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Topic:Drug

The topic of drugs and horses encompasses the study of various pharmacological agents used in equine medicine for therapeutic purposes. This includes the administration of medications for pain management, disease treatment, and performance enhancement. The pharmacokinetics and pharmacodynamics of drugs in horses are key areas of research, as they determine the absorption, distribution, metabolism, and excretion of these substances. Additionally, the topic covers the detection and regulation of substances in competitive equestrian sports to ensure fair play and animal welfare. This page compiles peer-reviewed research studies and scholarly articles that explore the effects, safety, and regulatory aspects of drug use in equine health and performance.
Use of bumetanide in horses.
American journal of veterinary research    March 1, 1977   Volume 38, Issue 3 413 
Tobin T, Blake JW, Maylin GA.No abstract available
Field safety evaluation of cambendazole in horses.
New Zealand veterinary journal    March 1, 1977   Volume 25, Issue 3 69-70 doi: 10.1080/00480169.1977.34361
Horton FL, Griffiths OV, McMullan MJ.No abstract available
An evaluation of ethyl-6-ethoxybenzothiazole-2-carbamate (Sch 18099) for anthelmintic activity in domestic animals.
Journal of helminthology    March 1, 1977   Volume 51, Issue 1 23-30 doi: 10.1017/s0022149x00007227
Panitz E.Ethyl-6-ethoxybenzothiazole-2-carbamate (Sch 18099) was evaluated for efficacy against natural helminth infections in ponies, pigs, lambs and chickens. Sixteen critical trials were conducted in ponies at dosages of 15 to 150 mg/kg. At 15 mg/kg, efficacy against adult and larval Oxyuris equi was 100% and 91% and against small strongyles it was 98%. Efficacy levels were 95% against Strongylus vulgaris and S. edentatus at the 20 mg/kg dosage. In two trials at 100 mg/kg efficacy against Parascaris equorum was 77%. No efficacy was observed against Gastrophilus spp. or Anoplocephala spp. In swine si...
Critical and clinical trials of mebendazole and trichlorfon in the horse.
Veterinary medicine, small animal clinician : VM, SAC    February 1, 1977   Volume 72, Issue 2 245-249 
McCurdy HD, Sharp ML, Kruchkenberg SM.No abstract available
Anabolic steroids and drug clearance in the racehorse.
The Veterinary record    February 1, 1977   Volume 100, Issue 8 164 doi: 10.1136/vr.100.8.164
Glendinning ES.No abstract available
Clinical pharmacology of antibacterial drugs in the uterus of the mare.
Journal of the American Veterinary Medical Association    January 15, 1977   Volume 170, Issue 2 204-207 
Davis LE, Abbitt B.No abstract available
Effect of imidocarb dipropionate and hemicastration on spermatogenesis in pony stallions.
American journal of veterinary research    January 1, 1977   Volume 38, Issue 1 139-141 
Frerichs WM.The effect of imidocarb dipropionate [3, 3' bis-(2-imidazolin-2-yl) carbanilide dipropionate] on spermatogenesis in 3 pony stallions was studied. The drug alone had no deleterious effect on spermatogenesis when given intramuscularly 4 times at a dosage level of 4 mg/kg at 72-hour intervals. Hemicastration, with or without subsequent drug treatment, caused almost complete cessation of spermatogenesis 30 days after the operation.
Veterinary toxicology: the epidemiology of poisonings in domestic animals.
Clinical toxicology    January 1, 1977   Volume 10, Issue 1 1-21 doi: 10.3109/15563657708987956
Oehme FW.Animals are constantly exposed to a wide variety of foreign chemicals, many of which are potentially toxic and some of which result in the clinical poisonings. Pesticides are applied on or around animals for the control of insects and rodents. These chemicals may be placed in areas without regard for accessibility to household pets and domestic livestock. Insecticides, herbicides, and fungicides are routinely and haphazardly applied to animal and environmental surfaces alike with apparent disregard for differences in absorptive capability. Fortunately, newer herbicides and fungicides are relat...
Drug interactions in the horse: effects of chloramphenicol, quinidine, and oxyphenbutazone on phenylbutazone metabolism.
