Analyze Diet

Topic:Toxicology

Toxicology in horses involves the study of substances that can cause adverse effects when introduced to the equine body. This field examines the sources, mechanisms, and outcomes of exposure to toxic agents, which may include plants, chemicals, drugs, and environmental toxins. Understanding toxicology is essential for identifying and managing poisoning cases in horses. Research in this area often focuses on the identification of toxic compounds, their metabolic pathways, and the clinical symptoms associated with exposure. This page compiles peer-reviewed research studies and scholarly articles that explore the detection, effects, and management of toxic substances in equine health.
Toxic lung disease.
Modern veterinary practice    April 1, 1978   Volume 59, Issue 4 301 
Breeze R, Lee H, Grant BD.No abstract available
[History of the discovery of the causative agent of Stachybotrys toxicosis].
Mikrobiolohichnyi zhurnal    March 1, 1978   Volume 40, Issue 2 264-270 
Aĭzenman BE, Kudlaĭ DG.No abstract available
A review of recent trends in animal poisoning.
The British veterinary journal    March 1, 1978   Volume 134, Issue 2 128-145 doi: 10.1016/s0007-1935(17)33537-6
Humphreys DJ.No abstract available
Rodenticide toxicosis in a horse.
Journal of the American Veterinary Medical Association    February 1, 1978   Volume 172, Issue 3 270-271 
Russel SH, Monin T, Edwards WC.No abstract available
Clinical signs and chemical confirmation of 4-aminopyridine poisoning in horses.
American journal of veterinary research    February 1, 1978   Volume 39, Issue 2 329-331 
Ray AC, Dwyer JN, Fambro GW, Reagor JC.4-Aminopyridine poisoning in horses was diagnosed. Specific methods, utilizing thin-layer and high-performance liquid chromatography, were developed for determining the compound in stomach contents and corn bait. The lethal dose was estimated at 2 to 3 mg/kg of body weight.
The long search for the causes of congenital malformations in mammals.
Equine veterinary journal    January 1, 1978   Volume 10, Issue 1 43-46 doi: 10.1111/j.2042-3306.1978.tb02213.x
Woollam DH.The history of teratology is reviewed. Methods available for causing malformations in mammals by subtle changes in the environment during pregnancy are discussed. A table is provided in which the commoner teratogens are listed. Methods are described by means of which the activity of some common teratogens may be opposed. The occurrence at Battle Creek, Michigan, USA, of a chemical agent dangerous to health, life and development of all mammals is described. This gives an indication that injury and death to all mammals, as in the Sevaso disaster, including teratogenesis may be expected to be a f...
Adverse drug reactions.
Journal of the American Veterinary Medical Association    December 1, 1977   Volume 171, Issue 11 1133 
Stick JA, Boles CL, Scott EA.No abstract available
Pesticide poisonings in domestic animals.
Modern veterinary practice    November 1, 1977   Volume 58, Issue 11 913-920 
Maddy KT, Riddle LC.No abstract available
Pharmacologic and toxicologic study of prostaglandin F2alpha in mares.
American journal of veterinary research    September 1, 1977   Volume 38, Issue 9 1445-1452 
Goyings LS, Lauderdale JW, McConnell RF.No abstract available
Herbicide risk.
The Veterinary record    April 23, 1977   Volume 100, Issue 17 371 doi: 10.1136/vr.100.17.371-b
Cleverly JM.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
Hepatic midzonal necrosis in a pig fed aflatoxin and a horse fed moldy hay.
Veterinary pathology    March 1, 1977   Volume 14, Issue 2 182-187 doi: 10.1177/030098587701400210
McGavin MD, Knake R.A 35-kg Duroc pig died 3 days after eating a ration containing aflatoxin B1, B2, G1, and G2. It had hemorrhagic enteritis and extensive midzonal necrosis in the liver. A 13-year-old Quarterhorse that died 2 days after eating moldy hay had hemorrhagic enteritis, fatty degeneration of the myocardium and renal tubules, and extensive total midzonal necrosis of the liver.
