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Topic:Dexamethasone

Dexamethasone is a synthetic glucocorticoid commonly used in equine medicine for its anti-inflammatory and immunosuppressive properties. It is employed in the management of various inflammatory and allergic conditions in horses, such as arthritis, respiratory diseases, and skin disorders. Dexamethasone works by inhibiting the release of inflammatory mediators and suppressing immune responses. Its administration can be through oral, intravenous, or intramuscular routes, depending on the specific clinical situation. This page compiles peer-reviewed research studies and scholarly articles that investigate the pharmacokinetics, therapeutic applications, and potential side effects of dexamethasone in equine health.
Quantitative methodology for corticosteroids based on chemical oxidation to electrophilic products for electron capture-negative chemical ionization using capillary gas chromatography-mass spectrometry. I. Assessment of feasibility in the analysis of horse urine for dexamethasone.
Analytical biochemistry    December 1, 1985   Volume 151, Issue 2 292-298 doi: 10.1016/0003-2697(85)90178-2
Her GR, Watson JT.Sensitive and specific methodology based on capillary column gas chromatography-electron capture-negative chemical ionization-mass spectrometry has been developed for the quantitative analysis of corticosteroids from biological fluids. The feasibility of this method is demonstrated in the quantitative analysis of dexamethasone in horse urine following administration of the drug. A structurally similar compound, 6 alpha-methylprednisolone, is added to the urine as an internal standard. The free dexamethasone and the internal standard are extracted and oxidized to high-electron-affinity 1,4-andr...
Effects of multiple intramuscular injections and doses of dexamethasone on plasma cortisol concentrations and adrenal responses to ACTH in horses.
American journal of veterinary research    November 1, 1985   Volume 46, Issue 11 2285-2287 
MacHarg MA, Bottoms GD, Carter GK, Johnson MA.Adrenocortical function was assessed in horses given multiple IM doses of dexamethasone to determine the duration of adrenocortical suppression and insufficiency caused by 2 commonly used dosages of dexamethasone (0.044 and 0.088 mg/kg of body weight). Dexamethasone was administered at 5-day intervals for a total of 6 injections. Daily blood samples were collected. The plasma was frozen and later assayed for cortisol. An ACTH response test was determined 2 days before the first injection of dexamethasone and again 8 days after the last dexamethasone injection. Maximum suppression of plasma cor...
California serogroup virus infection in a horse with encephalitis.
Journal of the American Veterinary Medical Association    February 15, 1985   Volume 186, Issue 4 389 
Lynch JA, Binnington BD, Artsob H.A 4-fold or greater seroconversion to the snowshoe hare serotype of the California serogroup of viruses in a horse with acute encephalitis was demonstrated by hemagglutination-inhibition, complement-fixation, and neutralization tests. The horse had a mild fever, was ataxic, had a head tilt, and was observed to circle. Chloramphenicol, dexamethasone, and B complex vitamins were administered and the horse recovered. The snowshoe hare virus is a recognized human pathogen, but it has not been associated with disease in horses. It is unknown whether horses play a role as amplification hosts for the...
Endotoxin-induced hematologic and blood chemical changes in ponies: effects of flunixin meglumine, dexamethasone, and prednisolone.
American journal of veterinary research    January 1, 1985   Volume 46, Issue 1 24-30 
Ewert KM, Fessler JF, Templeton CB, Bottoms GD, Latshaw HS, Johnson MA.To evaluate the effect of certain drugs on hematologic changes, blood chemical values, and survival in endotoxin shock, anesthetized ponies were given (IV) endotoxin (Escherichia coli O55:B5) and then treated as follows: Group A ponies--given a saline infusion at 5 minutes and at 3 hours after they were given endotoxin; group B ponies--given flunixin meglumine at 5 minutes and at 3, 6, 9, and 24 hours after they were given endotoxin; group C ponies--treated with dexamethasone; and group D ponies--treated with prednisolone at 5 minutes and at 3, 9, and 24 hours after they were given endotoxin. ...
