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Topic:Toxins

Toxins in horses refer to a variety of substances that can cause adverse health effects when ingested, inhaled, or absorbed through the skin. These substances can originate from plants, chemicals, feed contaminants, or environmental sources. Common toxins affecting horses include mycotoxins, heavy metals, and certain plants like ragwort and oleander. Exposure to these toxins can lead to a range of clinical symptoms, from mild discomfort to severe illness or death. Research in this area focuses on identifying toxic agents, understanding their mechanisms of action, and developing strategies for prevention and treatment. This page compiles peer-reviewed research studies and scholarly articles that explore the sources, effects, and management of toxins in equine health.
Neurological syndromes among horses in The Netherlands. A 5 year retrospective survey (1999-2004).
The veterinary quarterly    April 20, 2005   Volume 27, Issue 1 11-20 doi: 10.1080/01652176.2005.9695182
Goehring LS, van Maanen C, Sloet van Oldruitenborgh-Oosterbaan MM.The presence of toxins or infectious agents combined with environmental factors in combination with a susceptible host can be the cause for neurological disease in groups of horses. During a 5 year observational period outbreaks of neurological diseases among horses were evaluated. Causes of occurring neurological diseases were equine botulism, lolitrem intoxications, equine herpesvirus type 1-associated myelo(encephalo)pathy, and encephalitis caused by (disseminated) Streptococcus equi subspecies equi infection. This article focuses on the first three syndromes because of their predominant in...
Feeding value of pastures for horses.
New Zealand veterinary journal    March 16, 2005   Volume 52, Issue 6 332-341 doi: 10.1080/00480169.2004.36449
Hoskin SO, Gee EK.The feeding value of fresh pasture grazed in situ is determined by animal performance or productivity and could be relatively easily established for growing and lactating horses. Despite this, there is a lack of published information on the relative feeding value of different pastures and forages grazed by horses in New Zealand and the world. In addition, for adult breeding or non-breeding and young or adult sport or performance horses, the definition of feeding value and its determination remain problematic. Limited information suggests that the feeding value of perennial ryegrass-based pastu...
PCR ribotyping of Clostridium difficile isolates originating from human and animal sources.
Journal of medical microbiology    January 28, 2005   Volume 54, Issue Pt 2 163-166 doi: 10.1099/jmm.0.45805-0
Arroyo LG, Kruth SA, Willey BM, Staempfli HR, Low DE, Weese JS.Molecular typing of Clostridium difficile isolates from animals and humans may be useful for evaluation of the possibility for interspecies transmission. The objective of this study was to evaluate C. difficile isolates from domestic animals and humans using PCR ribotyping. Isolates were also tested using PCR for the presence of genes encoding toxins A and B. One hundred and thirty-three isolates of C. difficile from dogs (n = 92), horses (n = 21) and humans (n = 20), plus one each from a cat and a calf, were evaluated. Overall, 23 ribotypes were identified. Of these, nine were identified from...
Endocrine alterations associated with ergopeptine alkaloid exposure during equine pregnancy.
The Veterinary clinics of North America. Equine practice    January 8, 2005   Volume 18, Issue 2 371-viii doi: 10.1016/s0749-0739(02)00019-6
Evans TJ.Ergopeptine alkaloid exposure is common in pregnant mares. Many mares live in geographic areas where Neotyphodium coenophialum-infected tall fescue is the dominant grass in pastures and hay. A variety of grasses and cereal grains can be infected by Claviceps purpurea, and fungal sclerotia can contaminate forage and especially ground and pelleted feed. An understanding of the endocrine alterations associated with ergopeptine alkaloid exposure during pregnancy is necessary for the diagnosis of potential exposure to these compounds and for eective prophylaxis and therapy.
Antibodies to Aqx toxin of Actinobacillus equuli in horses and foals.
