Analyze Diet

Topic:Metabolites

Metabolites are small molecules involved in the metabolic processes within a horse's body. They are the intermediates and products of metabolism, encompassing a wide range of compounds, such as amino acids, lipids, carbohydrates, and nucleotides. These molecules play roles in energy production, growth, and cellular repair. The study of equine metabolites, often conducted through metabolomics, provides insights into the physiological and pathological states of horses. Changes in metabolite levels can indicate alterations in metabolic pathways, potentially reflecting health conditions or responses to environmental factors. This page compiles peer-reviewed research studies and scholarly articles that explore the identification, function, and diagnostic potential of metabolites in equine health.
The biotransformation and urinary excretion of dexamethasone in equine male castrates.
Journal of steroid biochemistry    October 1, 1986   Volume 25, Issue 4 547-553 doi: 10.1016/0022-4731(86)90401-2
Dumasia MC, Houghton E, Moss MS, Chakraborty J, Marks V.The pro-drugs of dexamethasone, a potent glucocorticoid, are frequently used as anti-inflammatory steroids in equine veterinary practice. In the present study the biotransformation and urinary excretion of tritium labelled dexamethasone were investigated in cross-bred castrated male horses after therapeutic doses. Between 40-50% of the administered radioactivity was excreted in the urine within 24 h; a further 10% being excreted over the next 3 days. The urinary radioactivity was largely excreted in the unconjugated steroid fraction. In the first 24 h urine sample, 26-36% of the total dose was...
Absorption of phenylbutazone from a paste formulation administered orally to the horse.
Research in veterinary science    September 1, 1986   Volume 41, Issue 2 200-206 
Lees P, Higgins AJ, Mawhinney IC, Reid DS.The absorption pattern of phenylbutazone was studied in five horses during administration of the drug in a paste formulation on days 1, 5, 8 and 12 of a 12-day dosing schedule. Since two or more plasma concentration peaks were usually obtained following each oral dose, it was concluded that phasic absorption was a particular feature of the oil:water formulation of the product. Possible causes of this unusual absorption pattern are discussed and the therapeutic implications of both phasic absorption and the recorded values of Cmax, tmax and AUC024 for phenylbutazone and its active metabolite ox...
How drugs act in the body.
The Veterinary record    August 9, 1986   Volume 119, Issue 6 132-135 doi: 10.1136/vr.119.6.132
Marriner SE.No abstract available
Phenylbutazone and oxyphenbutazone distribution into tissue fluids in the horse.
Journal of veterinary pharmacology and therapeutics    June 1, 1986   Volume 9, Issue 2 204-212 doi: 10.1111/j.1365-2885.1986.tb00031.x
Lees P, Taylor JB, Higgins AJ, Sharma SC.The clinically recommended dose rate of phenylbutazone (4.4 mg/kg) was administered intravenously as a single dose to five Welsh Mountain ponies. Distribution of phenylbutazone and its active metabolite oxyphenbutazone into body fluids was studied by measuring concentrations in plasma, tissue-cage fluid, peritoneal fluid and acute inflammatory exudate harvested from a polyester sponge model of inflammation. The ready penetration of phenylbutazone into inflammatory exudate was demonstrated by the relatively high mean value for Cmax of 12.4 micrograms/ml occurring at a time of 4.6 h and a mean A...
Occurrence and distribution of 5-S-cysteinyl derivatives of dopamine, dopa and dopac in the brains of eight mammalian species.
Neuropharmacology    April 1, 1986   Volume 25, Issue 4 451-454 doi: 10.1016/0028-3908(86)90242-x
Fornstedt B, Rosengren E, Carlsson A.The 5-S-cysteinyl derivatives of dopamine, dopa (3,4-dihydroxyphenylalanine) and dopac (3,4-dihydroxyphenylacetic acid) were synthesized and used as reference compounds in high performance liquid chromatography analyses of extracts from various brain regions of eight mammalian species. All three metabolites were detected in the brains of all the species studied. The regional distribution of the metabolites was similar to that of dopamine; the metabolite concentrations ranged from less than 0.1 percent to more than 1 percent of the dopamine level, the highest ratios generally being found in sub...
Phenylbutazone in the horse: a review.