Effects of fluoride on livestock. Sutie JW.Animals normally ingest small amounts of fluorides in their diet with no adverse effect. An increased ingestion of fluoride can be harmful to animals, and grazing animals can be damaged by the consumption of high-fluoride vegetation. Cattle have been the species most commonly affected, and the symptoms of excessive fluoride ingestion in that species include; lesions in the developing dentition, skeletal lesions, lameness, chemical evidence of tissue fluoride ingestion in that species include: lesions in the developing take and decrease in production. The level of fluoride which can be tolerate...
[Poisoning with meta (metaldehyde) in a horse].
Schweizer Archiv fur Tierheilkunde    December 1, 1976   Volume 118, Issue 12 557-558 
Grandchamp G.No abstract available
Evaluation of monensin toxicity in the horse.
Journal of the American Veterinary Medical Association    November 15, 1976   Volume 169, Issue 10 1098-1100 
Matsuoka T.Gelded horses of mixed breeding, ranging in weight between 360 and 455 kg, were fed pellets that contained monensin at concentrations of 279, 124, 31, and 0 ppm. Of 2 horses fed 279 ppm (253 g/T), both died. Of 3 horses fed 125 ppm (113 g/T), 1 died; feed intake was reduced in the 2 survivors. Of 3 horses fed 31 ppm (28 g/T), 1 had a transitory reduction in feed intake and the other 2 remained clinically normal. The 2 horses fed 0 ppm remained clinically normal. Monensin was also given to horses by gavage, at dosages of 1, 2, 3, 4, or 20 mg/kg of body weight. The LD50 was estimated to be betwe...
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...
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...
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.
Critical tests and safety studies on trichlorfon as an antiparasitic agent in the horse.
American journal of veterinary research    February 1, 1976   Volume 37, Issue 2 139-144 
Drudge JH, Lyons ET, Taylor EL.Three series of critical tests were completed on a combined total of 46 horses to determine the efficacy of single doses of trichlorfon against bots, ascarids, pinworms, and large strongyles. Different formulations of trichlorfon were administered by tubing intragastrically, mixing with the daily grain ration, injecting intramuscularly, or pouring on the back at dose rates between 20 and 100 mg/kg. Administration by feeding tended to be more efficacious for removal of bots and less toxic to the horese than administration by stomach tube. In many of the tests, trichlorfon was given in the grain...
Presumptive quaternary ammonium intoxication in a pony.
Journal of the American Veterinary Medical Association    January 1, 1976   Volume 168, Issue 1 60 
Skand DL.No abstract available
[Concerning the toxicity of parbendazole (Helmatac 30) to horses and ponies (author’s transl)].
Tijdschrift voor diergeneeskunde    November 1, 1975   Volume 100, Issue 21 1143-1152 
Verberne LR, Mirck MH.The toxicity of parbendazole in different doses was investigated with 52 horses and 16 ponies, in twelve groups. Side effects observed with the anthelmintic were laxation (soft dung, diarrhoea), anorexia, and listlessness. The seriousness of these symptoms depended greatly on the dose used. Half the therapeutic dose of parbendazole (2.5 to 3.75 mg/kg) administered on two consecutive days led, as a rule, to only slight toxic symptoms and proved highly effective with regard to gastro-intestinal nematodes occurring in horses and ponies. The utilisation of "standard powders" (not commercially avai...
Studies on dioctyl sodium sulfosuccinate toxicity: clinical, gross and microscopic pathology in the horse and guinea pig.
Canadian journal of comparative medicine : Revue canadienne de medecine comparee    October 1, 1975   Volume 39, Issue 4 434-441 
Moffatt RE, Kramer LL, Lerner D, Jones R.Concentrations of dioctyl sodium sulfosuccinate (DSS) ranging from three to five times the recommended dosage produced severe diarrhea, rapid dehydration and death in seven horses and 66 guinea pigs when administered experimentally per os. Clinicopathological findings indicated hemoconcentration in both horses and guinea pigs. There was a leucocytosis in the guinea pigs given the highest dosages. In all cases the principal finding at necropsy was extreme fluid distention of the intestinal tract. There was histopathological evidence of epithelial denudation and vascular stasis. The LD50 in the ...
