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Topic:Cell Culture

Cell culture in horses involves the in vitro cultivation of equine cells under controlled conditions. This technique is employed to study various cellular processes, including growth, differentiation, and response to external stimuli, in an isolated environment. Equine cell cultures can be derived from various tissues, such as skin, muscle, or bone, and are used in a range of research applications, including genetic studies, drug testing, and disease modeling. These cultures provide a valuable platform for understanding cellular mechanisms and developing therapeutic strategies. This page compiles peer-reviewed research studies and scholarly articles that explore the methodologies, applications, and findings related to cell culture in equine research.
[Equine arteritis virus: multiplication in BHK 21-cells buoyant density and electron microscopical demonstration].
Archiv fur die gesamte Virusforschung    January 1, 1970   Volume 30, Issue 1 47-58 
Maess J, Reczko E, Böhm HO.No abstract available
Isolation of herpesvirus from equine leukocytes: comparison with equine rhinopneumonitis virus.
Canadian journal of comparative medicine : Revue canadienne de medecine comparee    January 1, 1970   Volume 34, Issue 1 59-65 
Kemeny L, Pearson JE.An agent which possessed the properties of herpesviruses was isolated from the leukocytes of 71 out of 80 (88.7%) apparently normal Iowa horses. It was ether- and heat-sensitive, DNA type, and produced type-A intranuclear inclusion bodies in cell cultures. Electron micrographs revealed a virion of typical herpesvirus structure. Leukocyte isolate virus could be differentiated from equine rhinopneumonitis virus (ERV) by serum neutralization, by growth differences in rabbit kidney cells, and by fluorescent antibody staining. Specific neutralizing antibody against this agent was found in a pooled ...
Electron microscopy of equine infectious anemia virus.
Journal of virology    October 1, 1969   Volume 4, Issue 4 521-527 doi: 10.1128/JVI.4.4.521-527.1969
Tajima M, Nakajima H, Ito Y.Equine infectious anemia (EIA) virus was observed in thin sections of infected cultured horse leukocytes by electron microscopy. The virus particles had a spherical shape and were between 80 and 120 nm in diameter. Most of them contained an electron-dense nucleoid 40 to 60 nm in diameter. They were observed to form by a process of budding from the plasma membrane and appeared to have thin surface projections. The particles described were not detected in uninfected cultured cells, and their appearance could be prevented by adding EIA immune serum to the inoculum. The implications of these findi...
Studies on tissue culture of equine ovarian cell types: effect of gonadotrophins and stage of cycle on steroidogenesis.
The Journal of endocrinology    March 1, 1969   Volume 43, Issue 3 415-425 doi: 10.1677/joe.0.0430415
Channing CP.Granulosa cells were harvested from follicles of mares at various stages of the oestrous cycle and maintained in a tissue culture medium containing 15% horse serum, 30% medium '199' and 55% Hanks's solution. Between days 4 and 10 of culture the granulosa cells harvested from small follicles (1–2 cm. diam.) of mares in the midluteal phase of the cycle secreted an average of 0·36 pg. progesterone/cell/day. Cells harvested from large follicles of mares in the late and/or early oestrous stage of the cycle secreted an average of 29·5 pg. progesterone cell/day; the cells harvested from the large...
Studies on tissue culture of equine ovarian cell types: pathways of steroidogenesis.
The Journal of endocrinology    March 1, 1969   Volume 43, Issue 3 403-414 doi: 10.1677/joe.0.0430403
Channing CP.No abstract available
Tissue culture of equine ovarian cell types: culture methods and morphology.
The Journal of endocrinology    March 1, 1969   Volume 43, Issue 3 381-390 doi: 10.1677/joe.0.0430381
Channing CP.No abstract available
Studies on tissue culture of equine ovarian cell types: steroidogenesis.
The Journal of endocrinology    March 1, 1969   Volume 43, Issue 3 391-402 doi: 10.1677/joe.0.0430391
Channing CP, Grieves SA.No abstract available
Morphological studies on horse kidney culture cells infected with cytopathic equine orphan (CEO) virus.
