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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.
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...
Establishment of intestinal ciliates in new-born horses.
Nihon juigaku zasshi. The Japanese journal of veterinary science    February 1, 1985   Volume 47, Issue 1 39-43 doi: 10.1292/jvms1939.47.39
Ike K, Imai S, Ishii T.No abstract available
[Attachment of horse cecum Ciliata to plant fragments. Degradation of chloroplasts. Attachment of bacteria to cecal Ciliata].
Reproduction, nutrition, developpement    January 1, 1985   Volume 25, Issue 1A 127-139 
Bonhomme-Florentin A.Cecum microfauna association with different plant tissues was examined by scanning and transmission electron microscopy. The ciliates were attached to the damaged areas of the leaves and their highest concentrations were found on the epidermis and mesophyll tissues. The degradation of plant tissue was due to protozoal ingestion of the plant fragments. The morphology of ingested envacuolized chloroplasts changed rapidly, showing different stages of digestion inside the ciliate endoplasm. Intact chloroplasts were rarely observed but the grana of fragmented thylakoid membranes was often seen. The...
Trypanosoma cruzi (Chagas) (protozoa: Kinetoplastida: Trypanosomatidae) in invertebrate and vertebrate hosts from Brewster County in Trans-Pecos Texas.
Journal of economic entomology    February 1, 1984   Volume 77, Issue 1 126-129 doi: 10.1093/jee/77.1.126
Ikenga JO, Richerson JV.No abstract available
Sarcocystosis.
The British veterinary journal    September 1, 1983   Volume 139, Issue 5 371-377 doi: 10.1016/s0007-1935(17)30381-0
Dubey JP, Fayer R.No abstract available
A new ciliate, Spirodinium magnum sp. nov., from the light horse.
Nihon juigaku zasshi. The Japanese journal of veterinary science    August 1, 1983   Volume 45, Issue 4 525-527 doi: 10.1292/jvms1939.45.525
Ike K, Imai S, Ishii T.No abstract available
A coccidial sporocyst in equine urine.
Journal of the American Veterinary Medical Association    June 1, 1983   Volume 182, Issue 11 1250-1251 
Reinemeyer CR, Jacobs RM, Spurlock GN.No abstract available
Composition of intestinal ciliates and bacteria excreted in feces of the race-horse.
Nihon juigaku zasshi. The Japanese journal of veterinary science    April 1, 1983   Volume 45, Issue 2 157-163 doi: 10.1292/jvms1939.45.157
Ike K, Nuruki R, Imai S, Ishii T.No abstract available
Migration of a spiruroid nematode through the brain of a horse.
Journal of the American Veterinary Medical Association    June 1, 1982   Volume 180, Issue 11 1306-1311 
Mayhew IG, Lichtenfels JR, Greiner EC, MacKay RJ, Enloe CW.A pregnant 10-year-old Paint mare was examined because of an acute neurologic disturbance. Physical examination revealed signs consistent with extensive, asymmetric brain stem disease. The hemogram, serum chemical panel, and results of lumbosacral spinal fluid analysis were within normal limits. A primary diagnosis of equine protozoal myeloencephalitis was considered, and the mare was placed on treatment with trimethoprim-sulfadiazine. After 5 weeks of steady improvement, an acute exacerbation of neurologic signs necessitated euthanasia of the mare. At necropsy, large, malacic tracts were foun...
The use of inert markers in the measurement of the digestibility of cubed concentrates and of hay given in several proportions to the pony, horse and white rhinoceros (Diceros simus).
Comparative biochemistry and physiology. A, Comparative physiology    January 1, 1982   Volume 72, Issue 1 77-83 doi: 10.1016/0300-9629(82)90013-5
Frape DL, Tuck MG, Sutcliffe NH, Jones DB.1. The rate of passage of chromic oxide (Cr) was similar in the pony and rhinoceros. 2. Higher apparent amounts digested were found using 4N-HCl-insoluble ash (AIA) than those determined by Cr, but overall digestibilities were similar for the two species. 3. An abrupt increase in the starch content of the horse diets increased the number of faecal ciliate protozoa. Only when the overall feed intake was increased in horses receiving a high dietary proportion of starch were the numbers depressed. 4. When the rhinoceros received 109 kJ apparent DE per kg bodyweight daily (716 kJ/W0.75 daily) it m...