Digitoxin metabolism by rat liver microsomes.
Biochemical pharmacology    September 1, 1975   Volume 24, Issue 17 1639-1641 doi: 10.1016/b978-0-12-152810-2.50012-7
Schmoldt A, Benthe HF, Haberland G, Scott WA, Mahoney E, BOSE SK.No abstract available
Digitoxin metabolism by rat liver microsomes.
Biochemical pharmacology    September 1, 1975   Volume 24, Issue 17 1639-1641 
Schmoldt A, Benthe HF, Haberland G.No abstract available
Digitoxin metabolism by rat liver microsomes.
Biochemical pharmacology    September 1, 1975   Volume 24, Issue 17 1639-1641 doi: 10.1016/b978-0-12-152810-2.50012-7
Schmoldt A, Benthe HF, Haberland G, Scott WA, Mahoney E, FISCHER H, FELDT K.No abstract available
Digitoxin metabolism by rat liver microsomes.
Biochemical pharmacology    September 1, 1975   Volume 24, Issue 17 1639-1641 doi: 10.1016/0006-291x(75)90200-4
Schmoldt A, Benthe HF, Haberland G, Jallon JM, Risler Y, Iwatsubo M, Karuzina II, Bachmanova GI, Kuznetsova GP, Izotov MV, Archakov AI, Kröger H....It has been found that NADPH-dependent hydroxylation of dimethylaniline, aniline, p- and o-nitroanisol and lipid peroxidation is inhibited by the tyrosine-copper (II) complex (low molecular weight analog of superoxide dismutase), which is indicative of a possibility of superoxide radicals formation in these reactions. The inhibition of the above-mentioned reactions with Tyr2-Cu2+ is less pronounced or absent, if cumole hydroperoxide is used as cosubstrate instead of NADPH. Differences in the Tyr2-Cu2+ complex effects on the cumule hydroperoxide-dependent xenobiotics hydroxylation and lipid per...
Letter: Monensin sodium in horses.
The Veterinary record    August 16, 1975   Volume 97, Issue 7 137-138 doi: 10.1136/vr.97.7.137
Stoker JW.No abstract available
Tetrachlorodibenzodioxin: an accidental poisoning episode in horse arenas.
Science (New York, N.Y.)    May 26, 1975   Volume 188, Issue 4189 738-740 doi: 10.1126/science.1168366
Carter CD, Kimbrough RD, Liddle JA, Cline RE, Zack MM, Barthel WF, Koehler RE, Phillips PE.Tetrachlorodibenzodioxin was identified as the apparent cause of an outbreak of poisoning in humans, horses, and other animals. Exposure was related to the spraying of contaminated waste oil on riding arenas for dust control. The contamination resulted from improper disposal of a toxic industrial waste. The pathologic effects and chemical identification of tetrachlorodibenzodioxin are described.
Metaldehyde poisoning in three horses.
Modern veterinary practice    May 1, 1975   Volume 56, Issue 5 336-337 
Harris WF.Three horses exhibited nervous and cardiopulmonary signs after ingestins small amounts of metaldehyde, and 2 died in 3 to 5 hours. A colt given 0.1 mg/kg was similarly affected and died.
Critical tests of suspension, paste, and pellet formulations of cambendazole in the horse.
American journal of veterinary research    April 1, 1975   Volume 36, Issue 4 Pt.1 435-439 
Drudge JH, Lyons ET, Tolliver SC.Three formulations of cambendazole were evaluated for anthelmintic activity by critical testing method in 21 horses. Cambendazole suspension was administered via stomach tube at the dose rate of 10 mg/kg to 3 horses and at the dose rate of 20 mg/kg to 3 horses. Cambendazole paste was given intraorally to 8 horses, and the pellet formulation was fed to 7 horses at the dose rate of 20 mg/kg. Anthelmintic activity of cambendazole was similar for all dose rates and formulations. Gasterophilus intestinalis, Gasterophilus nasalis, Draschia megastoma, Anoplocephala perfoliata, and Anoplocephala magna...