National Institute of Animal Health quarterly    January 1, 1969   Volume 9, Issue 3 149-164 
Okaniwa A, Fukunaga Y, Kono Y.No abstract available
Electron microscopic observations of equine infectious anemia (EIA) virus in cultivated horse leukocytes. (Brief report).
Archiv fur die gesamte Virusforschung    January 1, 1969   Volume 28, Issue 3 411-416 doi: 10.1007/BF01240954
Ito Y, Kono Y, Kobayashi K.No abstract available
Scanning electron microscopy of primary membrane bone.
Zeitschrift fur Zellforschung und mikroskopische Anatomie (Vienna, Austria : 1948)    January 1, 1969   Volume 99, Issue 1 98-108 doi: 10.1007/BF00338800
Boyde A, Hobdell MH.No abstract available
Changes in the histochemical behaviour of cultured cells due to differences in the serum component of the medium.
Acta histochemica    January 1, 1969   Volume 33, Issue 1 188-190 
Gyévai A, Fazekas I.No abstract available
A plaque assay of equine arteritis virus in BHK-21 cells.
Archiv fur die gesamte Virusforschung    January 1, 1969   Volume 28, Issue 1 26-33 doi: 10.1007/BF01250842
Hyllseth B.No abstract available
Behavior of equine infectious anemia virus in cell culture and development of a diagnostic test for the disease.
The Journal of infectious diseases    December 1, 1968   Volume 118, Issue 5 473-480 doi: 10.1093/infdis/118.5.473
el-Zein A, Myers WL, Segre D.No abstract available
Kinetics of cellular and viral DNA synthesis in equine abortion (herpes) virus infection of L-M cells.
Virology    September 1, 1968   Volume 36, Issue 1 104-114 doi: 10.1016/0042-6822(68)90120-7
O'Callaghan DJ, Cheevers WP, Gentry GA, Randall CC.No abstract available
[1st experiments concerning the vaccination of horses against rhino-pneumonia (viral abortion of mares) with a live vaccine from cell cultures].
Bulletin - Office international des epizooties    May 1, 1968   Volume 70, Issue 1 133-140 
Mayr A, Pette J.No abstract available
Attempts to cultivate the equine infectious anemia virus in various types of cells.
National Institute of Animal Health quarterly    January 1, 1968   Volume 8, Issue 4 182-186 
Kono Y, Yokomizo Y.No abstract available
[Culture of Trichomonas vaginalis (II)].
Folia medica    January 1, 1968   Volume 10, Issue 5 338-341 
Baltova E.No abstract available
Primary immune response in cultures of spleen cells.
Lancet (London, England)    December 16, 1967   Volume 2, Issue 7529 1279-1281 doi: 10.1016/s0140-6736(67)90393-5
Marbrook J.No abstract available
[The antiviral action of interferon in a tissue culture].
Veterinariia    December 1, 1967   Volume 44, Issue 12 25-27 
Pyrikova AP, Iakovleva LS, Korabel'nikova NI, Balezina TI, Fadeeva LL.No abstract available
Propagation and titration of equine infectious anemia virus in horse leukocyte culture.
National Institute of Animal Health quarterly    January 1, 1967   Volume 7, Issue 1 8-20 
Kobayashi K, Kono Y.No abstract available
[Cultivation of horse influenza virus in tissue cultures. (Preliminary report)].
Berliner und Munchener tierarztliche Wochenschrift    December 15, 1966   Volume 79, Issue 24 473-474 
Pette J, Teufel P.No abstract available
Biological and morphological aspects of the growth of equine abortion virus.
