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Topic:Sarcocystis

Sarcocystis is a genus of protozoan parasites that can infect horses, among other animals. These parasites are part of the Apicomplexa phylum and have a complex life cycle involving both intermediate and definitive hosts. In horses, Sarcocystis spp. are typically transmitted through ingestion of sporocysts from contaminated feed or water. While infections in horses are often subclinical, they can occasionally lead to clinical signs such as muscle weakness, ataxia, or other neurological symptoms, depending on the species of Sarcocystis involved. This topic page aggregates peer-reviewed research studies and scholarly articles that explore the epidemiology, pathogenesis, diagnostic methods, and potential impact of Sarcocystis infections in equine populations.
Determination of the activity of pyrimethamine, trimethoprim, sulfonamides, and combinations of pyrimethamine and sulfonamides against Sarcocystis neurona in cell cultures.
Veterinary parasitology    May 29, 1999   Volume 82, Issue 3 205-210 doi: 10.1016/s0304-4017(99)00020-5
Lindsay DS, Dubey JP.Equine protozoal myeloencephalitis (EPM) is a neurologic syndrome in horses from the Americas and is usually caused by infection with the apicomplexan parasite, Sarcocystis neurona. The activities of pyrimethamine, trimethoprim, sulfachloropyridazine, sulfadiazine, sulfadimethoxine, sulfamethoxazole, sulfamethazine, and sulfathiazole were examined against developing S. neurona merozoites in bovine turbinate cell cultures. A microtiter plate host cell lesion based assay was used to determine the effects of agents on developing merozoites. A cell culture flask assay was used to determine if sele...
Are Sarcocystis neurona and Sarcocystis falcatula synonymous? A horse infection challenge.
The Journal of parasitology    April 29, 1999   Volume 85, Issue 2 301-305 
Cutler TJ, MacKay RJ, Ginn PE, Greiner EC, Porter R, Yowell CA, Dame JB.Equine protozoal myeloencephalitis (EPM) is a debilitating neurologic disease of the horse. The causative agent. Sarcocystis neurona, has been suggested to be synonymous with Sarcocystis falcatula, implying a role for birds as intermediate hosts. To test this hypothesis, opossums (Didelphis virginiana) were fed muscles containing S. falcatula sarcocysts from naturally infected brown-headed cowbirds (Molothrus ater). Ten horses were tested extensively to ensure no previous exposure to S. neurona and were quarantined for 14 days, and then 5 of the horses were each administered 10(6) S. falcatula...
Multiple DNA markers differentiate Sarcocystis neurona and Sarcocystis falcatula.
The Journal of parasitology    April 29, 1999   Volume 85, Issue 2 221-228 
Tanhauser SM, Yowell CA, Cutler TJ, Greiner EC, MacKay RJ, Dame JB.Studies designed to investigate the causative agent of equine protozoal myeloencephalitis and its life cycle have been hampered by the marked similarity of Sarcocystis neurona to other Sarcocystis spp. present in the same definitive host. Random-amplified polymorphic DNA techniques were used to amplify DNA from isolates of S. neurona and Sarcocystis falcatula. DNA sequence analysis of polymerase chain reaction (PCR) products was then used to design PCR primers to amplify specific Sarcocystis spp. DNA products. The ribosomal RNA internal transcribed spacer was also amplified and compared betwee...
Neospora caninum-associated equine protozoal myeloencephalitis.
Veterinary parasitology    December 1, 1998   Volume 79, Issue 4 269-274 doi: 10.1016/s0304-4017(98)00178-2
Hamir AN, Tornquist SJ, Gerros TC, Topper MJ, Dubey JP.Equine protozoal myeloencephalitis (EPM) was clinically diagnosed in a 20-year-old horse with severe ataxia. The cerebrospinal fluid was positive for Sarcocystis neurona antibodies by western blot. The horse was administered corticosteroids to facilitate in vitro culture of S. neurona from its spinal cord following necropsy. Microscopic lesions of EPM were present in the brain and in the spinal cord, including multifocal inflammatory cellular infiltrates and several large groups of protozoa. Immunohistochemical, and light and electron microscopic examinations revealed that the protozoa were Ne...