Qualitative detection of corticosteroids in equine biological fluids and the comparison of relative dexamethasone metabolite/dexamethasone concentration in equine urine by micro-liquid chromatography-mass spectrometry.
Journal of chromatography    December 19, 1984   Volume 315 359-372 doi: 10.1016/s0021-9673(01)90753-8
Skrabalak DS, Covey TR, Henion JD.Several important corticosteroids were qualitatively determined in the plasma and urine of horses by micro-liquid chromatography-mass spectrometry (micro-LC-MS). The sensitivity and specificity of micro-LC-MS are demonstrated as is the ability of micro-LC-MS to deal with endogenous interferences. In turn, the relative amount of dexamethasone and its major unconjugated metabolite were determined in equine urine by micro-LC-MS; the conclusions drawn are reported.
Complications associated with the use of the cuffless endotracheal tube in the horse.
Journal of the American Veterinary Medical Association    September 1, 1984   Volume 185, Issue 5 541-542 
Trim CM.Complications following the use of the cuffless large animal endotracheal tube during general anesthesia in 2 horses are reported. One horse developed laryngeal edema during recovery. The edema was treated successfully with dexamethasone, but severe laryngeal trauma was confirmed 24 hours later at necropsy. The second horse had a swollen tongue and had difficulty eating for 3 days after anesthesia. The condition resolved without treatment. this report is a reminder of the potential damage which can occur from endotracheal intubation.
Dexamethasone and prednisolone in the horse: pharmacokinetics and action on the adrenal gland.
American journal of veterinary research    September 1, 1984   Volume 45, Issue 9 1750-1756 
Toutain PL, Brandon RA, de Pomyers H, Alvinerie M, Baggot JD.Pharmacokinetics of dexamethasone and prednisolone were studied in 6 horses given dexamethasone alcohol (IV or IM) or dexamethasone 21-isonicotinate as a solution IV or IM (50 micrograms/kg of body weight), prednisolone 21-sodium succinate IV or IM (0.6 mg/kg of body weight), or prednisolone acetate IM (0.6 mg/kg of body weight). Plasma concentrations were determined using a high-performance liquid chromatographic method. After dexamethasone alcohol (IV) or dexamethasone 21-isonicotinate (IV), the half-life of elimination was similar (53 minutes) for both formulations. After dexamethasone (alc...
[Aspergillus oryzae as a cause of keratomycosis in the horse].
Tierarztliche Praxis    January 1, 1984   Volume 12, Issue 4 489-492 
Marolt J, Naglić T, Hajsig D.A case of a spontaneous mycokeratitis of a previously injured cornea in a horse is described. The infection was caused by Aspergillus oryzae. After application of Chloramphenicol ophthalmic ointment a corneal clouding was found in the centre which was circularly sharply defined and which - after dispensing Dexamethason-Neomycin eye drops - expanded all over to a purulent keratitis. The demarcated and initially non purulent mycotic lesions largely improved after the application of tincture of iodine, whereas the purulent keratitis could be completely cured only by a lasting treatment with Lugol...
Morphologic and biochemical changes in cartilage of foals treated with dexamethasone.
The Cornell veterinarian    April 1, 1983   Volume 73, Issue 2 170-192 
Glade MJ, Krook L, Schryver HF, Hintz HF.Epiphyseal and articular cartilages were examined in pony foals treated with intramuscular injections of either 0.5 mg dexamethasone per 100 kg bodyweight daily for 3, 8 or 11 months, or 5.0 mg per 100 kg for 11 months, and in horse foals treated with 5.0 mg per 100 kg for 20 weeks. The proximal femoral growth plates exhibited increased spatial separation between chondrocyte columns, narrowed zones of disorganized columnar and hypertrophic cartilage, abnormal penetration of hypertrophic cartilage by metaphyseal capillaries, retained cartilage in the spongiosa, distal terminal plate formation, ...
