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Topic:Microbiology

Microbiology and horses explores the interactions between microorganisms and equine hosts, focusing on the role of bacteria, viruses, fungi, and other microbes in horse health and disease. This field examines the microbial flora present in various equine environments, including the gastrointestinal tract, skin, and respiratory system, and investigates how these microorganisms influence equine physiology and pathology. Research in this area includes studies on microbial infections that affect horses, the development of antimicrobial resistance, and the impact of probiotics and prebiotics on equine health. This page compiles peer-reviewed research studies and scholarly articles that investigate the diversity, dynamics, and implications of microbial communities in horses, as well as the strategies for managing microbial-related diseases.
Development of an equine herpesvirus in two cell culture systems: light and electron microscopy.
Infection and immunity    November 1, 1972   Volume 6, Issue 5 865-876 doi: 10.1128/iai.6.5.865-876.1972
Fong CK, Hsiung GD.Development of equine herpesvirus strain 82A was studied in cells from primary horse kidney (HOK) cultures and an equine dermis (ED) cell strain. HOK and ED cells are equally susceptible to the 82A virus infection and yield about the same amount of infectious virus. Intranuclear inclusions were present in both cell systems, but a ring-shaped syncytial formation was observed only in infected ED cells. Ultrastructural studies revealed the presence of dense granules 30 nm in diameter and characteristic star-like clusters of granules in the infected HOK cells, but these granules were rarely seen i...
Toxicological approaches to the metabolites of Fusaria. IV. Microbial survey on “bean-hulls poisoning of horses” with the isolation of toxic trichothecenes, neosolaniol and T-2 toxin of Fusarium solani M-1-1.
The Japanese journal of experimental medicine    June 1, 1972   Volume 42, Issue 3 187-203 
Ueno Y, Ishii K, Sakai K, Kanaeda S, Tsunoda H.No abstract available
Inhibition of the interaction between fimbrial haemagglutinins and erythrocytes by D-mannose and other carbohydrates.
Journal of general microbiology    June 1, 1972   Volume 71, Issue 1 149-157 doi: 10.1099/00221287-71-1-149
Old DC.No abstract available
Haemolytic strains of Actinobacillus equuli.
New Zealand veterinary journal    June 1, 1972   Volume 20, Issue 6 102 doi: 10.1080/00480169.1972.34024
Hughes KL, Murphy S.No abstract available
Scanning electron microscopy of selected dermatophytes of veterinary importance.
American journal of veterinary research    March 1, 1972   Volume 33, Issue 3 607-613 
Pier AC, Rhoades KR, Hayes TL, Gallagher J.No abstract available
The microflora of the cervix of the thoroughbred mare: a clinical and bacteriological survey in a large-animal practice in Hastings.
New Zealand veterinary journal    December 1, 1971   Volume 19, Issue 12 291-302 doi: 10.1080/00480169.1971.33984
Elliott RE, Callaghan EJ, Smith BL.No abstract available
[Microtest for the detection of neutralizing antibodies against equine rhinopneumonitis virus].
Zentralblatt fur Veterinarmedizin. Reihe B. Journal of veterinary medicine. Series B    September 1, 1971   Volume 18, Issue 7 517-526 
Bibrack B, Härtl G.No abstract available
The toxic antigenic factors produced by Clostridium botulinum types C and D.
The Onderstepoort journal of veterinary research    June 1, 1971   Volume 38, Issue 2 93-98 
Jansen BC.No abstract available
Digestion and absorption of 15N-labelled microbial protein in the large intestine of the horse.
The British veterinary journal    May 1, 1971   Volume 127, Issue 5 11-13 doi: 10.1016/s0007-1935(17)37583-8
Slade LM, Bishop R, Morris JG, Robinson DW.No abstract available
Immunofluorescent localization of equine infectious anemia virus in tissue.
The American journal of pathology    February 1, 1971   Volume 62, Issue 2 283-294 
McGuire TC, Crawford TB, Henson JB.No abstract available
Studies on the substructure of togaviruses. II. Analysis of equine arteritis, rubella, bovine viral diarrhea, and hog cholera viruses.
Archiv fur die gesamte Virusforschung    January 1, 1971   Volume 33, Issue 3 306-318 
Horzinek M, Maess J, Laufs R.No abstract available
Bacteriology of Nigerian strains of Dermatophilus congolensis.
Tropical animal health and production    January 1, 1971   Volume 3, Issue 4 225-231 doi: 10.1007/BF02359584
Macadam I, Haalstra RT.No abstract available
Results of a survey on bacteriologic culturing of broodmares.
Journal of the American Veterinary Medical Association    December 1, 1970   Volume 157, Issue 11 1460-1464 
Lieux P, Baker RH, DeGroot A, Laskey HH, Raynor RE, Simpson JG, Tobler E.No abstract available
Intestinal permeability to Escherichia coli in the foal.
American journal of veterinary research    August 1, 1970   Volume 31, Issue 8 1481-1483 
Staley TE, Jones EW, Corley LD, Anderson IL.No abstract available
The fine structure of equine papillomas and the equine papilloma virus.
