Analyze Diet

Topic:Protozoa

Protozoa are single-celled eukaryotic organisms that can interact with horses in various ways, including as parasites. In equine health, protozoal infections can lead to significant diseases, such as equine protozoal myeloencephalitis (EPM), which is caused by the protozoan Sarcocystis neurona. These organisms can affect the central nervous system and other bodily systems, leading to a range of clinical symptoms in horses. Understanding the life cycle, transmission, and impact of protozoa is important for managing and preventing infections. This page compiles peer-reviewed research studies and scholarly articles that explore the biology, pathogenesis, and diagnostic approaches related to protozoal interactions in horses.
Parasitic protozoa of horses: a subject of burgeoning concern.
Equine veterinary journal    January 1, 1994   Volume 26, Issue 1 4-5 doi: 10.1111/j.2042-3306.1994.tb04318.x
Taylor MA.No abstract available
Effects of diet and hindgut defaunation on diet digestibility and microbial concentrations in the cecum and colon of the horse.
Journal of animal science    December 1, 1993   Volume 71, Issue 12 3350-3358 doi: 10.2527/1993.71123350x
Moore BE, Dehority BA.The effects of diet and hindgut defaunation (removal of protozoa from the hindgut) on diet digestibility (Trial 1) and on total and cellulolytic bacterial and fungal concentrations in the cecum and colon (Trial 2) were investigated. A high-forage (HF) diet, 90% alfalfa hay-10% concentrate, or a higher-concentrate (HC) diet, 60% alfalfa hay-40% concentrate, was limit-fed. In Trial 1, defaunation resulted in a slight decrease in DM digestibility (P < .1) and had no effect on cellulose digestibility. Dry matter digestibility was higher (P < .001) with the HC diet; however, no differences were obs...
[Pilot study of the occurrence of Prototheca in fecal samples of horses].
Berliner und Munchener tierarztliche Wochenschrift    August 1, 1993   Volume 106, Issue 8 264-265 
Enders F, Weber A.Fecal samples of 146 horses were culturally investigated for occurrence of Prototheca spp. using a selective medium, developed by PORE (1973). Prototheca zopfii could be isolated in monoculture from 9 fecal samples (6.2%). The results of this pilot study show that horses too can harbour and shed Prototheca spp. in variable frequency.
Immunohistochemical study to demonstrate Sarcocystis neurona in equine protozoal myeloencephalitis. Hamir AN, Moser G, Galligan DT, Davis SW, Granstrom DE, Dubey JP.A 5-year (1985-1989) retrospective immunohistochemical study was conducted using an avidin-biotin complex (ABC) immunoperoxidase method to demonstrate Sarcocystis neurona in histologically suspect cases of equine protozoal myeloencephalitis (EPM). Primary antibodies against S. neurona and S. cruzi were utilized for the ABC technique. The findings were compared with those from cases in which the organisms were detected by examination of hematoxylin and eosin (HE)-stained neuronal sections. HE-stained sections detected the presence of the organisms in 20% of the suspect cases; whereas the ABC te...
Equine protozoal myeloencephalitis: antigen analysis of cultured Sarcocystis neurona merozoites. Granstrom DE, Dubey JP, Davis SW, Fayer R, Fox JC, Poonacha KB, Giles RC, Comer PF.Antigens of cultured Sarcocystis neurona merozoites were examined using immunoblot analysis. Blotted proteins were probed with S. cruzi, S. muris, and S. neurona antisera produced in rabbits, S. fayeri (pre- and post-infection) and S. neurona (pre- and post-inoculation) sera produced in horses, immune sera from 7 histologically confirmed cases of equine protozoal myeloencephalitis (EPM), and pre-suckle serum from a newborn foal. Eight proteins, 70, 24, 23.5, 22.5, 13, 11, 10.5, and 10 Kd, were detected only by S. neurona antiserum and/or immune serum from EPM-affected horses. Equine sera were ...
[Trichomonad infections of the oral cavity in horses in southern Germany].
Tierarztliche Praxis    December 1, 1992   Volume 20, Issue 6 608-610 
Schöl H, Beelitz P, Gothe R.Trichomonads of the oral cavity were found in 9 of 60 investigated horses. Apart from dental tartar, the oral cavity showed no clinical signs in all positive horses. The clinical investigation of these horses additionally revealed colic in 4 and coughing in 4 horses as well as lumbago in 1 animal. By means of scanning electron microscopy the trichomonads were shown to be round or piriform with an average length of 7.6 microns and greatest width of 6.3 microns. They had 4 anterior flagella with an average length of 8.3 microns, an undulating membrane measuring 8.7 microns with no trailing flage...
Equine protozoal myelitis in Panamanian horses and isolation of Sarcocystis neurona.