Journal of bacteriology    July 1, 1966   Volume 92, Issue 1 250-257 doi: 10.1128/jb.92.1.250-257.1966
Darlington RW, James C.Darlington, R. W. (St. Jude Children's Research Hospital, Memphis, Tenn.), and C. James. Biological and morphological aspects of the growth of equine abortion virus. J. Bacteriol. 92:250-257. 1966.-The growth of equine abortion virus (EAV) was studied by bioassay and electron microscopy in L-cell monolayer and suspension cultures, and in HeLa and BHK 21/13 cell monolayers. Results of virus assay (plaque-forming units) indicated that production of cell-associated virus (CAV) began at 6 to 9 hr after infection in all of the cell strains used. Virus release occurred 1 to 2 hr later. By 15 to 20 h...
Progesterone biosynthesis by equine granulosa cells growing in tissue culture.
Nature    June 18, 1966   Volume 210, Issue 5042 1266 doi: 10.1038/2101266a0
Channing CP.OUR knowledge of the pathways of steroid biosynthesis in the ovary has been gained mainly by incubations of ovaries in vitro1,2. The tissues incubated have contained numerous cell types: granulosa cells, theca interna cells, stromal cells, interstitial cells, and sometimes luteal cells. Possibly such mixtures of two or more different cell types are able to secrete hormones that one cell type cannot secrete by itself3–9. Furthermore, during such incubations in vitro an exchange of precursors and products between different cell types may be facilitated because of breakdown of naturally occurri...
[Studies on tissue culture of equine infectious anemia virus. VII. Evaluation of bovine serum used for equine leukocyte culture with special reference to the relationship between the serum protein fraction pattern and the culture growth].
Nihon juigaku zasshi. The Japanese journal of veterinary science    June 1, 1966   Volume 28, Issue 3 119-128 doi: 10.1292/jvms1939.28.119
Watanabe S.No abstract available
Experiments on Immunization of Horses by HeLa Strain Cell Cultures.
Biulleten\' eksperimental\'noi biologii i meditsiny    August 1, 1964   Volume 57 85-87 
PODOPLELOV II, UGRIUMOV EP, ZAKHAROV AF, ROSLIAKOVA NA.No abstract available
A Study on the Antigenicity of a Human Cell Line Propagated in a Heterologous Medium.
Experientia    December 15, 1963   Volume 19 628-629 doi: 10.1007/BF02151286
SWAEN GJ.No abstract available
Crystallization of C-Reactive Protein Following Removal of Associated Lipid-Containing Material by Antiserum to Normal Human Beta Lipoprotein.
The Yale journal of biology and medicine    December 1, 1963   Volume 36, Issue 3 241-248 
WOOD HF.No abstract available
Degradation of Deoxyribonucleic Acid and Alteration of Nucleic Acid Metabolism in Suspension Cultures of L-M Cells Infected with Equine Abortion Virus.
Journal of bacteriology    July 1, 1963   Volume 86, Issue 1 138-146 doi: 10.1128/jb.86.1.138-146.1963
RANDALL CC, WALKER BM.Randall, Charles C. (University of Mississippi School of Medicine, Jackson) and Barbara M. Walker. Degradation of deoxyribonucleic acid and alteration of nucleic acid metabolism in suspension cultures of L-M cells infected with equine abortion virus. J. Bacteriol. 86:138-146. 1963.-Metabolic alterations in log-phase suspension cultures infected with equine abortion virus (EAV) were determined in L-M cells simultaneously labeled or prelabeled with H(3)- or C(14)-thymidine. Although infection produced an early stimulation of the uptake of labeled thymidine (TdR) into the acid-soluble fraction of...
Infection and Growth of Equine Rhinopneumonitis Virus in Cultured Horse Kidney Cells.
The Japanese journal of experimental medicine    April 1, 1963   Volume 33 113-120 
SHIMIZU T, ISHIZAKI R, MATUMOTO M.No abstract available
A Plaque Assay for Equine Rhinopneumonitis Virus on Monolayer Culture of Horse Kidney Cells.
The Japanese journal of experimental medicine    February 1, 1963   Volume 33 85-93 
SHIMIZU T, ISHIZAKI R, MATUMOTO M.No abstract available