Journal of veterinary pharmacology and therapeutics    March 1, 1986   Volume 9, Issue 1 1-25 doi: 10.1111/j.1365-2885.1986.tb00008.x
Tobin T, Chay S, Kamerling S, Woods WE, Weckman TJ, Blake JW, Lees P.Phenylbutazone is an acidic, lipophilic, non-steroidal anti-inflammatory drug (NSAID). It is extensively metabolized in the horse. The metabolites so far identified, oxyphenbutazone, gamma-hydroxyoxyphenbutazone, account for some 25-30% of administered dose over 24 h. The plasma half-life of phenylbutazone and termination of its pharmacological action are determined primarily by its rate of hepatic metabolism. Phenylbutazone acts by inhibiting the cyclooxygenase enzyme system, which is responsible for synthesis of prostanoids such as PGE2. It appears to act on prostaglandin-H synthase and pros...
Isolation of meclofenamic acid and two metabolites from equine urine–a comparison between horse and man.
Journal of pharmaceutical and biomedical analysis    January 1, 1986   Volume 4, Issue 2 171-179 doi: 10.1016/0731-7085(86)80039-5
Johansson IM, Anlér EL, Bondesson U, Schubert B.Two metabolites of meclofenamic acid have been isolated from equine urine. Both metabolites are found to be monohydroxylated forms of meclofenamic acid by gas chromatography-mass spectrometry after extractive alkylation. The parent drug and the metabolites are separated by reversed-phase liquid chromatography on a Spherisorb ODS column, using methanol-phosphate buffer eluents and UV detection at 280 nm. The structure of the metabolites is discussed on the basis of LC, TLC and GC-MS data.
Identification of betamethasone and a major metabolite in equine urine.
Journal of pharmaceutical and biomedical analysis    January 1, 1986   Volume 4, Issue 3 327-331 doi: 10.1016/0731-7085(86)80054-1
Skrabalak DS, Henion JD.Betamethasone and its major unconjugated metabolite, 6-beta-hydroxybetamethasone, were detected in equine urine by thin-layer chromatography and characterized by micro-liquid chromatography/mass spectrometry (micro-LC/MS). Their structures were confirmed by a combination of infrared spectroscopy and nuclear magnetic resonance spectroscopy.
Effects of oral cimetidine on plasma concentrations of phenylbutazone in horses.
Journal of veterinary pharmacology and therapeutics    December 1, 1985   Volume 8, Issue 4 404-412 doi: 10.1111/j.1365-2885.1985.tb00974.x
Christensen JM, Blythe LL, Craig AM.Phenylbutazone was administered to six Thoroughbred horses in a cross-over study in which the horses received cimetidine pretreatment or no cimetidine pretreatment. Blood samples were collected at various times for 48 h after phenylbutazone administration and the plasma was analysed for phenylbutazone. Cimetidine pretreatment elevated phenylbutazone plasma concentrations during the first 8 h after phenylbutazone administration. The absorption rate, maximum phenylbutazone plasma concentrations and AUC were significantly greater with cimetidine pretreatment. The half-life of phenylbutazone did n...
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...
Stimulation of equine eosinophil migration by hydroxyacid metabolites of arachidonic acid.
The American journal of pathology    November 1, 1985   Volume 121, Issue 2 361-368 
Potter KA, Leid RW, Kolattukudy PE, Espelie KE.Lipoxygenase products of arachidonic acid are important mediators of inflammation, affecting several aspects of cell function. Monohydroxyeicosatetraenoic acid (mono-HETE) and 5,12-dihydroxyeicosatetraenoic acid (LTB4) enhance migration of both neutrophils and eosinophils in several species. The relative ability of positional isomers of HETE and of LTB4 to affect migration of equine eosinophils was studied. The 5, 8, 9, 11, 12, and 15 isomers of HETE were prepared by autooxidation of arachidonic acid, separated by sequential normal phase and reverse phase high performance liquid chromatography...
Pharmacokinetics and bioavailability of cephalothin in horse mares.
American journal of veterinary research    October 1, 1985   Volume 46, Issue 10 2085-2090 
Ruoff WW, Sams RA.The pharmacokinetics and bioavailability of cephalothin given to 6 horse mares at a dosage level of 11 mg/kg of body weight IV or IM were investigated. The disposition of cephalothin given IV was characterized by a rapid disposition phase with a mean half-life of 2.89 minutes and a subsequent slower elimination phase with a mean half-life of only 14.7 minutes. The mean residence time of cephalothin was 10.6 +/- 2.11 minutes. The total plasma clearance of cephalothin averaged 13.6 ml/min/kg and was caused by metabolism and renal elimination. Renal clearance of cephalothin averaged 1.32 ml/min/k...
Disposition of sulfadimidine and its N4-acetyl and hydroxy metabolites in horse plasma.
