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Topic:Thyroxine (T4)

Thyroxine (T4) is a hormone produced by the thyroid gland in horses, playing a role in regulating metabolism and energy balance. It is involved in various physiological processes, including growth, development, and thermoregulation. The measurement of thyroxine levels can provide insights into thyroid function and overall metabolic health in horses. Abnormal T4 levels may indicate thyroid dysfunction or other health conditions. This page compiles peer-reviewed research studies and scholarly articles that explore the production, regulation, and clinical implications of thyroxine in equine health.
Osteochondrosis dissecans (OCD) in horses: hormonal and biochemical study (19 cases).
Veterinary research forum : an international quarterly journal    September 15, 2021   Volume 12, Issue 3 325-331 doi: 10.30466/vrf.2020.104046.2495
Ahmadi F, Mirshahi A, Mohri M, Sardari K, Sharifi K.To investigate the hormonal and biochemical profiles of horses with osteochondrosis dissecans (OCD), serum insulin, cortisol, triiodothyronine, thyroxine, fasting blood glucose (FBG), cholesterol, triglyceride (TG), high- and low-density lipoproteins, albumin and uric acid were measured in horses definitely diagnosed with OCD (n=19) as well as clinically normal horses (n=18). Proxies representing insulin sensitivity [reciprocal of square root of insulin concentration (RISQI)] and beta cell responsiveness [modified insulin to glucose ratio (MIRG)] were calculated. Body fat percent (BF%) was est...
Seasonal variation in serum concentrations of selected metabolic hormones in horses.
Journal of veterinary internal medicine    April 2, 2010   Volume 24, Issue 3 650-654 doi: 10.1111/j.1939-1676.2010.0500.x
Place NJ, McGowan CM, Lamb SV, Schanbacher BJ, McGowan T, Walsh DM.Determination of adrenocorticotropic hormone (ACTH) concentration is a commonly used test in the evaluation of endocrine causes of equine laminitis, but the concentration in healthy horses can be high at certain times of year, which alters the specificity of the ACTH test. Objective: To determine if circulating concentrations of ACTH, cortisol, glucose, insulin, and thyroxine vary month to month in healthy horses and in horses with equine metabolic syndrome (EMS). Methods: Nine healthy adult horses were studied on their farm/stable over the course of 1 year. After the diagnosis of EMS, 10 lami...
Obesity is associated with altered metabolic and reproductive activity in the mare: effects of metformin on insulin sensitivity and reproductive cyclicity.
Reproduction, fertility, and development    August 26, 2006   Volume 18, Issue 6 609-617 doi: 10.1071/rd06016
Vick MM, Sessions DR, Murphy BA, Kennedy EL, Reedy SE, Fitzgerald BP.In mares, obesity is associated with continuous reproductive activity during the non-breeding season. To investigate the effect of obesity and associated alterations in metabolic parameters on the oestrous cycle, two related studies were conducted. In Experiment 1, obese (body condition score > 7) mares were fed ad libitum or were moderately feed restricted during the late summer and autumn months. Feed restriction did not alter the proportion of mares entering seasonal anoestrus. However, obese mares exhibited a significantly longer duration of the oestrous cycle, significant increases in ...
Effects of oral administration of levothyroxine sodium on serum concentrations of thyroid gland hormones and responses to injections of thyrotropin-releasing hormone in healthy adult mares.
American journal of veterinary research    July 13, 2005   Volume 66, Issue 6 1025-1031 doi: 10.2460/ajvr.2005.66.1025
Sommardahl CS, Frank N, Elliott SB, Webb LL, Refsal KR, Denhart JW, Thompson DL.To determine the effects of levothyroxine sodium (L-T4) on serum concentrations of thyroid gland hormones and responses to injections of thyrotropin-releasing hormone (TRH) in euthyroid horses. Methods: 12 healthy adult mares. Methods: 8 horses received an incrementally increasing dosage of L-T4 (24, 48, 72, or 96 mg of L-T4/d) for weeks 1 to 8. Each dose was provided for 2 weeks. Four additional horses remained untreated. Serum concentrations of total triiodothyronine (tT3), total thyroxine (tT4), free T3 (fT3), free T4 (fT4), and thyroid-stimulating hormone (TSH) were measured in samples obt...
Effects of dexamethasone, glucose infusion, adrenocorticotropin, and propylthiouracil on plasma leptin concentrations in horses.
Domestic animal endocrinology    November 27, 2002   Volume 24, Issue 1 1-14 doi: 10.1016/s0739-7240(02)00183-2
Cartmill JA, Thompson DL, Gentry LR, Pruett HE, Johnson CA.In experiment 1, nine light horse geldings (three 3 x 3 Latin squares) received dexamethasone (DEX; 125 microg/kg BW, i.m.), glucose (0.2 g/kg BW, i.v.), or nothing (control) once per day for 4 days. DEX increased (P < 0.001) glucose, insulin, and leptin concentrations and resulted in a delayed increase (P < 0.001) in IGF-I concentrations. In experiment 2, mares were similarly treated with DEX (n = 6) or vehicle (n = 6). DEX again increased (P < 0.01) glucose, insulin, and leptin concentrations; the delayed elevation in IGF-I concentrations occurred on day 10, 12, and 19, relative to ...
Effect of exercise on erythrocyte beta-adrenergic receptors and plasma concentrations of catecholamines and thyroid hormones in Thoroughbred horses.