The Journal of parasitology    October 11, 1992   Volume 78, Issue 5 909-912 
Granstrom DE, Alvarez O, Dubey JP, Comer PF, Williams NM.Schizonts of Sarcocystis neurona were identified microscopically in hematoxylin-eosin-stained spinal cord sections from 2 native Panamanian horses that exhibited clinical signs of equine protozoal myelitis (EPM). Spinal cord homogenate from a third Panamanian horse with EPM was inoculated onto monolayers of cultured bovine monocytes (M617). Intracytoplasmic schizonts containing merozoites arranged in rosette forms surrounding a central residual body first were observed 13 wk postinoculation. Parasites divided by endopolygeny and lacked rhoptries. Schizonts from each horse reacted with Sarcocys...
Transplacental infection of a foal with Toxoplasma gondii.
The Veterinary record    August 22, 1992   Volume 131, Issue 8 179-180 doi: 10.1136/vr.131.8.179
Turner CB, Savva D.No abstract available
Putative equine protozoal myeloencephalitis in an imported Arabian filly.
Journal of the South African Veterinary Association    June 1, 1992   Volume 63, Issue 2 78-79 
Ronen N.No abstract available
In vitro cultivation of Sarcocystis neurona from the spinal cord of a horse with equine protozoal myelitis.
The Journal of parasitology    October 1, 1991   Volume 77, Issue 5 789-792 
Davis SW, Speer CA, Dubey JP.Asexual stages of Sarcocystis neurona were seen in cultured bovine monocytes (M617) inoculated with tissue homogenates from the spinal cord of a horse with naturally acquired protozoal myelitis. Organisms first were observed as intracytoplasmic schizonts and later as motile extracellular zoites capable of infecting surrounding M617 cells. Parasites most often occurred as clusters of merozoites dispersed throughout the host cell cytoplasm; however, schizonts also contained merozoites arranged in a radial fashion surrounding a prominent residual body. Schizonts divided by endopolygeny. The paras...
Sarcocystis neurona cultured in vitro from a horse with equine protozoal myelitis.
Equine veterinary journal    July 1, 1991   Volume 23, Issue 4 315-317 doi: 10.1111/j.2042-3306.1991.tb03726.x
Davis SW, Daft BN, Dubey JP.No abstract available
Sarcocystis neurona n. sp. (Protozoa: Apicomplexa), the etiologic agent of equine protozoal myeloencephalitis.
The Journal of parasitology    April 1, 1991   Volume 77, Issue 2 212-218 
Dubey JP, Davis SW, Speer CA, Bowman DD, de Lahunta A, Granstrom DE, Topper MJ, Hamir AN, Cummings JF, Suter MM.Sarcocystis neuronan n. sp. is proposed for the apicomplexan taxon associated with myeloencephalitis in horses. Only asexual stages of this parasite presently are known, and they are found within neuronal cells and leukocytes of the brain and spinal cord. The parasite is located in the host cell cytoplasm, does not have a parasitophorous vacuole, and divides by endopolygeny. Schizonts are 5-35 microns x 5-20 microns and contain 4-40 merozoites arranged in a rosette around a prominent residual body. Merozoites are approximately 4 x 1 micron, have a central nucleus, and lack rhoptries. Schizonts...
Immunohistochemical diagnosis of protozoan parasites in lesions of equine protozoal myeloencephalitis. Granstrom DE, Giles RC, Tuttle PA, Williams NM, Poonacha KB, Petrites-Murphy MB, Tramontin RR, Swerczek TW, Hong CB, Rezabek GB.No abstract available
Haemoparasites of equines: impact on international trade of horses.
Revue scientifique et technique (International Office of Epizootics)    December 1, 1990   Volume 9, Issue 4 1187-1194 
Friedhoff KT, Tenter AM, Müller I.The geographical distribution of Babesia equi and Babesia caballi and their tick vectors is discussed. Control of infections with these protozoa is hampered by the lack of a suitable antiprotozoal drug and a reliable serological test. No vaccine is available. Ehrlichia risticii (the causal agent of Potomac horse fever) and E. equi are rickettsial parasites which are difficult to control. Little is known of their geographical distribution and vectors. Early diagnosis is required for tetracycline therapy to be effective and there is a need for a rapid test to provide an early diagnosis.
Evidence of Toxoplasma gondii in an equine placenta.