Description of a new Neospora species (Protozoa: Apicomplexa: Sarcocystidae).
The Journal of parasitology    October 30, 1998   Volume 84, Issue 5 983-991 
Marsh AE, Barr BC, Packham AE, Conrad PA.Neospora hughesi n. sp. was isolated from the central nervous system tissue of an adult equine (Equus caballus) from California. The tachyzoites are crescent-shaped, approximately 2 x 5 microm (1.8-3.0 x 4.0-7.0 microm), with characteristic apical complex structures consisting of an anterior polar ring, conoid, numerous rhoptries filled with a uniform electron-dense material, and 22 microtubules extending posteriorly from the polar ring. Comparison of N. hughesi to canine and bovine Neospora caninum isolates showed phenotypic differences in immunoreactive proteins. Molecular analysis of the sm...
Evidence that surface proteins Sn14 and Sn16 of Sarcocystis neurona merozoites are involved in infection and immunity.
Infection and immunity    May 9, 1998   Volume 66, Issue 5 1834-1838 doi: 10.1128/IAI.66.5.1834-1838.1998
Liang FT, Granstrom DE, Zhao XM, Timoney JF.Sarcocystis neurona is the etiologic agent of equine protozoal myeloencephalitis (EPM). Based on an analysis of 25,000 equine serum and cerebrospinal fluid (CSF) samples, including samples from horses with neurologic signs typical of EPM or with histologically or parasitologically confirmed EPM, four major immunoblot band patterns have been identified. Twenty-three serum and CSF samples representing each of the four immunoblot patterns were selected from 220 samples from horses with neurologic signs resembling EPM and examined for inhibitory effects on the infectivity of S. neurona by an in vi...
Micropreparative high resolution purification of proteins by a combination of sodium dodecyl sulfate-polyacrylamide gel electrophoresis, isoelectric focusing, and membrane blotting.
Analytical biochemistry    July 15, 1997   Volume 250, Issue 1 61-65 doi: 10.1006/abio.1997.2196
Liang FT, Granstrom DE, Timoney JF, Shi YF.We report a simple, economical, and efficient protocol for protein purification from cells. First, proteins of cell lysates were separated by standard sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and electroblotted to protein-blotting membrane. The blots were stained with Coomassie blue or developed by immunoblotting to visualize specific proteins. The bands corresponding to those visible by immunoblotting were excised from the dye-stained blots and subjected to isoelectric focusing. The focused gel was stained with Coomassie blue. Finally, the stained bands were excise...
Pyogranulomatous encephalitis associated with an unidentified Sarcocystis neurona-like organism in a horse. Hamir AN, Gerros TC, Dubey JP.No abstract available
Epizootic of equine protozoal myeloencephalitis on a farm.
Journal of the American Veterinary Medical Association    April 1, 1997   Volume 210, Issue 7 923-927 
Fenger CK, Granstrom DE, Langemeier JL, Stamper S.To determine the clinical findings, course of treatment, and long-term outcome of horses on a farm in central Kentucky during an epizootic of equine protozoal myeloencephalitis (EPM). Methods: Cohort study. Methods: 21 horses on a farm in central Kentucky, 12 of which developed clinical signs of EPM. Methods: Horses on the farm were serially examined for signs of neurologic disease and serum and CSF antibodies to Sarcocystis neurona. Horses were considered to have EPM if they had neurologic signs and positive test results for antibodies to S neurona in CSF. Blood values were monitored for evid...
Serum antibodies to Sarcocystis neurona–half the horses in the United States have them!
Journal of the American Veterinary Medical Association    February 15, 1997   Volume 210, Issue 4 482-483 
MacKay RJ.No abstract available
Seroprevalence of antibodies to Sarcocystis neurona in horses residing in Oregon.