American journal of veterinary research    January 1, 1977   Volume 38, Issue 1 123-127 
Tobin T, Blake JW, Valentine R.The plasma half-life of phenylbutazone in horses was not increased after pretreatment with chloramphenicol or quinidine, but was increased after oxyphenbutazone. This increased plasma half-life after oxyphenbutazone is consistent with observations in other species and suggests that oxyphenbutazone inhibits the metabolism of phenylbutazone in horses. Lack of inhibition of phenylbutazone metabolism in the horse by chloramphenicol and quinidine is inconsistent with results obtained in other species.
Evaluation of an enteric-coated microencapsulated formulation of trichlorfon in horses.
Veterinary medicine, small animal clinician : VM, SAC    December 1, 1976   Volume 71, Issue 12 1737-1742 
Greve JH, Paul JW.No abstract available
Broad-spectrum penicillins.
Modern veterinary practice    November 1, 1976   Volume 57, Issue 11 936-940 
Clark CH.No abstract available
Electron capture detection of an apomorphine heptafluorobutyrate derivative at low picogram levels.
Research communications in chemical pathology and pharmacology    November 1, 1976   Volume 15, Issue 3 447-455 
Miller JR, Blake JW, Tobin T.An electron capturing derivative of apomorphine was prepared by incubating the drug with heptafluorobutyric anhydride (HFBA), triethylamine and heat. Mass spectral analysis suggests that HFBA reacts with both phenolic hydroxyl groups on apomorphine to give a derivative detectable at low picogram levels. This method is sufficiently sensitive for pharmacokinetic studies in the horse and is likely applicable to other dopaminergic analogues of apomorphine.
Effects of Saffan administered intravenously in the horse.
The Veterinary record    October 2, 1976   Volume 99, Issue 14 270-272 doi: 10.1136/vr.99.14.270
Eales FA.Saffan was injected intravenously on 41 occasions in 11 horses and ponies to investigate its possible use in clinical equine anaesthesia. The optimum dose for induction was 1-90 mg per kg. This dose was divided into two halves, the first half given in five seconds and the second half, containing suxamethonium chloride 0.1 mg per kg, in the next 10 seconds. Induction was associated with excitement for up to 30 secs after the assumption of recumbency. At this dose rate anaesthesia lasted five to eight minutes. Muscle relaxation was poor. Recovery was associated with marked tactile and audible hy...
Excretion and metabolism of nikethamide in the horse.
British journal of sports medicine    October 1, 1976   Volume 10, Issue 3 116-123 doi: 10.1136/bjsm.10.3.116
Delbeke FT, Debackere M.It is well known that nikethamide (N,N-diethylnicotinamide, CoramineR) is metabolized very rapidly to nicotinamide. Hence, there is difficulty in proving that nikethamide has been used as a doping substance because nicotinamide is a normal physiological metabolite in the organism as well as a vitamin preparation. However, an intermediate metabolite (N-ethylnicotinamide) was found by us in the urine of horses treated with CoramineR. This was characterized by gas chromatography/mass spectrometry, and synthesized and identified as being N-ethylnicotinamide. The excretion and metabolism of niketha...
The passage of drugs into horse saliva and the suitability of saliva for pre-race testing.
British journal of sports medicine    October 1, 1976   Volume 10, Issue 3 133-140 doi: 10.1136/bjsm.10.3.133
Horner MW.No abstract available
Dope: the enemy of the racehorse.
British journal of sports medicine    October 1, 1976   Volume 10, Issue 3 103-105 doi: 10.1136/bjsm.10.3.103
Green HJ.No abstract available
A brief history of dope detection in racehorses.
British journal of sports medicine    October 1, 1976   Volume 10, Issue 3 100-102 doi: 10.1136/bjsm.10.3.100
Clarke EG, Moss MS.No abstract available
Drug interactions in the horse: effect of furosemide on plasma and urinary levels of phenylbutazone.
