the reproductive biology of the nonpregnant mare are discussed.
Embryonic loss in mares. Incidence, possible causes, and diagnostic considerations.
The Veterinary clinics of North America. Equine practice    August 1, 1988   Volume 4, Issue 2 263-290 doi: 10.1016/s0749-0739(17)30641-7
Ball BA.Fertilization rates were similar for normal and subfertile mares, and much of the difference in fertility between normal and subfertile mares was due to embryonic loss. Fertilization rate estimates for mares ranged from 71 to 96 per cent. The incidence of embryonic loss detected by ultrasonography between Days 11 and 50 was approximately 9 per cent for normal mares, and the estimated incidence of embryonic loss before Day 14 was also 9 per cent. Therefore, the estimated incidence of embryonic loss in normal mares between fertilization and Day 50 is approximately 18 per cent (Fig. 1). In subfer...
The effect of artificial photoperiod at the end of the breeding season on plasma testosterone concentrations in stallions.
Australian veterinary journal    August 1, 1988   Volume 65, Issue 8 239-241 doi: 10.1111/j.1751-0813.1988.tb14308.x
Cox JE, Redhead PH, Jawad NM.Testosterone concentrations in stallions showed a seasonal trend with peak concentrations in the spring (April and May in Britain) and lowest concentrations in the period from December to February. The effect on this pattern of changing the length of the photoperiod at the end of the normal breeding season (mid-summer's day) was studied in 2 experiments. In the first experiment artificial illumination was organised from 21 June to mimic the effect of transfer to a southern hemisphere spring and summer, that is short days becoming longer. The stallions had low concentrations of testosterone in ...
The effects of cortisol, vasopressin (AVP), and corticotropin-releasing factor administration on pulsatile adrenocorticotropin, alpha-melanocyte-stimulating hormone, and AVP secretion in the pituitary venous effluent of the horse.
Endocrinology    August 1, 1988   Volume 123, Issue 2 713-720 doi: 10.1210/endo-123-2-713
Livesey JH, Donald RA, Irvine CH, Redekopp C, Alexander SL.Plasma ACTH, arginine vasopressin (AVP), and alpha MSH were measured in pituitary venous effluent at 5-min intervals from five unanesthetized horses during cortisol infusion and after an iv bolus of AVP or ovine (o) CRF. In control experiments (no hormone) there was a significant overall correlation between the timing of concentration changes in ACTH and alpha MSH. Cortisol infusion increased jugular cortisol levels by 70% and was associated with a reduction in mean ACTH, AVP, and alpha MSH secretion rates and ACTH peak secretion rate, but did not alter the observed pulse frequencies of these ...
Effects of hormone implants on estrus and ovulation in feral mares.
Journal of wildlife diseases    July 1, 1988   Volume 24, Issue 3 507-514 doi: 10.7589/0090-3558-24.3.507
Plotka ED, Eagle TC, Vevea DN, Koller AL, Siniff DB, Tester JR, Seal US.Five groups of 30 captive feral mares each were implanted with silastic rods containing estradiol (E) and/or progesterone (P): E only with 8 g, P only with 24 g, P+HE with 8 g P + 8 g E, HP+E with 12 g P + 4 g E, HP+LE with 12 g P + 2 g E. Arbitrary group designations were differentiated by relative high (H) and low (L) amounts of steroid. Thirty mares received silastic rods containing no hormone (CI). Five mares from each group were bled every 2 wk for 4 mo and monthly for another 5 mo. All mares were tested for estrus by allowing them to stand in an alley between two pens of stallions and vi...
Effects of gonadotrophin-releasing hormone and prostaglandin F-2 alpha on corpus luteum function and timing of the subsequent ovulation in the mare.
Journal of reproduction and fertility    July 1, 1988   Volume 83, Issue 2 545-551 doi: 10.1530/jrf.0.0830545
Johnson AL, Becker SE, Roma ML.Standard bred mares that were cycling normally were treated beginning on Days 9 or 10 of the oestrous cycle with repeated pulses of GnRH (20 micrograms/h) and/or a single injection of prostaglandin (PG)F-2 alpha (alfaprostol, 3 mg), and were subsequently bled and palpated daily until the next ovulation. GnRH treatment increased serum concentrations of LH and progesterone at 4 days after the start of treatment compared to controls. The combination of PGF-2 alpha + GnRH treatment resulted in an immediate decline in serum progesterone values, and subsequently decreased the interval to next ovulat...
Primary structure of equine pituitary prolactin.