Equine veterinary journal    February 12, 1998   Volume 30, Issue 1 72-78 doi: 10.1111/j.2042-3306.1998.tb04091.x
González O, González E, Sánchez C, Pinto J, González I, Enríquez O, Martínez R, Filgueira G, White A.The effects of exercise stress on erythrocyte beta-adrenergic receptor characteristics and plasma concentrations of adrenaline, noradrenaline and thyroid hormones were studied in Thoroughbred racehorses during rest and after exercise. Five minutes after a maximal speed race of 1200 +/- 200 m (mean +/- s.d.), both plasma adrenaline and noradrenaline concentrations increased with respect to basal values (from 2.48 +/- 0.15 to 3.83 +/- 0.27 and from 2.13 +/- 0.11 to 3.53 +/- 0.27 nmol/l respectively). The increment of adrenaline was greater in high performance (HP) as compared to low performance ...
Acute effects of short-term feed deprivation and refeeding on circulating concentrations of metabolites, insulin-like growth factor I, insulin-like growth factor binding proteins, somatotropin, and thyroid hormones in adult geldings.
Journal of animal science    May 1, 1997   Volume 75, Issue 5 1351-1358 doi: 10.2527/1997.7551351x
Christensen RA, Malinowski K, Massenzio AM, Hafs HD, Scanes CG.Two studies were performed with Standardbred geldings 7 to 21 yr of age to determine the sequence of changes in blood plasma concentrations of some hormones and metabolites during feed deprivation for 48 h and for 12 h after refeeding. Plasma hormone and metabolite concentrations were determined with methods validated for horse plasma. Insulin-like growth factor binding proteins (IGFBP) were determined with radioligand analysis following SDS-PAGE electrophoresis. In both experiments, plasma concentrations of triiodothyronine and thyroxine decreased (P < .01) during feed deprivation and incr...
Feed deprivation of mares: plasma metabolite and hormonal concentrations and responses to exercise.
Journal of animal science    December 1, 1995   Volume 73, Issue 12 3696-3704 doi: 10.2527/1995.73123696x
Sticker LS, Thompson DL, Bunting LD, Fernandez JM, DePew CL, Nadal MR.Twelve light horse mares were fed a control diet that provided 100% of their maintenance protein and energy requirements for 7 d and were then either continued on the control diet or totally deprived of feed (with access to water) for 3 d . Plasma samples were drawn twice daily throughout the experiment, at 15-min intervals for 9 h beginning 45 h after feed removal, and at 10-min intervals around an exercise bout beginning 73 h after feed removal. Feed deprivation increased (P < or = .06) whole blood beta-hydroxybutyrate and plasma NEFA, urea N, L-lactate, and glucagon concentrations, decrease...
Effect of dexamethasone administration on serum thyroid hormone concentrations in clinically normal horses.
Journal of the American Veterinary Medical Association    January 1, 1995   Volume 206, Issue 1 63-66 
Messer NT, Ganjam VK, Nachreiner RF, Krause GF.The effect that 5 consecutive days of treatment with dexamethasone (0.04 mg/kg of body weight, IM, q 24 h) would have on baseline concentrations of triiodothyronine (T3), thyroxine (T4), reverse T3 (rT3), free T3 (FT3), and free T4 (FT4), and on response to thyroid-stimulating hormone (TSH) administration was determined in 12 clinically normal horses. Results of TSH response tests indicated that the horses could be placed into 2 groups: in 6 horses (group A), T4 concentration after administration of TSH was more than twice the baseline concentration; in the other 6 horses (group B), T4 concent...
Serum triiodothyronine, total thyroxine, and free thyroxine concentrations in horses.
American journal of veterinary research    January 1, 1993   Volume 54, Issue 1 52-55 
Sojka JE, Johnson MA, Bottoms GD.The objectives of this experiment were to determine serum concentrations of triiodothyronine (T3), thyroxine (T4), and free thyroxine (fT4) at rest, following thyroid-stimulating hormone (TSH) administration, and following phenylbutazone administration in healthy horses. This was done to determine which available laboratory test can best be used for diagnosis of hypothyroid conditions in horses. Serum T3, T4, and fT4 concentrations in serum samples obtained before and after TSH stimulation and following phenylbutazone administration for 7 days were determined. Baseline values ranged from 0.21 ...
Effects of hemolysis and storage on quantification of hormones in blood samples from dogs, cattle, and horses.
American journal of veterinary research    July 1, 1991   Volume 52, Issue 7 1075-1080 
Reimers TJ, Lamb SV, Bartlett SA, Matamoros RA, Cowan RG, Engle JS.Veterinary diagnostic endocrinology laboratories frequently receive hemolyzed plasma, serum, or blood samples for hormone analyses. However, except for the previously reported harm done by hemolysis to canine insulin, effects of hemolysis on quantification of other clinically important hormones are unknown. Therefore, these studies were designed to evaluate effects of hemolysis on radioimmunoassay of thyroxine, 3,5,3'-triiodothyronine, progesterone, testosterone, estradiol, cortisol, and insulin in equine, bovine, and canine plasma. In the first experiment, hormones were measured in plasma obt...
Thyrotropin stimulation test–new perspective on value of monitoring triiodothyronine.
Journal of the American Veterinary Medical Association    November 1, 1985   Volume 187, Issue 9 931-934 
Oliver JW, Held JP.Thyrotropin (thyroid stimulating hormone; TSH) stimulus to thyroid cells of horses and dogs resulted in increased serum triiodothyronine (T3) concentrations that were detected earlier than those of thyroxine (T4). Doubling of the base-line T3 values in horses was detected 0.5 hours after injection of 5 IU of TSH IV, with peak response of 5 times base-line value detected 2 hours after injection. Doubling of T4 values in horses was noticed between 2 and 3 hours, with the peak response of 2.4 times base-line value at 4 hours after injection of TSH. Doubling of base-line T3 values in dogs in respo...
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...