Sodium retention and cortisol (hydrocortisone) suppression caused by dexamethasone and triamcinolone in equids.
American journal of veterinary research    February 1, 1983   Volume 44, Issue 2 280-283 
Slone DE, Purohit RC, Ganjam VK, Lowe JL.Three ponies and 1 horse were bilaterally adrenalectomized (BADX). The initial hypoadrenal episode after BADX was reversed with 20 mg of dexamethasone (DXM) IM (n = 2) or 20 mg of triamcinolone (TMC) IM (n = 2). Nine hypoadrenal crises were reversed with 20 mg of DXM given IM (n = 4) or 20 mg of TMC given IM (n = 5). Sodium and chloride retention and potassium excretion were documented based on changes in serum electrolytes and urinary excretion. Eight intact adult horses were randomly assigned to 2 groups to study the effects of a single IM injection of DXM (0.044 mg/kg of body weight) or TMC...
The use of capillary column gas chromatography and negative ion chemical ionization mass spectrometry to confirm the administration of synthetic corticosteroids to horses.
Biomedical mass spectrometry    November 1, 1982   Volume 9, Issue 11 459-465 doi: 10.1002/bms.1200091102
Houghton E, Teale P, Dumasia MC, Wellby JK.The negative ion chemical ionization mass spectra of the MO-TMS derivatives of the corticosteroids prednisolone, betamethasone and dexamethasone have been obtained using capillary column gas chromatography mass spectrometry. The spectra showed abundant diagnostic ions at m/z greater than 300 allowing for clear discrimination between the three steroid derivatives. A capillary column gas chromatographic mass spectrometric method using negative ion chemical ionization mass spectrometry has been developed to confirm the presence of the parent steroids in horse urine following the administration of...
Dexamethasone metabolism in the horse.
Steroids    March 1, 1982   Volume 39, Issue 3 233-244 doi: 10.1016/0039-128x(82)90144-1
Skrabalak DS, Maylin GA.Dexamethasone and a metabolite, 9-fluoro-16α-methyl-6β, 11β, 16β-trihydroxy-1, 4-androstadiene-3, 17-dione, were detected in the urine of horses injected parenterally with the parent drug. The structure of the metabolite was elucidated by thin-layer chromatography, infrared spectroscopy, mass spectroscopy and nuclear magnetic resonance spectroscopy.
Effects of dexamethasone on endotoxin shock in the anesthetized pony: hematologic, blood gas, and coagulation changes.
American journal of veterinary research    March 1, 1982   Volume 43, Issue 3 405-411 
Frauenfelder HC, Fessler JF, Moore AB, Bottoms GD, Boon GD.The effects of dexamethasone (1 mg/kg of body weight) on hematologic, blood gas, and blood coagulation values in anesthetized ponies during endotoxin-induced shock were evaluated. Fifteen ponies were assigned to 3 groups of 5 ponies each: group 1, anesthetized nontreated and dexamethasone-treated controls; group 2, endotoxin, nontreated; group 3, endotoxin, dexamethasone treated. The hematologic changes in this endotoxin shock model included leukopenia and hemoconcentration. Significant hematologic effects were not seen in ponies after administration of dexamethasone. However, dexamethasone tr...
Glucocorticoid suppression of oestrus, follicles, LH and ovulation in the mare.
Journal of reproduction and fertility. Supplement    January 1, 1982   Volume 32 247-251 
Asa CS, Ginther OJ.Dexamethasone, a synthetic glucocorticoid, was administered (30 mg/day) from Day 10 after ovulation to assess the involvement of the adrenal glands in the ovulatory cycle. Only 1 of 8 mares treated in this way exhibited behavioural oestrus, compared to 7 of 8 control mares. Mean maximum LH concentration and follicle size were significantly reduced. Ovulation occurred in 1 and possibly in 2 other treated mares, compared to all 8 control mares. The results demonstrated that dexamethasone can interfere with ovulation and associated events in the mare, but the mechanism of action is uncertain.
