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Topic:Endocrine System

The endocrine system in horses comprises a network of glands and hormones that regulate various physiological processes, including metabolism, growth, reproduction, and stress response. Key components of the equine endocrine system include the pituitary gland, thyroid gland, adrenal glands, and pancreas. Hormones such as insulin, cortisol, and thyroid hormones are produced and released into the bloodstream to maintain homeostasis and respond to internal and external stimuli. Dysregulation of the endocrine system can lead to conditions such as Equine Cushing's Disease (Pituitary Pars Intermedia Dysfunction) and Equine Metabolic Syndrome. This page compiles peer-reviewed research studies and scholarly articles that explore the structure, function, and disorders of the endocrine system in horses, providing insights into its impact on equine health and management.
Pregnant mare’s serum gonadotrophin. I. Progesterone or prolactin and the reversal of antifertility efficacy of pregnant mare’s serum gonadotrophin.
Acta endocrinologica    November 1, 1976   Volume 83, Issue 3 506-511 
Pal AK, Gupta T, Chatterjee A.A single consistent luteolytic dose of 10 IU PMSG given on day 5 of pregnancy caused complete resorption of foetuses and placentae associated with a polyfollicular ovarian state in rats. Concomitant treatment with progesterone or prolactin given concurrently with PMSG was found to overcome the antifertility efficacy of PMSG and maintained the endocrine balance favouring pregnancy maintenance. It was postulated that the PMSG-induced ovarian polyfolliculogenesis might be responsible for luteolysis of the corpus luteum gravidarum.
Application of radioimmunoassay for testosterone to routine testing.
British journal of sports medicine    October 1, 1976   Volume 10, Issue 3 155-157 doi: 10.1136/bjsm.10.3.155
Boudene C, Jouany JM, Belegaud J, Despaux N.No abstract available
Effect of luteinizing hormone on the pattern of steroid production by preovulatory follicles of pregnant mare’s serum gonadotropin-injected immature rats.
Endocrinology    October 1, 1976   Volume 99, Issue 4 996-1002 doi: 10.1210/endo-99-4-996
Hillensjö T, Bauminger S, Ahrén K.Preovulatory follicles were explanted on the day before ovulation from immature rats given a single injection of Pregnant Mare's Serum gonadotropin (PMS) 2 days earlier. The follicles were incubated for 4 h in modified Krebs bicarbonate buffer containing glucose and albumin in absence or presence of ovine luteinizing hormone (NIH-LH-S18; 0.1-10 mug/ml). The accumulation of progresterone, androstenedione and 17beta-estradiol in the medium was determined by radioimmunoassay. As in indicator of LH exposure the meiotic stage of the follicle-enclosed oocyte was determined at recovery by interferenc...
Effect of temperature and pregnant mare’s serum gonadotropin on testicular function in the spiny-tailed lizard, Uromastix hardwicki.
General and comparative endocrinology    October 1, 1976   Volume 30, Issue 2 162-170 doi: 10.1016/0016-6480(76)90095-2
Jalali S, Arslan M, Qureshi S, Qazi MH.No abstract available
Insulin-, glucagon-, and somatostatin-immunoreactive endocrine cells in the equine pancreas.
Cell and tissue research    September 29, 1976   Volume 172, Issue 4 447-454 doi: 10.1007/BF00220331
Helmstaedter V, Feurle GE, Forssmann WG.Equine pancreas was investigated with immunohistochemical methods to study the distribution of endocrine cells immunoreactive to anti-insulin, anti-glucagon, and anti-somatostatin. A-cells demonstrable by anti-glucagon are located in the center of Langerhans islets and frequently in the duct epithelium. Few A-cells are seen associated to acini. Anti-insulin reactive B-cells form a large zone around the center of the Langerhans islets in which some B-cells lie between exocrine cells and others, although few, are located in the duct epithelium. D-cells stained with anti-somatostatin serum form a...
Intrauterine use of prostagladin F2 alpha in mares.