Research communications in chemical pathology and pharmacology    October 1, 1976   Volume 15, Issue 2 257-265 
Roberts BL, Blake JW, Tobin T.Horses pretreated with 6.6 mg/kg of phenylbutazone were injected with 1 mg/kg of furosemide intravenously. Furosemide had no clinically significant effect on either plasma levels or plasma half-life of phenylbutazone. Furosemide reduced urinary levels of phenylbutazone 18-fold to concentrations which may result in inconsistent drug detection in routine screening tests. The results show that it is not possible to monitor compliance with phenylbutazone medication rules by means of urinalysis alone if the use of furosemide is permitted. Furosemide treatment, however, does not interfere with monit...
The use of Dopram as a respiratory stimulant following Immobilon in the pony.
Equine veterinary journal    October 1, 1976   Volume 8, Issue 4 173-175 doi: 10.1111/j.2042-3306.1976.tb03334.x
Hillidge CJ.The effects of the analeptic agent, Dopram (doxapram hydrochloride) were investigated in 2 ponies during Immobilon - induced neuroleptanalgesia. Although Dopram was demonstrated to exert a degree of respiratory stimulation, this was concluded to provide no overall advantage. The etorphine-induced hypoxic hypoxia was only partially reversed, and there was additional cardiovascular stimulation, in contrast to the previously reported tendency for arterial blood pressure to return towards conscious control values during the course of action of Immobilon.
The excretion of ibuprofen by the horse – a preliminary report.
British journal of sports medicine    October 1, 1976   Volume 10, Issue 3 124-127 doi: 10.1136/bjsm.10.3.124
Evans JA, Lambert MB, Miller J.The anti-inflammatory drug Ibuprofen [(+/-)-2-(p-isobutylphenyl) propionic acid] was estimated in the blood and urine of a horse using gas-liquid chromatography of the silylated derivative. Levels of the drug in the two body fluids were measured over a period of about 24 hours after administering a 12 gm dose of Ibuprofen. Plasma peak levels were observed within 30 to 60 min, and the drug was no longer detectable in the plasma by 8 hr. Urinary peak levels were observed 200 to 300 min after dosing, and the drug was no longer detectable in the urine by about 28 hr. It was observed that only 2% t...
Pine oil toxicity in the horse: drug detection, residues and pathological changes.
Research communications in chemical pathology and pharmacology    October 1, 1976   Volume 15, Issue 2 291-301 
Tobin T, Swerczek TW, Blake JW.This report concerns the detection and acute toxicity of pine oil (a commercially available disinfectant) after intravenous administration in horses. alpha Terpineol was identified as a major constituent of pine oil. alpha Terpineol was recovered from equine tissues by extraction into heptane and detected by gas chromatography, using either flame ionization detection or pentafluoropropionic anhydride derivatization and electron capture detection. After intravenous injection of 0.1 ml/kg, death due to massive pulmonary edema occurred within minutes. In this animal blood and tissue levels of alp...
A review of the pharmacology, pharmacokinetics and behavioral effects of procaine in thoroughbred horses.
British journal of sports medicine    October 1, 1976   Volume 10, Issue 3 109-116 doi: 10.1136/bjsm.10.3.109
Tobin T, Blake JW.Since procaine has both local anaesthetic and central stimulant actions its presence in the blood or urine of racing horses is forbidden. After rapid intravenous injection of procaine HC1 (2.5 mg/Kg) in thoroughbred mares plasma levels of this drug fell rapidly (t 1/2 alpha = 5 min) and then more slowly (t 1/2 beta = 50.2 min). These kinetics were well fitted by a two compartment open model (Model I). This model gave an apparent Vdbeta for procaine in the horse of about 3,500 litres. Since procaine was about 45% bound to equine plasma protein this gives a true Vdbeta for procaine of about 6,50...
The antidoping control in horseraces in Italy.
British journal of sports medicine    October 1, 1976   Volume 10, Issue 3 168-170 doi: 10.1136/bjsm.10.3.168
Cartoni GP, Montanaro M.The results and the improvement of the analytical procedures adopted for the control of doping in horses will be reported. This control has been systematically carried out in Italy for about 10 years in the laboratories of Italian Federation of Sport and Medicine in which the biological samples for the control of doping in various sport activities (football, cycling, athletics etc.) are also examined. In this way it is possible to use the same instruments for all these similar problems and compare the results. The analytical procedure is based on the following steps: 1) Extraction of the sampl...
The gas-liquid chromatograph and the electron capture detection in equine drug testing.