Calcium metabolism in glucocorticoid-treated pony foals.
The Journal of nutrition    January 1, 1982   Volume 112, Issue 1 77-86 doi: 10.1093/jn/112.1.77
Glade MJ, Krook L, Schryver HF, Hintz HF.Pony foals were injected intramuscularly with 0, 0.5, or 5.0 mg dexamethasone per 100 kg body weight daily for up to 11 months. True absorption of dietary calcium was inhibited by treatment at 18 days (57% versus 14% of intake; P less than .01) and 10 months (72% versus 55% versus 43%: P less than .01), but not at 2 or 7 months, and was independent of age and treatment related decreases in intestinal calcium binding protein activities. Uninary excretion of calcium was increased by treatment through 7 months but decreased at 10 months. Treatment for 18 days resulted in total calcium excretions ...
Glucocorticoid-induced inhibition of osteolysis and the development of osteopetrosis, osteonecrosis and osteoporosis.
The Cornell veterinarian    January 1, 1982   Volume 72, Issue 1 76-91 
Glade MJ, Krook L.Changes in the developing femoral epiphysis, especially those concerning the osteocytes, were examined in pony foals systemically treated with daily intramuscular injections of either 0.5 or 5.0 mg of dexamethasone per 100 kg bodyweight for either 3, 8 or 11 months. Midsagittal sections of proximal femur from animals treated for 3 months contained significantly more bone tissue subchondrally and epiphyseally than did sections from untreated ponies. Large portions of the bone tissue appeared necrotic, although osteoblasts and patent capillaries were abundant. After 8 months the bone sections re...
The use of combined high performance liquid chromatography negative ion chemical ionization mass spectrometry to confirm the administration of synthetic corticosteroids to horses.
Biomedical mass spectrometry    November 1, 1981   Volume 8, Issue 11 558-564 doi: 10.1002/bms.1200081107
Houghton E, Dumasia MC, Wellby JK.Negative ion chemical ionization mass spectra of some corticosteroids have been obtained by direct syringe introduction on to the Finnigan moving belt high-performance liquid chromatography-mass spectrometer interface. Proprietary preparations based upon dexamethasone, betamethasone and prednisolone were administered to horses at therapeutic dose level. Urine samples were extracted, the extracts purified by Sephadex LH-20 chromatography and the presence of the parent steroids in the eluates was confirmed by combined high-performance liquid chromatography negative ion chemical ionization mass s...
Combined dexamethasone-suppression cosyntropin-(synthetic ACTH-) stimulation test in the horse: a new approach to testing of adrenal gland function.
American journal of veterinary research    March 1, 1980   Volume 41, Issue 3 430-434 
Eiler H, Oliver J, Goble D.No abstract available
Dexamethasone suppression of sexual behavior in the ovariectomized mare.
Hormones and behavior    March 1, 1980   Volume 14, Issue 1 55-64 doi: 10.1016/0018-506x(80)90015-x
Asa CS, Goldfoot DA, Carcia MC, Ginther OJ.No abstract available
Experimentally induced toxicoinfectious botulism in horses and foals.
American journal of veterinary research    March 1, 1980   Volume 41, Issue 3 348-350 
Swerczek TW.Four experiments were performed to elucidate the pathogenesis of toxicoinfectious botulism in horses and foals. Groups of horses and foals were inoculated with one of the following: (1) crude toxin of Clostridium botulinum, type B, given IV, (2) C botulinum spores, given IM, (3) C botulinum spores, given IM, in necrotic lesions, and (4) C botulinum spores, given orally with and without dexamethasone. Toxin of C botulinum in minute amounts is toxic to horses. Clostridium botulinum spores produced toxicosis only when necrotic lesions were present. When C botulinum spores were given orally, they ...
Adrenal gland function in the horse: effect of dexamethasone on hydrocortisone secretion and blood cellularity and plasma electrolyte concentrations.