The Veterinary record    September 24, 2004   Volume 155, Issue 8 231-233 doi: 10.1136/vr.155.8.231
Berthoud H, Frey J, Sternberg S, Straub R, Kuhnert P.Actinobacillus equuli is found in the normal oral flora of horses, but has been associated with several diseases, and particularly with the usually fatal septicaemia in neonatal foals which is thought to be associated with a failure of the passive transfer of immunoglobulins via the colostrum. The Aqx protein of A equuli, belonging to the RTX family of pore-forming toxins, is also cytotoxic to horse lymphocytes. The presence of antibodies to Aqx was investigated in sera from individual horses from different regions; the sera from adult horses and foals 24 hours after birth reacted with Aqx, an...
Neurologic abnormalities and cerebrospinal fluid changes in horses administered fumonisin B1 intravenously.
Journal of veterinary internal medicine    April 3, 2004   Volume 18, Issue 2 223-230 doi: 10.1892/0891-6640(2004)18<223:naacfc>2.0.co;2
Foreman JH, Constable PD, Waggoner AL, Levy M, Eppley RM, Smith GW, Tumbleson ME, Haschek WM.The objective of this experiment was to characterize a dose-dependent toxic effect of fumonisin B1 (FB1) and to document initial neurologic signs, clinical progression, and terminal cerebrospinal fluid (CSF) changes in horses administered FB1 IV. Seventeen healthy horses were administered 0.00 (n = 4), 0.01 (n = 3), 0.05 (n = 3), 0.10 (n = 3), or 0.20 mg (n = 4) of purified FB1 IV q24h. When neurologic abnormalities observed by a masked observer became severe, atlanto-occipital CSF taps were performed and CSF pressure, cell count, cytology, protein, albumin and glucose concentrations, and crea...
An epidemiological study of risk factors associated with the recurrence of equine grass sickness (dysautonomia) on previously affected premises.
Equine veterinary journal    March 25, 2004   Volume 36, Issue 2 105-112 doi: 10.2746/0425164044868639
Newton JR, Hedderson EJ, Adams VJ, McGorum BC, Proudman CJ, Wood JL.The reasons why equine grass sickness (EGS) recurs on premises are unknown and, consequently, practical methods for reducing the risk of recurrence are not available. Objective: To identify risk factors associated with recurrence of EGS on premises and to gain possible insights into the pathogenesis of the disease. Methods: Data on disease history and risk factors were collected by postal questionnaire from premises with EGS cases between 1st January 1997 and 31st December 2001. Data on variation in rates of recurrence of EGS for different risk factors were analysed using Poisson regression an...
Mode of action of ponazuril against Toxoplasma gondii tachyzoites in cell culture.
The Journal of eukaryotic microbiology    January 23, 2004   Volume 50 Suppl 689-690 doi: 10.1111/j.1550-7408.2003.tb00689.x
Mitchell SM, Zajac AM, Davis WL, Lindsay DS.Toxoplasma gondii is an important apicomplexan parasite of humans and other warm-blooded animals. Ponazuril is a triazine anticoccidial recently approved for use in horses in the United States. We investigated the mode of action of ponazuril against developing RH strain T. gondii tachyzoites in African green monkey kidney cells. Host cells were infected with 2.0 x 10(5) tachyzoites and treated with 5 microg/ml ponazuril. Cultures were fixed and examined by transmission electron microscopy 3 days after treatment. Ponazuril interfered with normal parasite division. This led to the presence of mu...
Clostridium perfringens type A myonecrosis in a horse in Korea.
The Journal of veterinary medical science    December 11, 2003   Volume 65, Issue 11 1245-1247 doi: 10.1292/jvms.65.1245
Choi YK, Kang MS, Yoo HS, Lee DY, Lee HC, Kim DY.Acute hemorrhagic myonecrosis accompanied by severe inter- and intrafascicular edema and hemorrhage of the right gluteal area was diagnosed in a 13-year-old male thoroughbred horse. Once the muscular and fascicular changes were subsided, the horse then developed acute respiratory problem. Histologically, the lung had diffuse severe hemorrhage with mild neutrophilic infiltration. The cause of death was acute respiratory failure that is believed to occur secondary to toxaemic event. Alpha and beta2 toxin secreting Clostiridum perfringens type A was isolated from the muscle and lung. The diagnosi...