Journal of veterinary pharmacology and therapeutics    September 1, 1985   Volume 8, Issue 3 303-311 doi: 10.1111/j.1365-2885.1985.tb00960.x
Nouws JF, Vree TB, Baakman M, Driessens F, Smulders A, Holtkamp J.The plasma disposition of sulfadimidine (SDM) and its metabolites N4-acetylsulfadimidine (N4-SDM), 6-hydroxymethyl-4-methyl-pyrimidine (SCH2OH) and 5-hydroxy-4,6-dimethyl-pyrimidine (SOH), was studied in three horses following intravenous administration of SDM at dose levels of 20 and 200 mg/kg in cross-over trials. The percentages of N4-SDM (0.58-0.90%), SOH (0.83-6.75%) and SCH2OH (0.38-0.71%) in plasma, expressed as a percentage of the total sulfonamide concentration, were small and their plasma concentrations were parallel with SDM from 4 h following administration. At high doses (200 mg/k...
Identification of metabolites of methylprednisolone in equine urine.
Steroids    August 1, 1985   Volume 46, Issue 2-3 755-765 doi: 10.1016/0039-128x(85)90055-8
Gallicano KD, Ng RM, Young LM.Methylprednisolone and three metabolites, 17,21-dihydroxy-6 alpha-methyl-1,4-pregnadiene-3,11,20-trione, 6 alpha-methyl-17,20 beta,21-trihydroxy-1,4-pregnadiene-3,11-dione, and 6 alpha-methyl-11 beta,17,20 beta,21-tetrahydroxy-1,4-pregnadien-3-one were detected in equine urine after intraarticular administration of methylprednisolone acetate. All four compounds were excreted both in the unconjugated form and as glucuronic acid conjugates. They were identified by comparing data obtained from analyses by high performance liquid chromatography, thin-layer chromatography, ultraviolet spectroscopy ...
Effect of diuresis on urinary excretion and creatinine clearance in the horse.
American journal of veterinary research    August 1, 1985   Volume 46, Issue 8 1616-1618 
Gronwall R.Endogenous creatinine clearance and renal excretion of phenylbutazone, osmotically active material, and compounds contributing to the urinary refractive index were studied in 12 Thoroughbred mares after no treatment, after water administration, or after furosemide administration. Urine was quantitatively collected, using urinary bladder catheters. On average, urine flow of the mares was 9 microliters/min/kg without treatment and increased to about 50 microliters/min/kg after water administration and to about 70 microliters/min/kg after furosemide administration. Water administration increased ...
Quantitative determination of betamethasone and its major metabolite in equine urine by micro-liquid chromatography-mass spectrometry.
Journal of chromatography    June 14, 1985   Volume 341, Issue 2 261-269 doi: 10.1016/s0378-4347(00)84039-6
Skrabalak DS, Cuddy KK, Henion JD.Micro-liquid chromatography-mass spectrometry (micro-LC-MS) was utilized to quantitatively determine betamethasone and its major unconjugated metabolite, 6 beta-hydroxybetamethasone, in equine plasma and urine. The advantage of micro-LC-MS over conventional gas chromatography-mass spectrometry in corticosteroid determination is illustrated and the reliable, steadfast nature of micro-LC-MS is demonstrated through example.
Phenylbutazone and its metabolites in plasma and urine of thoroughbred horses: population distributions and effects of urinary pH.
Journal of veterinary pharmacology and therapeutics    June 1, 1985   Volume 8, Issue 2 136-149 doi: 10.1111/j.1365-2885.1985.tb00937.x
Houston T, Chay S, Woods WE, Combs G, Kamerling S, Blake JW, Edmundson AG, Vessiney R, Tobin T.A survey of plasma and urinary concentrations of phenylbutazone and its metabolites in thoroughbred horses racing in Kentucky was carried out. Post-race blood samples from more than 200 horses running at Latonia Racetrack and Keeneland in the Spring of 1983 were analysed. The modal plasma concentration of phenylbutazone was between 1 and 2 micrograms/ml, the mean concentration was 3.5 micrograms/ml and the range was up to 15 micrograms/ml. Oxyphenbutazone had a modal plasma concentration between 1 and 2 micrograms/ml, a mean concentration of 2.07 micrograms/ml and a range of up to 13 microgram...
Metabolic response of equine muscle to intermittent maximal exercise.