Journal of the American Veterinary Medical Association    February 15, 1997   Volume 210, Issue 4 525-527 
Blythe LL, Granstrom DE, Hansen DE, Walker LL, Bartlett J, Stamper S.To determine seroprevalence of antibodies to Sarcocystis neurona in neurologically normal horses residing in 4 regions of Oregon and to describe the effects of age, gender, breed, and housing on seroprevalence within each region. Methods: Prevalence survey. Methods: Serum samples from 334 horses systematically selected by practicing veterinarians. Methods: Antibodies to S neurona were measured in sera, using a western blot. Information including age, gender, breed, housing, geographic location, and duration of residence was obtained for each horse. Data were analyzed, using descriptive statist...
Seroprevalence of antibodies to Sarcocystis neurona in horses residing in Ohio.
Journal of the American Veterinary Medical Association    February 15, 1997   Volume 210, Issue 4 519-524 
Saville WJ, Reed SM, Granstrom DE, Hinchcliff KW, Kohn CW, Wittum TE, Stamper S.To determine the seroprevalence of serum antibodies to Sarcocystis neurona in horses residing in Ohio. Methods: Prevalence survey. Methods: Serum from samples from 1,056 horses. Serum was collected on every 36th sample submitted to the Ohio State Diagnostic Laboratory for testing for equine infectious anemia. Methods: Serum was frozen at -80 C and analyzed for antibodies to S neurona, using a western blot. Information regarding blood sample collection, age, breed, sex, and geographic location was recorded for each horse. Data were analyzed, using multivariable logistic regression. Results: Hor...
Seroprevalence of antibodies to Sarcocystis neurona in horses residing in a county of southeastern Pennsylvania.
Journal of the American Veterinary Medical Association    February 15, 1997   Volume 210, Issue 4 517-518 
Bentz BG, Granstrom DE, Stamper S.To determine seroprevalence of Sarcocystis neurona-specific antibodies in a population of horses residing in Chester County, Pa. Methods: Prevalence survey. Methods: 117 serum samples from selected members of a population of 580 Thoroughbred horses. Methods: Serum was analyzed for antibodies to Sarcocystic neurona, using a western blot. Information regarding age, sex, and housing of horse was obtained by questionnaire. Data were analyzed, using multivariable logistic regression. Results: Seroprevalence was 45.3% (95% CI, 36.3 to 54.3%). A relationship was not found between seroprevalence and s...
Experimental induction of equine protozoal myeloencephalitis in horses using Sarcocystis sp. sporocysts from the opossum (Didelphis virginiana).
Veterinary parasitology    February 1, 1997   Volume 68, Issue 3 199-213 doi: 10.1016/s0304-4017(96)01112-0
Fenger CK, Granstrom DE, Gajadhar AA, Williams NM, McCrillis SA, Stamper S, Langemeier JL, Dubey JP.Sarcocystis sp. sporocysts isolated from eight feral opossums (Didelphis virginiana) were pooled and fed to 18 commercially reared budgerigars (Melopsittacus undulatus), 14 wild-caught sparrows (Passer domesticus), one wild-caught slate-colored Junco (Junco hyemalis) and five weanling horses (Equus caballus). All budgerigars died within 5 weeks post inoculation (wpi). Histologic examination revealed meronts within the pulmonary epithelia and typical Sarcocystis falcatula sarcocysts developing in the leg muscles. Sparrows were euthanized 13 and 17 wpi and their carcasses were fed to four labora...
Neosporosis as a cause of equine protozoal myeloencephalitis.
Journal of the American Veterinary Medical Association    December 1, 1996   Volume 209, Issue 11 1907-1913 
Marsh AE, Barr BC, Madigan J, Lakritz J, Nordhausen R, Conrad PA.Neosporosis was diagnosed in an 11-year-old Quarter Horse gelding with clinical signs and diagnostic test results compatible with equine protozoal myeloencephalitis (EPM). Presumptive postmortem diagnosis of EPM attributable to Sarcocystis neurona infection is generally made on the basis of detecting an antibody titer to S neurona in the CSF or characteristic histologic lesions, even when parasites have not been specifically identified. Neosporosis was confirmed in the horse described here by use of immunohistochemical examination, in vitro culturing, and ultrastructural and molecular characte...
Sequence analysis and polymerase chain reaction amplification of small subunit ribosomal DNA from Sarcocystis neurona.