Evaluation of in vitro properties of di-tri-octahedral smectite on clostridial toxins and growth.
Equine veterinary journal    December 3, 2003   Volume 35, Issue 7 638-641 doi: 10.2746/042516403775696384
Weese JS, Cote NM, deGannes RV.Clostridial colitis and endotoxaemia of intestinal origin are significant causes of morbidity and mortality in horses. Intestinal adsorbents are available for treatment of these conditions; however, little information exists supporting their use. Objective: To evaluate the ability of di-tri-octahedral smectite to bind to Clostridium difficile toxins A and B, C. perfringens enterotoxin and endotoxin, inhibit clostridial growth and the actions of metronidazole in vitro. Methods: Clostridium difficile toxins, C. perfringens enterotoxin and endotoxin were mixed with serial dilutions of di-tri-octa...
Grazing of spotted locoweed (Astragalus lentiginosus) by cattle and horses in Arizona.
Journal of animal science    September 13, 2003   Volume 81, Issue 9 2285-2293 doi: 10.2527/2003.8192285x
Pfister JA, Stegelmeier BL, Gardner DR, James LF.Spotted locoweed (Astragalus lentiginosus var. diphysus) is a toxic, perennial plant that may, if sufficient precipitation occurs, dominate the herbaceous vegetation of pinyon-juniper woodlands on the Colorado Plateau. Six cow/calf pairs and four horses grazed a 20-ha pasture with dense patches of locoweed in eastern Arizona during spring 1998. Locoweed density was 0.7 plants/m2 in the pasture. Locoweed averaged 30.4% NDF and 18.4% CP. Concentrations of the locoweed toxin, swainsonine, fluctuated from 1.25 to 2 mg/g in locoweed. Horses ate more (P < 0.01) bites of locoweed than did cows (15...
Two cases of equine grass sickness with evidence for soil-borne origin involving botulinum neurotoxin.
Journal of veterinary medicine. B, Infectious diseases and veterinary public health    August 15, 2003   Volume 50, Issue 4 178-182 doi: 10.1046/j.1439-0450.2003.00655.x
Böhnel H, Wernery U, Gessler F.Botulism is caused by different types of Clostridium botulinum, a soil bacterium. Equine grass sickness (equine dysautonomia) is suspected of being a clinical form of this disease. On a stud where this disease occurred twice within 8 months, grass and soil samples and necropsy specimens of one horse were tested for the presence of bacterial forms and toxin of C. botulinum. Different types and type mixtures (A-E) of C. botulinum and botulinum neurotoxin were found. For the first time, it has been shown that green grass blades contain botulinum toxin. The results support the hypothesis that equi...
[Diagnosis of botulism since 1995. Report of test results].
Berliner und Munchener tierarztliche Wochenschrift    August 5, 2003   Volume 116, Issue 7-8 269-273 
Böhnel H, Gessler F.Since 1970 our laboratory is specialized in diagnosis of clostridial diseases, including Clostridium botulinum and botulism. Since 1995, samples from more than 900 suspected botulinal cases were received, mainly in cattle, horses and men. 524 outbreaks were diagnosed as clearly positive by toxin neutralisation; 83 cases remained inconclusive with the toxin neutralisation. The geographical distribution of the positive cases in Germany is demonstrated for cattle and horses. Dispatch and treatment of specimens and interpretation of results are discussed.
Trace element, toxin and drug elimination in hair with particular reference to the horse.
Research in veterinary science    August 2, 2003   Volume 75, Issue 2 89-101 doi: 10.1016/s0034-5288(03)00074-2
Dunnett M, Lees P.No abstract available
Clostridium perfringens alpha-toxin-induced hemolysis of horse erythrocytes is dependent on Ca2+ uptake.