Chilomastix as a probable cause of enteritis in two horses.
The Veterinary record    November 28, 1981   Volume 109, Issue 22 494 doi: 10.1136/vr.109.22.494
Araya O, Berríos A, Leyán V, Franjola R.No abstract available
[Occasional parasitoses and toxoplasma antibodies in Equidae in Belgium. Special reference to coccidiosis].
Schweizer Archiv fur Tierheilkunde    May 1, 1981   Volume 123, Issue 5 263-271 
Cotteleer C, Famerée L.No abstract available
Klossiella equi in the kidneys of a horse.
The Canadian veterinary journal = La revue veterinaire canadienne    May 1, 1981   Volume 22, Issue 5 159-161 
Austin RJ, Dies KH.The protozoan, Klossiella equi was found in the kidneys of an aged Shetland mare raised in the Fredericton area of New Brunswick. This is the first published report of K. equi in a horse in Canada. The microscopic appearance of the parasite in the kidney is described. A brief discussion of other conditions seen in the horse is also presented.
Equine protozoal myeloencephalitis: a report of two cases from Western Canada.
The Canadian veterinary journal = La revue veterinaire canadienne    May 1, 1981   Volume 22, Issue 5 140-144 
Clark EG, Townsend HG, McKenzie NT.Two cases of nonsuppurative myeloencephalitis are reported which clinically and pathologically resemble equine protozoal myeloencephalitis. Lesions in both horses were associated with Toxoplasma-like organisms visible in microscopic sections. Clinical signs and lesions in one case primarily involved the brain and in the other case principally involved the spinal cord and associated meninges. Positive identification of the organisms was not achieved; however, the etiological agent is unlikely to be a species of Toxoplasma. Recently published studies suggest a species of Sarcocystis is involved....
Evidence for Sarcocystis as the etiologic agent of equine protozoal myeloencephalitis.
The Journal of protozoology    August 1, 1980   Volume 27, Issue 3 288-292 doi: 10.1111/j.1550-7408.1980.tb04259.x
Simpson CF, Mayhew IG.Equine protozoal myeloencephalitis (EPM) was diagnosed in 10 horses. By electron microscopy, schizonts were found in intact host cells of the spinal cords or, more frequently, free in the extracellular spaces. Developmental stages of schizonts differed morphologically, and the late stage of schizogony was characterized by endopolygeny. These findings permitted tentative identification of the protozoon as a Sarcocystis sp. Free merozoites were present in the extracellular spaces or in cells of the spinal cord. Pericytes of capillaries were most frequently parasitized by merozoites were present ...
Scanning electron microscopy of ciliary zones of the ciliate protozoa in the large intestine of the horse.
The Journal of parasitology    June 1, 1979   Volume 65, Issue 3 434-440 
Imai S, Ozeki K, Fujita J.The surface structure of the ciliary zone in 13 species of ciliates found in the large intestine of the horse was observed by scanning electron microscopy. In Holophryoides ovalis many fine depressions considered to be a result of phagocytosis or pinocytosis in the naked cytostome were noticed. In Blepharocorys spp. a distinct section was present between the portion with cilia and that without cilia. It was not present, however, in some species of the family Buetschliidae, such as Bundleia postciliata and Didesmis spp. The species of Entodiniomorphida had a lip around the ciliary zone with cil...
Prevalence of Toxoplasma gondii infection in horses.
The Journal of parasitology    April 1, 1979   Volume 65, Issue 2 331-334 
Al-Khalidi NW, Dubey JP.No abstract available
Cryptosporidiosis in immunodeficient Arabian foals.
Veterinary pathology    January 1, 1978   Volume 15, Issue 1 12-17 doi: 10.1177/030098587801500102
Snyder SP, England JJ, McChesney AE.Five of six immunodeficient Arabian foals that died of adenoviral infection were found to be infected with an intestinal coccidian of the genus Cryptosporidium. Various developmental stages of the organism were found in the microvillous border of the intestinal mucosa. The foals had diarrhea but it was not possible to separate the effects of the cryptosporidial infection from those of the concomitant adenoviral enteritis.