The Veterinary record    July 28, 1990   Volume 127, Issue 4 96 
Turner CB, Savva D.No abstract available
Concentrations of trimethoprim and sulfamethoxazole in cerebrospinal fluid and serum in mares with and without a dimethyl sulfoxide pretreatment. Green SL, Mayhew IG, Brown MP, Gronwall RR, Montieth G.Each of seven mares was given an intravenous (IV) injection of 40% dimethyl sulfoxide (DMSO) at a dosage of 1 g/kg, over 35 min, immediately followed by a single IV injection of a trimethoprim (TMP) and sulfamethoxazole (SMZ) combination (SMZ 83%, TMP 17%) at a combined dosage of 44 mg/kg (7.48 mg/kg TMP; 36.52 mg/kg SMZ). Each horse served as its own control and was alternately treated with an identical dose of TMP-SMZ treatment alone at least seven days following or preceding the DMSO and TMP-SMZ treatment. Serum and cerebrospinal fluid (CSF) concentrations of TMP and SMZ were measured over ...
Protozoal encephalomyelitis in horses: 82 cases (1972-1986).
Journal of the American Veterinary Medical Association    February 15, 1990   Volume 196, Issue 4 632-634 
Boy MG, Galligan DT, Divers TJ.Medical records of 82 horses with clinical signs of neurologic disease and histologic lesions suggestive of protozoal encephalomyelitis were reviewed. The presence of a protozoan parasite in the CNS was not influenced by prior treatment of the horse with corticosteroids. Prior treatment of horses with trimethoprim-sulfonamide alone or in combination with pyrimethamine resulted in a decreased number of horses in which a protozoan parasite was detected in the CNS at necropsy. The mean age of affected horses was 3.62 +/- 2.78 years, with male and Standardbred horses being overrepresented, compare...
Cerebrospinal fluid changes in two horses with central nervous system nematodiasis (Micronema deletrix).
Journal of veterinary internal medicine    October 1, 1988   Volume 2, Issue 4 201-205 doi: 10.1111/j.1939-1676.1988.tb00317.x
Darien BJ, Belknap J, Nietfeld J.Two horses with cerebrospinal nematodiasis (Micronema deletrix) had signs similar to those of other neurologic diseases resulting from parasitic (fly larvae, protozoa, or other helminths) migration through the central nervous system (CNS). In one horse (horse 1), a 13-year-old Paso Fino stallion, the cerebrospinal fluid (CSF) was slightly xanthochromic (1+), with a pleocytosis (25 nucleated cells/microliter) and a normal protein level (69 mg/dl). A CSF differential cell count showed 15% neutrophils, 56% lymphocytes, 22% macrophages, 5% eosinophils, and 2% basophils. In the other horse (horse 2...
Effects of an abrupt diet change from hay to concentrate on microbial numbers and physical environment in the cecum of the pony.
Applied and environmental microbiology    August 1, 1988   Volume 54, Issue 8 1946-1950 doi: 10.1128/aem.54.8.1946-1950.1988
Goodson J, Tyznik WJ, Cline JH, Dehority BA.Microbial numbers, pH, fluid volume, and turnover rate in the pony cecum were measured during an abrupt change from an all-forage to an all-concentrate diet, both fed at maintenance energy levels. Concentrate feeding resulted in increased (P less than 0.01) numbers of total viable anaerobic bacteria. The numbers of organisms growing on selective starch medium increased (P less than 0.01) when concentrate was fed, while numbers on xylan and pectin media decreased (P less than 0.025). Seven days after the diet change to concentrate, the number of bacteria growing on lactate medium increased (P l...
Ciliated protozoa in the colonic wall of horses.
Journal of comparative pathology    February 1, 1988   Volume 98, Issue 2 205-212 doi: 10.1016/0021-9975(88)90019-9
Kirkpatrick CE, Saik JE.Ciliated protozoa of several morphological types were found in the colonic tissue of 8 horses, mostly immature Standardbreds. Most of the protozoa observed appeared similar to those normally found as commensals in the equine large intestinal lumen. In all cases, organisms were located in the lamina propria; organisms were also found in the submucosa of 2 horses. The association of colonic disease with the presence of intramural ciliates was unclear.
Equine protozoal myeloencephalitis.
The Veterinary clinics of North America. Equine practice    August 1, 1987   Volume 3, Issue 2 397-403 doi: 10.1016/s0749-0739(17)30682-x
Madigan JE, Higgins RJ.Equine protozoal myeloencephalitis (EPM) is a disease that produces neurologic signs of brain or spinal cord dysfunction. The causative organism is believed to be a Sarcocystis species of protozoa. A definitive diagnosis can only be made on histopathology of affected spinal cord or brain. No preventive measures or documented treatment is available at this time for suspected cases of EPM.
Comparative epidemiology of coccidia: clues to the etiology of equine protozoal myeloencephalitis.
International journal for parasitology    February 1, 1987   Volume 17, Issue 2 615-620 doi: 10.1016/0020-7519(87)90138-x
Fayer R, Dubey JP.No abstract available
Equine protozoal myeloencephalitis in southern Brazil.