The Veterinary record    September 11, 1976   Volume 99, Issue 11 212-213 doi: 10.1136/vr.99.11.212
Bowen JM.No abstract available
Effects of environmental and other stressors on blood hormone patterns in lactating animals.
Journal of dairy science    September 1, 1976   Volume 59, Issue 9 1603-1617 doi: 10.3168/jds.S0022-0302(76)84413-X
Johnson HD, Vanjonack WJ.Recent data on various environmental stressors and blood hormone patterns are presented for lactating cattle. Known stressor effects of such factors as environmental temperature, air pollution, and noise on the plasma thyroxine, growth hormone, cortisol, prolactin, progesterone, luteinzing hormone, epinephrine, and norepinephrine of lactating cattle are discussed. Information on stressor effects is lacking on glucagon, insulin, vasopressin, calcitonin, oxytocin, thyrotrophic hormone, follicle stimulating hormone, melatonin, parathyroid hormone, and estrogens in the lactating cow. The importanc...
Diurnal variation of plasma testosterone in wild stallions.
Biology of reproduction    August 1, 1976   Volume 15, Issue 1 98-101 doi: 10.1095/biolreprod15.1.98
Kirkpatrick JF, Vail R, Devous S, Schwend S, Baker CB, Wiesner L.No abstract available
Levels of luteinizing hormone and progesterone during the estrous cycle and early pregnancy in mares.
Biology of reproduction    May 11, 1976   Volume 14, Issue 4 412-415 doi: 10.1095/biolreprod14.4.412
Nett TM, Pickett BW, Seidel GE, Voss JL.Jugular venous blood was collected from 16 mares at daily intervals throughout the estrous cycle. Twelve of these mares were bred to fertile stallions. Of the twelve, four were palpated daily throughout the estrous cycle, four were palpated daily during estrus and four were not palpated. The remaining four mares were not palpated or bred and blood samples were collected at 6-h intervals during estrus. Serum was harvested from all blood samples by centrifugation. The serum samples were analyzed for luteinizing hormone (LH) and/or progesterone by radioimmunoassay. Levels of LH in serum increased...
Effects of ovariectomy and season on plasma luteinizing hormone in mares.
Endocrinology    April 1, 1976   Volume 98, Issue 4 958-962 doi: 10.1210/endo-98-4-958
Garcia MC, Ginther OJ.Six pony mares were ovariectomized (OVX) on day 16 of diestrus during June and July, 1972, to study short term changes in plasma luteinizing hormone (LH) concentrations. Plasma LH was higher (P less than .05) 3 days after OVX (1.76 ng/ml) than the day after OVX (1.01 ng/ml), and a gradual increase occurred over the first 2 weeks. Elevated plasma LH concentrations similar to mid-estrus levels were present from the 2nd to 11th week post-OVX. In another experiment, the same 6 OVX mares were bled once a month from February, 1973, to January, 1974, to study long-term changes in plasma LH in relatio...
The ultrastructure of the cell types in the endocrine pancreas of the horse.
Cell and tissue research    March 16, 1976   Volume 167, Issue 2 179-195 doi: 10.1007/BF00224326
Forssmann A.The islets of Langerhans of the equine pancreas were examined with the electron microscope after immersion or perfusion fixation. Five cell types could be distinguished after fixation by either technique: 1. A-cells, situated at the center of the islets, 2. B-cells, containing mostly "pale granules" and constituting the principal cell type of the periphery of the islets, 3. D-cells, also located mainly at the periphery of the islets, 4. G-cells, found at the edge of the islets and in the exocrine pancreas, and 5. S-cells, (small granule cells), which are relatively few in number and occur only...
Some assay restrictions on inferences made from determining hormones in horses, cows, and their fetuses.
Journal of toxicology and environmental health    March 1, 1976   Volume 1, Issue 4 669-679 doi: 10.1080/15287397609529365
Hafs HD.Often in developing hormone assays, hormones that may interfere with the assay by cross-reaction are not available for testing the validity of the assay. For example, horse TSH was unavailable to test for cross-reaction in an LH radioimmunoassay (RIA). The authors devised an indirect means of accomplishing the same goal, and the evidence from the indirect test of cross-reaction was at least as persuasive as a direct test might have been. Other examples are given of experiments where extensive effort was devoted to validation of steroid RIA, but there were substantial quantitative differences i...