Journal of applied physiology (Bethesda, Md. : 1985)    May 1, 1985   Volume 58, Issue 5 1689-1697 doi: 10.1152/jappl.1985.58.5.1689
Snow DH, Harris RC, Gash SP.Four thoroughbred horses performed 4 gallops (G1-G4) with intervals of 5 min. With one exception, gallops were sustained at maximal speed over 620 m. Muscle biopsy samples of the middle gluteal and brachiocephalicus were taken before, during, and after exercise and assayed for ATP and intermediary metabolites. The results showed a major involvement of the brachiocephalicus, in addition to the middle gluteal, during galloping. In three horses, who were clearly fatigued, muscle ATP decreased by up to 50% by the end of G4. This was matched by an equal rise in inosine 5'-monophosphate. Pronounced ...
Estrogen metabolites in equine ovarian follicles: gas chromatographic-mass spectrometric determinations in relation to follicular ultrastructure and progestin content.
Journal of steroid biochemistry    April 1, 1985   Volume 22, Issue 4 501-505 doi: 10.1016/0022-4731(85)90169-4
Silberzahn P, Almahbobi G, Dehennin L, Merouane A.Equine follicular fluid was aspirated at various developmental stages (viable, preovulatory and atretic) determined by ultrastructural study. Estrogens and progestins were analyzed by gas chromatography-mass spectrometry associated with stable isotope dilution. Progesterone and 17-hydroxyprogesterone were the principal progestins of the preovulatory and viable follicles. Among the catechol estrogens, 2-hydroxy-estradiol was particularly abundant in the preovulatory follicle and its definitive identification was made by the scan of a full mass spectrum.
Pharmacokinetics of phenylbutazone in two age groups of ponies: a preliminary study.
The Veterinary record    March 2, 1985   Volume 116, Issue 9 229-232 doi: 10.1136/vr.116.9.229
Lees P, Maitho TE, Taylor JB.A clinical dose rate (4.4 mg/kg bodyweight) of phenylbutazone was administered intravenously and orally to six Welsh mountain ponies to provide data on the pharmacokinetics and bioavailability of the drug. In three, three-year-old ponies, clearance of the drug from plasma after intravenous administration was almost twice as rapid as in three ponies aged eight to 10 years. After oral administration, plasma phenylbutazone levels were greater in the older ponies, the area under the plasma concentration time curve being almost twice as high. This did not result from more efficient absorption but f...
Alkylation of bronchiolar epithelial cells by 3-methylindole metabolites in the horse.
Toxicology letters    January 1, 1985   Volume 24, Issue 1 25-32 doi: 10.1016/0378-4274(85)90135-3
Becker GM, Nocerini MR, Carlson JR, Breeze RG.Autoradiographs of horse-lung explants incubated with [3H]3-methylindole (3MI) showed 8 times greater labeling per area to bronchiolar epithelial cells than to the interalveolar septa. Incubations of horse-lung microsomes with [14C]3MI resulted in alkylation of microsomal proteins, which could be reduced by exogenous glutathione. An apparent covalent adduct of glutathione and 3MI was isolated from these incubations. These results suggest that the target cells of 3MI-induced injury in the horse, the bronchiolar epithelial cells, are alkylated by an electrophilic 3MI intermediate.
A sensitive liquid chromatographic procedure for the analysis of camphor in equine urine and plasma.
Journal of analytical toxicology    January 1, 1985   Volume 9, Issue 1 24-30 doi: 10.1093/jat/9.1.24
Gallicano KD, Park HC, Young LM.A sensitive method was required to analyze low levels of camphor in equine urine and plasma. Camphorated oil (20% w/w camphor) was administered topically (6 g) and intratracheally (1 g) to standardbred mares. The drug was extracted from urine and plasma by diethyl ether and analyzed as its 2,4-dinitrophenylhydrazone derivative by reverse phase HPLC with UV detection. The UV detector was set at 368.5 nm and the samples were eluted from the C18 column by 82% acetonitrile in water. The detection limit achieved was about 10 ng/mL urine and about 20 ng/mL plasma. After topical administration, only ...
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.
Rapid screening and confirmation for drugs and metabolites in racing animals by tandem mass spectrometry.
American journal of veterinary research    November 1, 1984   Volume 45, Issue 11 2436-2440 
Brotherton HO, Yost RA.A screening and confirmation procedure for drugs and metabolites in the blood serum and urine of racing animals was developed. Equine blood serum was spiked with low concentrations of several drugs of interest. Canine blood serum and urine were collected following oral doses of diethylcarbamazine, procaine, and phenylbutazone. Serum, urine, and extracts of each were analyzed, using a triple quadrupole mass spectrometer. Simultaneous screening of up to 50 drugs was possible in a single sample, in less than 2 minutes. Detection limits for most compounds were in the ng/ml to microgram/ml range, u...