The Veterinary record    September 13, 1986   Volume 119, Issue 11 283-284 doi: 10.1136/vr.119.11.283
Lombardo de Barros CS, de Barros SS, dos Santos MN.No abstract available
Other parasites. Recent advances.
The Veterinary clinics of North America. Equine practice    August 1, 1986   Volume 2, Issue 2 329-336 doi: 10.1016/s0749-0739(17)30719-8
Klei TR.This article briefly reviews new information on trichostrongylid stomach worms, spirurid stomach worms, tapeworms, threadworms, pinworms, intestinal protozoa, lungworms, eye worms, and numerous other aberrant parasites as it relates to prevalence, pathogenesis of diseases, and treatments.
Protozoal diseases.
The Veterinary clinics of North America. Equine practice    August 1, 1986   Volume 2, Issue 2 439-459 doi: 10.1016/s0749-0739(17)30726-5
Mayhew IG, Greiner EC.The clinical and pathologic findings of and therapy for such protozoal diseases as equine protozoal myeloencephalitis, toxoplasmosis, sarcocystosis, pneumocytosis, cryptosporidiosis, giardiasis, besnoitiosis, and klossiellosis are discussed. Emphasis is placed on disorders that occur with greater frequency in North America and on emerging protozoal diseases affecting horses.
Equine protozoal myeloencephalitis in a pony.
Journal of the American Veterinary Medical Association    June 1, 1986   Volume 188, Issue 11 1311-1312 
Dubey JP, Miller S.A 10-year-old pony died 5 days after the onset of a nervous disorder. Necropsy revealed a yellowish area of discoloration (1.5 by 1 cm) in the medulla oblongata. Microscopically, necrosis and nonsuppurative myeloencephalitis were found in the medulla oblongata. Immature and mature meronts (25 by 10 microns) were seen in neural tissue and in capillaries of the brain stem. Organisms were similar structurally to those seen in equine protozoal myeloencephalitis of horses.
Toxoplasma-like sporozoa in an aborted equine fetus.
Journal of the American Veterinary Medical Association    June 1, 1986   Volume 188, Issue 11 1312-1313 
Dubey JP, Porterfield ML.Multifocal areas of necrosis and infiltrations of mononuclear cells were seen in lung specimens of an equine fetus aborted 2 months before term. Extracellular and intracellular protozoa were seen in the alveolar tissue. Individual organisms were 4 microns by 2.5 microns, and cyst-like structures were 25 microns by 18 microns. Organisms did not stain with periodic acid-Schiff or by use of the immunoperoxidase and peroxidase-antiperoxidase method for Toxoplasma gondii. Twelve days after abortion, the mare had serum antibody titer of less than 1:10 against T gondii.
Tissue-invading ciliates associated with chronic colitis in a horse.
Journal of comparative pathology    January 1, 1986   Volume 96, Issue 1 109-114 doi: 10.1016/0021-9975(86)90028-9
Gregory MW, Longstaff JA, Giles CJ.Ciliates resembling Polymorphella ampulla (Dogiel, 1929) were found in large numbers in the crypts and lamina propria of the caecum and colon of a one-year-old Thoroughbred gelding that had shown recurring bouts of chronic diarrhoea and weight loss over a 5-month period. A heavy burden of helminths, mainly cyathostomes (trichonemes) was present at post-mortem examination and no significant bacterial pathogens were recovered. It was considered that the Polymorphella (which is normally a commensal organism) had in this case assumed a secondary pathogenic role.
[Prevalence of equine toxoplasmosis evaluated by the indirect immunofluorescence technic, Matto Grosso do Sul, Brazil].
Boletin de la Oficina Sanitaria Panamericana. Pan American Sanitary Bureau    August 1, 1985   Volume 99, Issue 2 158-162 
Larangeira NL, Ishizuka MM, Hyakutake S.No abstract available
Persistence of encysted Toxoplasma gondii in tissues of equids fed oocysts.
American journal of veterinary research    August 1, 1985   Volume 46, Issue 8 1753-1754 
Dubey JP.Thirteen 6-month- to 13-year-old equids were each inoculated orally with 10,000 infective Toxoplasma gondii oocysts. The equids remained clinically normal. Equids were euthanatized on postinoculation days 33, 45, 90, 104, 120, 140, 162, 183, 197, 204, 211, 294, and 476. Their tissues were bioassayed for viable oocysts by feeding muscles to Toxoplasma-free cats and by inoculation of pepsin digests of 13 organs into mice. Using mouse inoculation, T gondii was recovered from tissues of the 9 equids euthanatized on each of postinoculation days 33, 45, 120, 140, 183, 197, 211, 294, and 476. Toxopla...