Studies on metabolism and effects of estrogen on pituitary prolactin and LH secretion.
Journal of toxicology and environmental health    March 1, 1976   Volume 1, Issue 4 641-655 doi: 10.1080/15287397609529363
Chen CL, Pattison ML, Engleking LR, Gronwall RR.The effect of a subcutaneous injection of estradiol on the secretion of pituitary prolactin in the rat and the relationship between serum estradiol level and luteinizing hormone (LH) secretion in mare were reviewed. In addition, the effect of estradiol injection on LH secretion and the metabolism of [14C] estradiol in intact and bile duct fistulated pony mares were studied. Low (0.1 mug/day/rat) to moderate dose (5 mug/day/rat) of estradiol benzoate injected subcutaneously to mature or immature rats significantly increased pituitary content of prolactin and serum prolactin level five- to tenfo...
Hormonal pattern in the blood of eight mares during the first weeks of pregnancy.
Tijdschrift voor diergeneeskunde    January 15, 1976   Volume 101, Issue 2 83-89 
Nitschelm D, Van der Horst CJ.The hormonal pattern in the blood of eight mares was studied during the first 5 to 6 weeks of pregnancy; in two of the eight animals early embryonic death was established on D-28 and on D-40, respectively. Progesterone peaks were found in the blood around D-5, D-12 to D-10, and D-17 to D-18. It is suggested that the decrease of the progesterone concentrations in the blood during the intermediate periods is due to the action of oestrogens. During the period from D-18 to about D-34 the concentrations both of progesterone and of pregnenolone were low in the pregnant mares. Thereafter a small incr...
Endogenous anabolic agents in farm animals.
Environmental quality and safety. Supplement    January 1, 1976   Issue 5 159-170 
Velle W.This presentation is limited to the three groups of steroid sex hormones which alone or in combination have been shown to be anabolic when used in farm animals. It seems essential for realistic evaluation of public health aspects of use of these hormones that the discussions include naturally occurring levels of the hormones. The following topics will be dealt with for each group of hormones: 1. Types and sources; 2. Production rates; 3. Plasma levels; 4. Tissue concentrations; 5. Metabolism and excretion. Gestagens. Progesterone and 20-dihydroprogesterones are mainly produced in ovaries and p...
Luteolysis with prostaglandin F2alpha or an antiserum against an equine pituitary fraction in hysterectomized mares.
American journal of veterinary research    December 1, 1975   Volume 36, Issue 12 1793-1795 
Douglas RH, Garcia MC, Ginther OJ.Luteolysis, determined by corpus luteum weight and progesterone concentration in jugular blood, occurred in uterine-intact and in hysterectomized mares after injection of prostaglandin F2alpha or of an antiserum against an equine pituitary fraction. Results indicated that luteolytic effects of exogenous prostaglandin F2alpha and inhibition of the endogenous luteotrophic activity of the hypophysis (pituitary gland) by antiserum did not involve the uterus.
[Activity of serum gonadotropins in pregnant zebras and mares].
Journal of the South African Veterinary Association    December 1, 1975   Volume 46, Issue 4 367-368 
Grosskopf JF, Smuts EG.Blood was collected from 28 zebra mare (Equus burchellia antiquorum) immediately after being shot in the Kruger National Park. The serum was separated within two hours after collection and then stored at -15 degrees C for later assay. Of these, thirteen selected samples were tested for gonadotrophic activity. The stage of pregnancy was determined from a foetal growth curve. Blood samples from pregnant horse mares were collected by venipuncture. Nine mares were sampled. Seven blood samples at different stages of pregnancy were collected from one mare, four from another and only one sample each ...
Plasma luteinizing hormone concentration in mares treated with gondotropin-releasing hormone and estradiol.