Studies related to the metabolism of anabolic steroids in the horse: the phase I and phase II biotransformation of 19-nortestosterone in the equine castrate.
Xenobiotica; the fate of foreign compounds in biological systems    August 1, 1984   Volume 14, Issue 8 647-655 doi: 10.3109/00498258409151462
Dumasia MC, Houghton E.The metabolism of 19-nor[4-14C]testosterone has been studied in the equine castrate. Following XAD-2 extraction of aliquots of the 0-24 h urine samples, the glucuronic acid and sulphate conjugates were separated by Sephadex LH-20 column chromatography. After hydrolysis of the conjugates, the neutral phase I metabolites of 19-nortestosterone were extracted, purified and identified by g.l.c.-mass spectrometry. In phase I metabolism stereospecificity was observed in the reduction of the A-ring with the formation of the 5 alpha, 3 beta-isomers of estranediol. Epimerization at C-17 and hydroxylatio...
Tissue-cage model for the collection of inflammatory exudate in ponies.
Research in veterinary science    May 1, 1984   Volume 36, Issue 3 284-289 
Higgins AJ, Lees P, Wright JA.In a series of experiments to examine equine inflammatory exudates for the presence of metabolites of arachidonic acid, including prostaglandin E2 (PGE2), a model for the induction and collection of exudates in ponies has been developed. Multiperforated polypropylene practice golf balls implanted subcutaneously in the mid-neck region were well tolerated and proved to be the most successful model. One such cage was implanted in the neck of each of seven ponies. Inflammatory exudates were induced by injecting 3.0 or 0.5 ml carrageenin into the cages and aspirates collected between three and 48 h...
Blood metabolite profiles of broodmares and foals.
Equine veterinary journal    May 1, 1984   Volume 16, Issue 3 192-196 doi: 10.1111/j.2042-3306.1984.tb01902.x
Rogers PA, Fahey GC, Albert WW.Serum amino acid profiles and other serum characteristics of broodmares and their foals wee studied. Compared with mares, foals had significantly higher concentrations of serum leucine, threonine, aspartic acid, asparagine, glutamic acid, glutamine, proline and tyrosine, glucose, cholesterol, creatinine and phosphorus. Foals had significantly less serum histidine, glycine, cystine, taurine, protein and urea nitrogen. Lysine and/or methionine supplementation of pregnant and lactating broodmare diets were conducted. Changes in serum amino acid profiles caused by dietary amino acid supplemented w...
Isolation, partial identification and quantitative determination of four guaiphenesin glucuronides in plasma and urine of the horse by high-performance liquid chromatography.
Journal of chromatography    April 24, 1984   Volume 288, Issue 2 423-429 doi: 10.1016/s0021-9673(01)93718-5
Ketelaars HC, Peters JG, Anzion RB, Van Ginneken CA.The isolation, partial identification and quantitative determination of four guaiphenesin glucuronides in plasma and urine of the horse is described. The identity of the glucuronides was checked by UV and fluorescence spectrophotometry, by NMR spectrometry and by mass spectrometry after permethylation. The applicability of the procedure to pharmacokinetic studies is demonstrated.
Improved capillary gas-chromatographic – mass spectrometric method for the determination of anabolic steroid and corticosteroid metabolites in horse urine using on-column injection with high-boiling solvents.
The Analyst    March 1, 1984   Volume 109, Issue 3 273-275 doi: 10.1039/an9840900273
Houghton E, Teale P, Dumasia MC.No abstract available
Chloramphenicol sodium succinate in the horse: serum, synovial, peritoneal, and urine concentrations after single-dose intravenous administration.
American journal of veterinary research    March 1, 1984   Volume 45, Issue 3 578-580 
Brown MP, Kelly RH, Gronwall RR, Stover SM.Six healthy adult mares were given a single IV dose (25 mg/kg of body weight) of chloramphenicol sodium succinate. Chloramphenicol concentrations in serum, synovial fluid, peritoneal fluid, and urine were measured serially over a 48-hour period. The highest measured serum chloramphenicol concentration was 6.21 micrograms/ml at 0.5 hour. Chloramphenicol was detected in synovial and peritoneal fluids, with mean peak concentrations of 3.89 micrograms/ml and 3.50 micrograms/ml, respectively, at 0.5 hour. Serum and synovial concentrations declined rapidly and were not measurable at 3 hours. Chloram...