American journal of veterinary research    July 1, 1996   Volume 57, Issue 7 975-981 
Marsh AE, Barr BC, Madigan J, Lakritz J, Conrad PA.To identify Sarcocystis neurona-specific DNA sequences in the nuclear small subunit ribosomal RNA (nss-rRNA) gene that could be used to distinguish S neurona from other closely related protozoal parasites, and to evaluate a polymerase chain reaction (PCR) test, using broad based primers and a unique species-specific probe on CSF for detection of S neurona in equids. Methods: Sequencing of the nuclear small subunit ribosomal RNA gene from a new S neurona isolate (UCD 1) was performed. The sequence was compared with that of other closely related Sarcocystidae parasites. From this sequence, conse...
Prevalence of sarcocysts in livestock of northwest Ethiopia.
Zentralblatt fur Veterinarmedizin. Reihe B. Journal of veterinary medicine. Series B    March 1, 1996   Volume 43, Issue 1 55-58 doi: 10.1111/j.1439-0450.1996.tb00287.x
Woldemeskel M, Gebreab F.A survey of Sarcocystis was conducted in cattle, sheep, goats, donkeys and chickens. A total of 671 haematoxylin-eosin (H-E) stained muscle tissue samples, including diaphragm, masseter, cardiac and oesophageal musculatures were examined. Additionally, cardiac muscle samples from 40 fetuses were included. An infestation rate of 93% in sheep, 82% in cattle, 81% in goats, 16.6% in donkeys and 6.6% in chickens was noted. The infestation rate of diaphragm, masseter, cardiac and oesophageal musculatures seems to be similar. None of the 40 fetal heart muscle samples from bovine, ovine, caprine and d...
Identification of opossums (Didelphis virginiana) as the putative definitive host of Sarcocystis neurona.
The Journal of parasitology    December 1, 1995   Volume 81, Issue 6 916-919 
Fenger CK, Granstrom DE, Langemeier JL, Stamper S, Donahue JM, Patterson JS, Gajadhar AA, Marteniuk JV, Xiaomin Z, Dubey JP.Sarcocystis neurona is an apicomplexan that causes equine protozoal myeloencephalitis (EPM) in North and South America. Horses appear to be an aberrant host, because the merozoites continually divide in the central nervous system, without encysting. The natural host species has not previously been identified. The small subunit ribosomal RNA (SSURNA) gene of S. neurona was compared to those of Sarcocystis muris, Sarcocystis cruzi, Toxoplasma gondii, and Cryptosporidium parvum to identify a unique region suitable for a species-specific amplification primer. The S. neurona SSURNA primer was used ...
Sarcocystis falcatula from passerine and psittacine birds: synonymy with Sarcocystis neurona, agent of equine protozoal myeloencephalitis.
The Journal of parasitology    December 1, 1995   Volume 81, Issue 6 930-935 
Dame JB, MacKay RJ, Yowell CA, Cutler TJ, Marsh A, Greiner EC.Equine protozoal myeloencephalitis (EPM) is a neurologic disease of horses caused by Sarcocystis neurona. The horse is a dead-end host for S. neurona and the definitive and intermediate hosts have not previously been identified. We hypothesized that S. neurona is actually Sarcocystis falcatula, a parasite that cycles in nature between Virginia opossums (Didelphis virginiana) and any of a variety of avian intermediate hosts. We extracted DNA from S. falcatula sarcocysts in the muscle of a brown-headed cowbird (Molothrus ater) and from schizonts in a fixed specimen of lung from a Moluccan cockat...
Phylogenetic relationship of Sarcocystis neurona to other members of the family Sarcocystidae based on small subunit ribosomal RNA gene sequence.
The Journal of parasitology    December 1, 1994   Volume 80, Issue 6 966-975 
Fenger CK, Granstrom DE, Langemeier JL, Gajadhar A, Cothran G, Tramontin RR, Stamper S, Dubey JP.Sarcocystis neurona is a coccidial parasite that causes a neurologic disease of horses in North and South America. The natural host species are not known and classification is based on ultrastructural analysis. The small subunit ribosomal RNA (SSURNA) gene of S. neurona was amplified using polymerase chain reaction techniques and sequenced by Sanger sequencing reactions. The sequence was compared with partial sequences of S. muris, S. gigantea, S. tenella, S. cruzi, S. arieticanis, S. capracanis, Toxoplasma gondii, Eimeria tenella, and Cryptosporidium parvum. Alignments of available sites for ...