Biochimica et biophysica acta    July 2, 2003   Volume 1613, Issue 1-2 79-86 doi: 10.1016/s0005-2736(03)00140-8
Ochi S, Oda M, Nagahama M, Sakurai J.Clostridium perfringens alpha-toxin is able to lyse various erythrocytes. Exposure of horse erythrocytes to alpha-toxin simultaneously induced hot-cold hemolysis and stimulated production of diacylglycerol and phosphorylcholine. When A23187-treated erythrocytes were treated with the toxin, these events were dependent on the concentration of extracellular Ca2+ . Incubation with the toxin of BAPTA-AM-treated horse erythrocytes caused no hemolysis or production of phosphorylcholine, but that of the BAPTA-treated erythrocytes did. When Quin 2-AM-treated erythrocytes were incubated with the toxin i...
Immunohistochemical localization of Clostridium perfringens beta2-toxin in the gastrointestinal tract of horses.
Veterinary pathology    June 26, 2003   Volume 40, Issue 4 376-381 doi: 10.1354/vp.40-4-376
Bacciarini LN, Boerlin P, Straub R, Frey J, Gröne A.Clostridia-associated intestinal disease in horses was generally reported to be due to infection with Clostridium perfringens type A, which harbors the cpa-encoded alpha-toxin. A recent study demonstrated a high incidence of beta2-toxigenic C. perfringens in horses suffering or dying from typhlocolitis, suggesting that this novel type of C. perfringens might play an important role in typhlocolitis and possibly other equine intestinal diseases. A retrospective study was conducted to assess the presence of the beta2-toxin in tissues of the equine gastrointestinal tract. Monospecific polyclonal a...
Non-fatal aflatoxicosis in Arabian horses in Iraq.
The Veterinary record    June 7, 2003   Volume 152, Issue 21 657-658 doi: 10.1136/vr.152.21.657
Hasso SA.No abstract available
Cell-specific activation of aflatoxin B1 correlates with presence of some cytochrome P450 enzymes in olfactory and respiratory tissues in horse.
Research in veterinary science    May 3, 2003   Volume 74, Issue 3 227-233 doi: 10.1016/s0034-5288(02)00191-1
Larsson P, Persson E, Tydén E, Tjälve H.Horses may be exposed to aflatoxin B(1) (AFB(1)) via inhalation of mouldy dust, leading to high exposure of olfactory and respiratory tissues. In the present study the metabolic activation of AFB(1) was examined in olfactory and respiratory tissues in horse. The results showed covalent binding of AFB(1)-metabolites in sustentacular cells and cells of Bowman's glands in the olfactory mucosa, in some cells of the surface epithelium of nasal respiratory, tracheal, bronchial and bronchiolar mucosa and in some glands in these areas. Immunohistochemistry revealed that cells expressing proteins react...
The role of apoptotic regulators in metaplastic mucous cells.
Novartis Foundation symposium    February 6, 2003   Volume 248 221-282 
Tesfaigzi Y.Exposure of airways to environmental toxins or allergens induces proliferation of epithelial cells. Depending on the type of exposure, existing and newly formed cells can differentiate into mucus-producing cells resulting in mucous cell metaplasia (MCM). During recovery, the epithelium reduces the number of epithelial cells to return to the original state. Understanding the mechanisms involved in this resolution could be useful in deleting mucous cells and, thereby, mucous secretions. We have found that metaplastic mucous cells induced by exposure to ozone, endotoxin, cigarette smoke or allerg...
Plant poisonings and mycotoxicoses of importance in horses in southern Africa.
Journal of the South African Veterinary Association    January 8, 2003   Volume 73, Issue 3 91-97 doi: 10.4102/jsava.v73i3.567
Botha CJ, Naudé TW.Well-known plant poisonings such as 'dunsiekte' (seneciosis) and 'jaagsiekte' (crotalariosis) of horses in southern Africa are briefly reviewed. Relatively unfamiliar mycotoxicoses such as stachybotryotoxicosis and perennial rye grass staggers and potentially occurring exotic intoxications such as equine nigropallidal encephalomalacia and ergot alkaloid poisoning are also discussed. This article is aimed at informing the southern African equine practitioner about probable poisonings that might occur locally in horses.