International journal of peptide and protein research    June 1, 1988   Volume 31, Issue 6 544-554 doi: 10.1111/j.1399-3011.1988.tb00913.x
Lehrman SR, Lahm HW, Miedel MC, Hulmes JD, Li CH.Equine prolactin was determined to be a single chain protein of 199 amino acid containing two tryptophan and six cysteine residues, as found in other mammalian prolactins. The primary sequence of equine prolactin was obtained by automated Edman analyses of S-carboxymethylated protein and proteolytic fragments of modified protein. Of the known prolactin sequences, equine prolactin shows closest homology with porcine (93%) and fin whale (87-91%) prolactins. Genetic mutations have produced changes in 17 of 199 residues of equine prolactin relative to its putative ancestral precursor. Since equine...
Transition into the breeding season: clues to the mechanisms of seasonality.
Equine veterinary journal    May 1, 1988   Volume 20, Issue 3 159-161 doi: 10.1111/j.2042-3306.1988.tb01488.x
Sharp DC.No abstract available
[The use of Leydig interstitial cells preserved by deep freezing in the testosterone production assay].
Archiv fur experimentelle Veterinarmedizin    May 1, 1988   Volume 42, Issue 3 430-434 
Tiemann U, Falge R, Blödow G, Bergfeld J.No abstract available
Effect of exogenous ovarian steroids on the uterine luminal prostaglandins in ovariectomised mares with experimental endometritis.
Research in veterinary science    May 1, 1988   Volume 44, Issue 3 361-365 
Watson ED, Stokes CR, Bourne FJ.Prostaglandins (PGs) F and E2 were measured in lavage fluid from the uterus of ovariectomised mares after experimental induction of uterine inflammation. Treatment with progesterone alone, or progesterone followed by oestradiol, significantly increased the concentrations of these PGs in the lavage compared with mares treated with oestradiol or control mares. Ovarian steroids, therefore, influenced uterine PG synthesis in response to an inflammatory stimulus. To determine whether the uterine lavage procedure might contribute to the concentrations of prostaglandins in the lavage, the procedure w...
Influences of season and artificial photoperiod on stallions: luteinizing hormone follicle-stimulating hormone and testosterone.
Journal of animal science    May 1, 1988   Volume 66, Issue 5 1246-1255 doi: 10.2527/jas1988.6651246x
Clay CM, Squires EL, Amann RP, Nett TM.Influence of day length on seasonal endocrine responses were studied using stallions (seven per group). Treatments included 1) control, with natural day length; 2) 8 h light and 16 h dark (8:16) for 20 wk beginning July 16, 1982 then 16:8 from December 2, 1982 until March 5, 1984 (S-L); or 3) 8:16 from July 16, 1982 until March 5, 1984 (S-S). Blood was sampled hourly for 5 h every 4 wk; sera were pooled within horse, and luteinizing hormone (LH), follicle-stimulating hormone (FSH) and testosterone were quantified. Blood was collected every 20 min for 24 h every 8 wk and 2 wk before and after t...
Secretion rates and short-term patterns of gonadotrophin-releasing hormone, FSH and LH in the normal stallion in the breeding season.
The Journal of endocrinology    May 1, 1988   Volume 117, Issue 2 197-206 doi: 10.1677/joe.0.1170197
Irvine CH, Alexander SL.Pituitary venous blood was collected by a painless nonsurgical cannulation method from five ambulatory stallions at 5-min intervals for 5-6 h during the breeding season. In four adult stallions, statistical analysis showed that pulses of gonadotrophin-releasing hormone (GnRH) and LH were coincident (P less than 0.01), as were pulses of FSH and LH (P less than 0.05). Furthermore, the patterns of changes in concentration of FSH and LH were highly correlated in each of the four stallions. However, seemingly ineffective pulses of GnRH were also observed, with 28% of GnRH pulses failing to induce a...
Gonadotropin secretion in ovariectomized pony mares treated with dexamethasone or progesterone and subsequently with dihydrotestosterone.
Domestic animal endocrinology    April 1, 1988   Volume 5, Issue 2 149-155 doi: 10.1016/0739-7240(88)90015-x
McNeill-Wiest DR, Thompson DL, Wiest JJ.Twelve long-term ovariectomized (OVX) pony mares were used to determine the effects of dexamethasone (DEX) or progesterone (PR) on concentrations of follicle stimulating hormone (FSH) and luteinizing hormone (LH) in daily blood samples and after administration of gonadotropin releasing hormone (GnRH). All mares were subsequently administered dihydrotestosterone (DHT) to determine if DEX or PR treatment altered the FSH or LH response to this androgen. Daily blood sampling was started on day 1. After a pretreatment injection of GnRH on day 5, four mares were administered DEX at 125 micrograms/kg...