American journal of veterinary research    November 1, 1975   Volume 36, Issue 11 1581-1584 
Garcia MC, Ginther OJ.Three experiments were performed to study the luteinizing hormone (LH) and ovulatory responses to various doses and methods of administration of gonadotropin-releasing hormone (GnRH) in estrous pony mares and the influence of estradiol-17beta (E2-17beta) on LH response to GnRH treatment. In experiment 1, single injections of synthetic GnRH were subcutaneously given to 5 groups of estrous (day 2) mares (3 mares/group) on a body weight basis as follows: group A--isotonic saline solution; group B--GnRH, 0.14 mug/kg; group C--GnRH, 0.28 mug/kg; group D--KGnRH, 0.59 mug/kg; and group E--GnRH, 2.37 ...
Some aspects of the reproductive endocrinology of the stallion and cryptorchid.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 75-79 
Cox JE, Williams JH.No abstract available
Androgens and oestrogens in normal and cryptorchid stallions.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 67-73 
Ganjam VK, Kenney RM.Total androgens, testosterone and total oestrogens were measured in twenty-one intact, nine unilaterally cryptorchid, three bilaterally cryptorchid stallions and four geldings. Total oestrogens were significantly higher (P less than 0-005) and total androgens significantly lower (P less than 0-05) in the bilateral cryptorchid compared to other groups. There was a significant (P less than 0-025) day and night variation in total androgen levels. Thyroidectomized and intact animals showed a marked decrease in total androgen as well as testosterone levels during the winter period thus showing an e...
Oestrogens, LH, PMSG, and prolactin in serum of pregnant mares.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 457-462 
Nett TM, Holtan DW, Estergreen VL.Levels of oestrone, equilin and equilenin (E1), oestradiol (E2) LH, PMSG and prolactin were measured by radioimmunoassay in serum from pregnant mares. Levels of E1 were always greater than those of E2. Both E1 and E2 remained at low levels until Day 80, increased significantly (P less than 0-05) by Day 120 to reach peak levels at Day 210 or 240 and then declined until parturition. Maximum levels of oestrogens observed in this study were 828 +/- 151 pg/ml for E1 and 71 +/- 18 pg/ml for E2 at Days 210 and 240 respectively. Spikes of LH release were observed in early pregnancy in most mares. Leve...
Duration of oestrus and time of ovulation in mares treated with synthetic Gn-RH (AY-24,031).
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 279-283 
Irvine DS, Downey BR, Parker WG, Sullivan JJ.Synthetic Gn-RH, administered during oestrus, stimulates the release of pituitary LH in the cyclic mare. Duration of oestrus was significantly reduced by 1 mg Gn-RH given on Day 2 of oestrus; the time of ovulation, measured in days from the onset of oestrus, also tended to be reduced. An injection of 2 mg Gn-RH had nor further effect, but daily injections from Day 2 until ovulation significantly shortened the duration of oestrus and the time to ovulation. The profiles of LH were found to be variable from mare to mare, but in all mares, treated and control, elevation of LH was detected close to...
Effect of exogenous progesterone on its endogenous levels: biological half-life of progesterone and lack of progesterone binding in mares.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 183-188 
Ganjam VK, Kenney RM, Flickinger G.The disappearance rate of progesterone from blood plasma of an ovariectomized mare was rapid and occurred in three phases. The half-life of the first component was 2-5 min and that of the second was 20 min; the half-life of the much slower third component was not measured. Progesterone, administered to ovariectomized and deeply anoestrous mares at the rate of 150 or 300 mg/day, maintained maximal peripheral levels of 6 to 8 ng/ml. Physiological levels were reached in 21 days using a dose of 150 mg and in 11 days with 300 mg daily. After withdrawal, circulating levels dropped rapidly. Blood pla...