A simple and highly sensitive spectrophotometric method for the determination of cyanide in equine blood.
Toxicology mechanisms and methods    January 1, 2003   Volume 13, Issue 2 129-138 doi: 10.1080/15376510309847
Hughes C, Lehner F, Dirikolu L, Harkins D, Boyles J, McDowell K, Tobin T, Crutchfield J, Sebastian M, Harrison L, Baskin SI.An epidemiological association among black cherry trees (Prunus serotina), eastern tent caterpillars (Malacosoma americana), and the spring 2001 episode of mare reproductive loss syndrome in central Kentucky focused attention on the potential role of environmental cyanogens in the causes of this syndrome. To evaluate the role of cyanide (CN (-)) in this syndrome, a simple, rapid, and highly sensitive method for determination of low parts per billion concentrations of CN (-) in equine blood and other biological fluids was developed. The analytical method is an adaptation of methods commonly in ...
Lead poisoning of horses in the vicinity of a battery recycling plant.
The Science of the total environment    June 27, 2002   Volume 290, Issue 1-3 81-89 doi: 10.1016/s0048-9697(01)01066-x
Palacios H, Hibarren I, Olalla MJ, Cala V.The diagnosis of lead poisoning in horses living on farmland in the vicinity of a battery recycling plant was based on clinical signs as well as on laboratory findings. Chemical analysis of six surface soils (0-15 cm) and herbage samples taken at different distances to the recycling plant showed very high total lead levels in the closest sites to the facility and a clear decrease with distance. Total lead levels in soil samples ranged from 127 to 5657 mg kg(-1), with more than 70% of lead extractable by EDTA in the most polluted soils. Lead levels in the aerial part of herbage samples were in ...
Isolation, identification, and characterization of compounds from acer rubrum capable of oxidizing equine erythrocytes.
American journal of veterinary research    April 10, 2002   Volume 63, Issue 4 604-610 doi: 10.2460/ajvr.2002.63.604
Boyer JD, Breeden DC, Brown DL.To identify compounds in Acer rubrum that cause hemolysis or oxidation of equine erythrocytes and determine whether these toxins are found in other Acer spp. Methods: Equine erythrocytes. Methods: Washed erythrocytes were incubated with extracts and fractions of Acer spp that were separated by thin layer chromatography. Methemoglobin and hemolysis were measured spectrophotometrically. Compounds within Acer spp fractions associated with cell oxidation or hemolysis were identified by gas chromatography-mass spectrometry. Results: Erythrocytes incubated separately with either A. rubrum, A. saccha...
Aflatoxin in dog and horse feeds in turkey.
Veterinary and human toxicology    April 5, 2002   Volume 44, Issue 2 113-114 
Gunsen U, Yaroglu T.Aflatoxin levels were determined by ELISA in 18 dog and 20 horse feed samples, collected from different firms from June 2000 to June 2001 in Turkey. The minimum and maximum levels of total aflatoxin in the dog and horse feeds were <1.75-20 microg/kg and <1.75-14 microg/kg, respectively; 3/18 dog feed samples (16.7%) and 2/20 horse feed samples (10%) exceeded the Turkish tolerance limit of 10 microg/kg in food or feed.
Fescue toxicosis.
The Veterinary clinics of North America. Equine practice    January 10, 2002   Volume 17, Issue 3 567-577 doi: 10.1016/s0749-0739(17)30052-4
Blodgett DJ.Most of the tall fescue pastures in the United States are infected by an endophyte, N. coenophialum. The fungus derives nutrients from the plant while supplying the plant with toxins for defense. The most detrimental toxins for animals in tall fescue are ergopeptine alkaloids, especially ergovaline. Ergovaline functions as a dopamine D2 agonist and alters prolactin and several other hormones in the body. Pregnant mares are most susceptible during their last month of gestation. Clinical signs include prolonged gestation, dystocia, retained placentas, agalactia, and dysmature foals that are eith...