American journal of veterinary research    May 1, 1979   Volume 40, Issue 5 727-729 
Eiler H, Oliver J, Goble D.No abstract available
A critical review of current methods for induction of parturition in the mare.
Equine veterinary journal    October 1, 1977   Volume 9, Issue 4 208-215 doi: 10.1111/j.2042-3306.1977.tb04033.x
Jeffcott LB, Rossdale PD.The efficacy and safety of oxytocin, dexamethasone and prostaglandin, used alone or in combination as inducing agents, are discussed. It is contended that insufficient evidence exists to support the routine application of any of these methods in practice. Oxytocin has been the most widely used and it is claimed by some to be free from side effects. However, the synthetic prostaglandin analogue, fluprostenol, seems to pose the least risk to the foetus and dexamethasone appears to be either ineffective, or too dangerous to use at all. The main indications for induced foaling are managerial conve...
Dexamethasone–induced parturition in pony mares.
Journal of animal science    June 1, 1977   Volume 44, Issue 6 1072-1075 doi: 10.2527/jas1977.4461072x
First NL, Alm CC.No abstract available
The urinary excretion and metabolism of dexamethasone in the horse.
Biochemical Society transactions    January 1, 1976   Volume 4, Issue 1 119-121 doi: 10.1042/bst0040119
Dumasia MC, Horner MW, Houghton E, Moss MS.No abstract available
Recrudescence of equine infectious anemia by treatment with immunosuppressive drugs.
National Institute of Animal Health quarterly    January 1, 1976   Volume 16, Issue 1 8-15 
Kono Y, Hirasawa K, Fukunaga Y, Taniguchi T.Horses which had passed a few months to a few years asymptomatically after the last recurrence of equine infectious anemia (EIA) showed a typical febrile response after treatment with the immunosuppressive agent, dexamethasone (DM) or cyclophosphamide (CY). In horses showing a febrile response, EIA virus which had not been neutralized by neutralizing antibody previously produced was propagated. In DM-treated horses it disappeared from the blood soon after pyretolysis and antibody against the virus was produced promptly. In contrast, detectable viremia persisted in CY-treated horses for 10 to 8...
The effect of a corticosteroid (dexamethasone), progesterone, oestrogen and prostaglandin F2alpha on gestation length in normal and ovariectomized mares.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 637-640 
Alm CC, Sullivan JJ, First NL.Dexamethasone (100 mg/day) injected from Days 318 to 324 of pregnancy induced parturition. Progesterone (500 mg/day) administered daily from Day 318 of pregnancy also shortened gestation while oestrogen (50 mg/day) administered on the same schedule as progesterone had no such effect. Dexamethasone treatment superimposed on the oestrogen or progesterone treatments shortened gestation. Prostaglandin F2alpha alone did not induce parturition, unlike PGF2alpha with dexamethasone, or PGF2alpha given to ovariectomized mares.
Induction of premature parturition by parenteral administration of dexamethasone in the mare.
Journal of the American Veterinary Medical Association    October 15, 1974   Volume 165, Issue 8 721-722 
Alm CC, Sullivan JJ, First NL.No abstract available
Clinical safety of dexamethasone in mares during pregnancy.
Equine veterinary journal    April 1, 1973   Volume 5, Issue 2 91-93 doi: 10.1111/j.2042-3306.1973.tb03201.x
Burns SJ.No abstract available
[Sensitization studies using dexamethasone and carboxymethylcellulose in the horse].
Schweizer Archiv fur Tierheilkunde    September 1, 1972   Volume 114, Issue 9 439-449 
Straub R, Lazary S, Gerber H, De Weck AL, Schatzmann U, Pauli B.No abstract available
Failure to induce parturition in pony mares with dexamethasone.
Journal of the American Veterinary Medical Association    February 1, 1972   Volume 160, Issue 3 321-322 
Drost M.No abstract available