British journal of sports medicine    October 1, 1976   Volume 10, Issue 3 129-132 doi: 10.1136/bjsm.10.3.129
Blake JW, Tobin T.Three gas-liquid chromatographic (G.L.C.) procedures discussed have been designed around the four "esses" of detection tests--speed, sensitivity, simplicity, and specificity. These techniques are admirably applicable to the very low plasma drug levels encountered in blood testing under pre-race conditions. The methods are equally applicable to post-race testing procedures, where both blood and urine samples are tested. Drugs can only rarely be detected by the electron capture detector (E.C.D.) without a prior derivatization step, which conveys to the drug(s) high electron affinity. Because of ...
Research and identification of tranquillizers – use of retention index.
British journal of sports medicine    October 1, 1976   Volume 10, Issue 3 143-146 doi: 10.1136/bjsm.10.3.143
Courtot D.At the request of the Service des Haras, our laboratory works on the toxicological problems of the sport-horse. These studies have resulted in the setting up of an anti-doping control for equestrian competitions of various types, not only flat racing. During events, horses, must be calm and docile to the riders' order. Frequently, the latter use tranquillizers to try and win events. The analytical method for the research and identification of these compounds is described. The technique involves successively: 1. alkalinisation of the sample - saliva, blood or urine after enzymatic hydrolysis. 2...
Less common “doping” agents and substances encountered during routine screening for drugs.
British journal of sports medicine    October 1, 1976   Volume 10, Issue 3 171-176 doi: 10.1136/bjsm.10.3.171
Haywood PE, Chalmers P.The chromatographic and spectroscopic properties of several unusual substances which have been detected in the "alkaloidal" chloroform extract from racehorse urine and saliva samples are reported. Some of these substances have been identified by combined gas chromatography-mass spectrometry and the source of the substance is stated where this is known. Other substances whose identity is not known have been detected and their mass spectra show characteristic amine fragments. The occurrence of these unidentified substances is more frequent in aged urine samples and it would therefore appear that...
The selection of antibiotics.
The Veterinary record    July 24, 1976   Volume 99, Issue 4 61-64 doi: 10.1136/vr.99.4.61
Sanford J.The usefulness of an antibiotic depends not only upon its antibacterial potency and spectrum but also on the prevalence of resistant organisms and the extent and severity of the adverse reactions to which it may give rise. Variations in formulation of the same compound are reflected in differences in bioavailability. These may be intentional, as in the development of long-acting preparations, but may also be unexpected following differences in drug purity, content and gastro-intestinal absorption. Individual and species differences in treated animals also result in variations in bioavailabilit...
Letter: “Dope” and medication.
The Veterinary record    June 26, 1976   Volume 98, Issue 26 532 doi: 10.1136/vr.98.26.532-a
Farmer CG.No abstract available
The influence of hepatic microsomal amidopyrine demethylase activity on halothane hepatotoxicity in the horse.
The Journal of pathology    June 1, 1976   Volume 119, Issue 2 105-112 doi: 10.1002/path.1711190205
Gopinath G, Ford EJ.The hepatotoxic effect of oral halothane in the horse is increased by pretreatment with phenobarbitone or DDT but not by chlorpromazine. Phenobarbitone and DDT increase the activity of hepatic amidopyrine N-demethylase but chlorpromazine does not. Carbon disulphide protects the liver of the horse against halothane.
Studies on the development and chemotherapy of larvae of Parascaris equorum (Nematoda: Ascaridoidea) in experimentally and naturally infected foals.
The Journal of parasitology    June 1, 1976   Volume 62, Issue 3 453-459 
Lyons ET, Drudge JH, Tolliver SC.Experimentally induced infections of Parascaris equorum in worm-free pony foals required 14 to 17 days for migration of the larvae through the liver and lungs, and 79 to 110 days to become gametogenically functional. Treatment of experimentally infected or naturally exposed foals during the parenteral phase of development, using levamisole at 8 mg/kg, a mixture of levamisole at 8 mg/kg plus piperazine at 88 mg base equivalent/kg, or dl-tetramisole at 10 mg/kg, was quite efficacious in (1) reducing the number of P. equorum larvae recovered from the small intestines of the foals at necropsy, or ...
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