Mycotoxins.
The Veterinary clinics of North America. Equine practice    January 10, 2002   Volume 17, Issue 3 547-viii doi: 10.1016/s0749-0739(17)30051-2
Osweiler GD.Horses consume feed grains and forages that can produce a range of mycotoxins resulting from mold invasion. Toxicosis of horses often occurs from fumonisins or aflatoxin in grains, from the tremorgenic mycotoxins in dallis grass, or from slaframine in red clover. Fumonisin toxicosis often is severe and fatal, and aflatoxin can be acute or chronic and debilitating. Other mycotoxins reported in horses may cause moderate to mild signs that regress when the contaminated feedstuff is removed. Overall, horses appear to have a relatively low prevalence of reported mycotoxicoses among domestic animals...
Toxic feed constituents in the horse.
The Veterinary clinics of North America. Equine practice    January 10, 2002   Volume 17, Issue 3 479-vii doi: 10.1016/s0749-0739(17)30046-9
Hall JO.Poisoning cases in horses associated with dietary exposures can encompass a wide variety of etiologies that can be caused by natural or man-made components. Feed mixing errors and ingestion of feed formulated for other species are the most common means by which poisonings from man-made materials occur. Ionophore feed additives and antibacterial agents are especially toxogenic to horses. Effects of ionophores in horses include clinical, clinicopathologic, and pathologic changes associated with cardiac, muscular, and neurologic tissues involvement. The acute effects of ionophores, however, can r...
Botulism in the horse.
The Veterinary clinics of North America. Equine practice    January 10, 2002   Volume 17, Issue 3 579-588 doi: 10.1016/s0749-0739(17)30053-6
Galey FD.Botulism should be considered in cases where weakness, paralysis, or intolerance to exercise might be seen in the horse. Dysphagia may also be present, although it is not a consistent finding. Potential sources include carrion in hay, moldy or otherwise rotted vegetation or forage, birds carrying material from animal burial or other similar sites, and contaminated carcasses on-site. Horses, especially foals, may also suffer from toxicoinfectious botulism, a condition where the C. botulinum might colonize and produce toxin within the gastrointestinal tract. Wounds also may harbor the organism a...
[Enterotoxin-producing Bacteroides fragilis strains isolated from horses].
Medycyna doswiadczalna i mikrobiologia    January 5, 2002   Volume 53, Issue 2 161-166 
Obuch-Woszczatyński P, Pituch H, Martirosian G, Silva J, Meisel-Mikołajczyk F, Łuczak M.Seven Bacteroides fragilis strains were cultured from samples collected from horses. From all the tested strains, as well as from the reference B. fragilis strains: enterotoxigenic NCTC 11925 and nonenterotoxigenic IPL 323 strain, DNA was isolated using Genomic DNA PREP PLUS isolation kit manufactured by A&A Biotechnology (Poland). To detect the enterotoxin (fragilysin) gene, polymerase chain reaction (PCR) was applied, using the following starters: 404 (GAG CCG AAG ACG GTG TAT GTG ATT TGT) and 407 (TGC TCA GCG CCC AGT ATA TGA CCT AGT). DNA obtained from bacterial cells was amplified in a ...
Systemic antibodies to Clostridium botulinum type C: do they protect horses from grass sickness (dysautonomia)?
Equine veterinary journal    November 27, 2001   Volume 33, Issue 6 547-553 doi: 10.2746/042516401776563418
Hunter LC, Poxton IR.The aetiology of equine grass sickness (EGS) is still unknown. There is increasing evidence that toxicoinfection with Clostridium botulinum type C is involved. Epidemiological evidence shows that resistance to EGS can occur in older horses and those that have been on a particular pasture for longer or have been in prior contact with the disease. This resistance may be in the form of an immune response to the aetiological agent. Levels of systemic antibodies to the surface antigens of C. botulinum type C (using the closely related and safe C. novyi type A as a phenotypic marker) and to the botu...
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