Oxytocin and the composition of milk.
The Journal of nutrition    April 1, 1988   Volume 118, Issue 4 529-530 doi: 10.1093/jn/118.4.529a
Jindal SK.No abstract available
Age-related morphological and functional changes in the Leydig cells of the horse.
Biology of reproduction    April 1, 1988   Volume 38, Issue 3 653-665 doi: 10.1095/biolreprod38.3.653
Almahbobi G, Papadopoulos V, Carreau S, Silberzahn P.Two ultrastructurally distinct types of Leydig cells were observed in the equine testis. Whereas the adult testis exhibited both postpubertal and adult Leydig cells, the testis of the pubertal horse contained only the postpubertal type, and that of the aged horse contained only the adult type. However, Percoll-purified testicular preparations from pubertal, adult, and aged horses all exhibited two distinct Leydig cell populations. The quantitative distribution and the functional characteristics of these Leydig cell populations (ability to bind human chorionic gonadotropin [hCG] and increase of...
Conformational restrictions of the sheep testicular receptor discriminates pituitary lutropin and placental gonadotropins.
The Journal of biological chemistry    March 15, 1988   Volume 263, Issue 8 3706-3712 
Sairam MR, Yarney TA, Bhargavi GN, Sanford LM.A membrane preparation from the testis of maturing Dorset-Leicester-Suffolk sheep, capable of discriminating pituitary LH (lutropin) from placental gonadotropins human choriogonadotropin (hCG) and equine choriogonadotropin is described. Maximum binding of 125I-oLH (ovine lutropin) to the testicular receptors occurred at 4 degrees C in a rapid manner, attaining equilibrium in 12-16 h. Under such optimal conditions, only unlabeled ovine LH or the structurally identical bovine LH effectively competed for receptor occupation. Other highly purified pituitary LH preparations from rat and human pitui...
Effect of isolation stress on concentrations of arginine vasopressin, alpha-melanocyte-stimulating hormone and ACTH in the pituitary venous effluent of the normal horse.
The Journal of endocrinology    March 1, 1988   Volume 116, Issue 3 325-334 doi: 10.1677/joe.0.1160325
Alexander SL, Irvine CH, Livesey JH, Donald RA.A non-surgical, non-stressful technique was used for collection of pituitary venous blood from five conscious horses every minute for two 10-min periods before and during isolation from the herd, which caused a predictable, yet humane and physiological, emotional stress. Pituitary blood was also sampled every 5 min for two approximately 90-min periods before and after isolation, while jugular blood was sampled every 15 min throughout the experiment. During isolation, all horses became agitated, hyperventilating and sweating. Packed red cell volume increased, as did pituitary venous concentrati...
Effect of feeding on renin-angiotensin-aldosterone system of the horse.
The American journal of physiology    March 1, 1988   Volume 254, Issue 3 Pt 2 R524-R530 doi: 10.1152/ajpregu.1988.254.3.R524
Clarke LL, Ganjam VK, Fichtenbaum B, Hatfield D, Garner HE.The effect of feeding frequency and associated meal size on the renin-angiotensin-aldosterone system (RAAS) in seven horses was examined. A daily maintenance ration of hay-grain pellets was provided either as a multiple feeding regimen (MF), in which the ration was divided into six equal portions fed at 4-h intervals, or as a single large feeding (SF) given from 9 A.M. until 11 A.M. Plasma renin activity (PRA), aldosterone (PAC), cortisol (PCC), protein concentration (TP), packed cell volume (PCV), and serum sodium and potassium were measured serially. To prevent significant RAAS stimulation d...
Regional distribution and species variation of prolactin binding sites in the brain.
General and comparative endocrinology    March 1, 1988   Volume 69, Issue 3 399-405 doi: 10.1016/0016-6480(88)90031-7
Muccioli G, Bellussi G, Ghé C, Pagnini G, Di Carlo R.The binding of 125I-labeled ovine prolactin (125I-oPRL) to membranes from different brain regions of pigeon, rabbit, rat, pig, calf, horse, and ewe was studied. The hypothalamus from rabbit, pig, horse, and pigeon showed a low but specific binding for 125I-oPRL clearly different from the other brain regions examined (cortex and cerebellum), whereas in the brain from rat, calf, and ewe the binding was very small and quite uniform in the various regions. Also the membranes from choroid plexus of rabbit, pig, calf, and horse showed an evident specific binding for prolactin. The binding of 125I-oP...
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