Selected pathological changes of the mare uterus and ovary.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 335-339 
Kenney RM, Ganjam VK.Focal enlargements of the uterus are palpable through the rectal wall and have various aetiology. Aspects of their diagnosis, possible pathogenesis, significance and treatment are presented. Lymphatic lacunae appear to be quite common in older mares and may occasionally give rise to large endometrial cyst, but more frequently cause widespread change throughout the uterine horns. Three unusual ovarian abnormalities are presented, a large, oestrogen-producing granulosa cell tumour, an oestrogen-producing large follicle in a 4-month-old filly, and an ectopic progesterone-producing adrenal structu...
Fine structure of the gonads of the horse and its functional implications.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 563-567 
González-Angulo A, Hernández-Jáuregui P, Martínez-Zedilo G.Light and electron microscopic studies of the gonads of the fetal horse have shown that, in their hypertrophic condition which begins during the 3rd month, the interstitial cells contain large amounts of smooth endoplasmic reticulum, suggesting a secretory activity. Hydroxylating activity which was cytochrome P-450-dependent was observed in the fetal testis and may be involved in steroid biosynthesis.
Endocrine patterns of the mare at term.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 449-456 
Lovell JD, Stabenfeldt GH, Hughes JP, Evans JW.The levels of progesterone and total progestins increased during late pregnancy and then fell dramatically during the last few days before parturition, although birth occurred in the presence of significant amounts of plasma progesterone. Oestrogen levels decreased slowly but insignificantly until birth occurred, and then remained at a low level until the post-partum oestrus 10 to 12 days later. Total 11beta-hydroxycorticosteroids were unchanged from Day 45 before to Day 15 after birth. The endocrine pattern of one ovariectomized pregnant mare during the last month of gestation was similar to ...
Plasma progestagens in the pregnant mare in the first and last 90 days of gestation.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 435-439 
Burns SJ, Fleeger JL.Plasma progestagens were measured in eighteen pregnant mares to establish normal levels in the first and last 90 days of gestation. Progestagens increased from 25 ng/ml at 90 days before birth to 60 ng/ml at 10 days before birth, decreased to 58 ng/ml at 5 days before, and were 3 ng/ml or less by 5 days after perturition. During the first 90 days of pregnancy, progestagens reflected luteal activity with an increase in plasma levels from Day 30 to Day 60.
Development of pituitary and adrenal glands in the fetal horse.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 553-556 
Samuel CA, Allen WR, Steven DH.The various cell types in the adult anterior pituitary may be distinguished at the ultrastructural level of the sizes of the secretory granules within the cytoplasm. In the fetal adenohypophysis, with the exception of prolactin-producing cells, all types may be identified after Day 100 of gestation. Morphological evidence suggests that they are producing and secreting trophic hormones. The three constituent layers of the adrenal cortex are also discernible by Day 100 of pregnancy. The cells of the zona glomerulosa have large numbers of darkly stained inclusions within the cytoplasm. The zona f...
Levels of LH, prolactin and oestrogens in the serum of post-partum mares.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 201-206 
Nett TM, Holtan DW, Estergreen VL.The levels of LH, prolactin and oestrogen were measured by radioimmunoassay in serum obtained from six mares during the post-partum period, and LH was also assayed in blood samples collected at 6-hr intervals from four normal cyclic mares during oestrus and at daily intervals during dioestrus. The concentrations of oestrogen and LH suggested that the mares were having ovulatory cycles during the post-partum period irrespective of behavioural oestrus, and the levels of prolactin seemed to rise in association with probable ovulatory LH peaks. In these mares levels of LH had increased significant...
Plasma LH levels in the mare during the oestrous cycle.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 207-212 
Geschwind II, Dewey R, Hughes JP, Evans JW, Stabenfeldt GH.Plasma levels of LH were determined by heterologous radioimmunoassay utilizing highly purified equine LH as standard. Samples were taken regularly from eleven mares for twenty-six oestrous cycles over a period of 10 weeks. The mean cycle length was 20-5 +/- 3-1 (S.D.) days, and ovulation occurred on average 4-3 +/- 1-6 (S.D.) days from the time heat was first detected. Levels of LH were persistently low from Days 5 to 16 of the cycle (ovulation = Day 0). They then increased slowly over a number of days and continued to rise beyond the levels observed at any time during the immediate preovulato...
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