Multifocal myositis associated with Sarcocystis sp in a horse.
Journal of the American Veterinary Medical Association    December 1, 1994   Volume 205, Issue 11 1574-1576 
Traub-Dargatz JL, Schlipf JW, Granstrom DE, Ingram JT, Shelton GD, Getzy DM, Lappin MR, Baker DC.Multifocal myositis was diagnosed in a 7-year-old Quarter Horse gelding on the basis of history and findings on physical examination, serum biochemical analysis, electromyography, and microscopic examination of frozen sections of muscle biopsy specimens. Histologic examination of the muscle specimen revealed multifocal accumulations of histiocytes, lymphocytes, and plasma cells, with attendant myofiber degeneration and necrosis. Parasitic cysts with morphologic characteristics of Sarcocystis sp were found in regions of myocyte degeneration and necrosis, and in regions of normal muscle. Based o...
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 ...
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...
Sarcocystis neurona-associated ataxia in horses in Brazil.
Veterinary parasitology    October 1, 1992   Volume 44, Issue 3-4 311-314 doi: 10.1016/0304-4017(92)90128-v
Masri MD, Alda JL, Dubey JP.Sarcocystis neurona-like schizonts were found in sections of brain and spinal cord of two ataxic horses from Brazil. The diagnosis was supported by staining with anti-Sarcocystis serum in an immunohistochemical test. One of the affected horses was born in Argentina and raised in Brazil, and the other horse was born and raised in Brazil.
A five year (1985-1989) retrospective study of equine neurological diseases with special reference to rabies.
Journal of comparative pathology    May 1, 1992   Volume 106, Issue 4 411-421 doi: 10.1016/0021-9975(92)90025-p
Hamir AN, Moser G, Rupprecht CE.A retrospective study of horses necropsied between 1985 and 1989 at a diagnostic laboratory of a veterinary school in North America is documented. In this investigation over 20 per cent of the horses had clinical neurological signs. Equine protozoal myeloencephalitis (caused by Sarcocystis neurona) and cervical stenotic myelopathy (wobbler syndrome) were the most common of these disorders. The veterinary school is located in the midst of a raccoon rabies enzootic area. However, only four cases of equine rabies were diagnosed during the 5-year study. The gross microscopical and immunohistochemi...
Incidence of sarcocysts in skeletal muscles of horses.
Veterinary parasitology    April 1, 1992   Volume 42, Issue 1-2 33-40 doi: 10.1016/0304-4017(92)90100-n
Gunn HM, Fraher JP.The incidence of sarcocysts was examined in postural, propulsive and respiratory muscles from 74 horses ranging in age from mid-gestation to 14 years post-natal. Cryostat sections were stained for myosin adenosine triphosphatase (ATPase) at pH 9.5 and the type of muscle fibre containing sarcocysts was identified. Sarcocysts were found in muscles from three animals, all aged 1 year or more. Counts showed that they displayed no preference for any particular muscle. However, fibres with a high activity for myosin ATPase were preferentially colonized. Transverse sectional profiles of sarcocysts sh...
Characterization of Sarcocystis neurona from a thoroughbred with equine protozoal myeloencephalitis.
The Cornell veterinarian    January 1, 1992   Volume 82, Issue 1 41-52 
Bowman DD, Cummings JF, Davis SW, deLahunta A, Dubey JP, Suter MM, Rowland PH, Conner DL.Morphological information is presented for syntype material of the etiologic agent of equine protozoal myeloencephalitis, Sarcocystis neurona. A clinical description of the horse from which the organism was isolated and the methodology used to immunosuppress the horse in an attempt to increase parasite numbers are also given. The description includes microscopic details observed both with light and transmission electron microscopy. Mainly stages from tissue are illustrated, but information is also presented on the development of the organism after inoculation onto monolayers of bovine monocyte...
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