Journal of ultrastructure research    February 1, 1970   Volume 30, Issue 3 328-343 doi: 10.1016/s0022-5320(70)80066-1
Fulton RE, Doane FW, Macpherson LW.Combined light and electron microscopy were used to follow the sequence of virus development in equine papillomas. The deepest layer in which virus was observed was the stratum spinosum of the epidermis. In this layer virus was scattered throughout the nuclei and was occasionally found in association with the nucleolus. In the stratum granulosum virus particles were more numerous, often forming isolated nuclear aggregates. Virus inclusions observed in the stratum granulosum by electron microscopy were correlated with nuclear inclusions seen by light microscopy. In the stratum corneum closely p...
[Microsporic disease caused by Microsporum canis Bodin (1902) in horses and man in Czechoslovakia].
Ceskoslovenska dermatologie    October 1, 1969   Volume 44, Issue 5 218-222 
Buchvald J, Sedlácek V.No abstract available
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...
[Cephalexin: microbiological activity in vitro and in vivo].
Antibiotica    June 1, 1969   Volume 7, Issue 2 93-128 
Muggleton PW, Renzini G, Ravagnan G, Orsolini P.No abstract available
[Microsporiasis in horses, with special regard for a Microsporum gypseum infection in a foal].
Mykosen    May 1, 1968   Volume 11, Issue 5 337-346 
Kaben U, Ritscher D.No abstract available
[Transaminase activity of mare’s milk and koumiss in the process of its ripening].
Voprosy pitaniia    May 1, 1968   Volume 27, Issue 3 87-89 
Il'iasov IZ, Shaĭkhiev AA.No abstract available
Hemolysin production in Escherichia coli associated with nalidixic acid resistance.
Antimicrobial agents and chemotherapy    January 1, 1968   Volume 8 54-56 doi: 10.1128/AAC.8.1.54
Walton JR, Smith DH.No abstract available
[Culture of Trichomonas vaginalis (II)].
Folia medica    January 1, 1968   Volume 10, Issue 5 338-341 
Baltova E.No abstract available
Bacteriostatic effects of horse sera and serum fractions on Clostridium welchii Type A, and the abolition of bacteriostasis by iron salts.
Immunology    March 1, 1967   Volume 12, Issue 3 285-301 
Rogers HJ.Under a variety of conditions of concentration, Eh, and pH, horse anti- serum and normal horse serum exerted similar bacteriostatic effects against Type A. Ferric iron abolished the bacteriostatic effect when added during the first 2 hours of incubation at Eh+60 mV. Ferrous iron abolished the bacteriostatic effect when added after 3 hours. Ferric iron abolished the bacteriostatic effect at—140 mV. A mixture consisting of horse β- and γ-globulins together with human transferrin exerted a bacteriostatic effect similar to that of whole serum. This system responded in the same way as whole se...
Identification of staphylococcal hemolysins by an electrophoretic localization technique.
Journal of bacteriology    February 1, 1967   Volume 93, Issue 2 525-530 doi: 10.1128/jb.93.2.525-530.1967
Haque RU.A technique for identifying and characterizing staphylococcal hemolysins by first separating them electrophoretically in barbital-buffered agar gel (pH 8.4) at 5 ma/cm for 2 hr and then determining their hemolytic activities by exposing them to human, horse, rabbit, and sheep erythrocytes is described. The alpha-hemolysin produced by a White variant of the Wood 46 strain of Staphylococcus aureus migrated 18 mm towards the cathode, and it lysed horse, rabbit, and sheep erythrocytes, whereas a Clear variant of the Wood 46 strain of S. aureus produced a lysin which migrated similarly to the alpha...
Microsporum gypseum isolated from ringworm lesions in a horse.
New Zealand veterinary journal    July 1, 1966   Volume 14, Issue 7 92-93 doi: 10.1080/00480169.1966.33642
Carter ME.No abstract available
Colicine K: VI. The Immune Response of Horses to a Colicinogenic Strain of Escherichia Coli.
The Journal of experimental medicine    October 31, 1965   Volume 122, Issue 5 891-903 doi: 10.1084/jem.122.5.891
Goebel WF, Staub AM.1. The immunization of horses with the colicinogenic bacillus E. coli K235 L + O(m) stimulates antibodies which precipitate and neutralize colicine K and neutralize the heterologous colicine I as well. 2. Unlike rabbits, horses evoke predpitating antibodies for the sialic acid-containing polysaccharide colominic acid.
Isolation of Bordetella bronchiseptica from Horses.
The Veterinary record    May 29, 1965   Volume 77 632-633 
GALLAGHER GL.No abstract available
Lipid Inclusions in L Cells Associated with Venezuelan Equine Encephalomyelitis Virus Infection.
Journal of bacteriology    April 1, 1965   Volume 89, Issue 4 1101-1103 doi: 10.1128/jb.89.4.1101-1103.1965
HARDY FM, ARBITER D.Hardy, Frank M. (Fort Detrick, Frederick, Md.), and David Arbiter. Lipid inclusions in L cells associated with Venezuelan equine encephalomyelitis virus infection. J. Bacteriol. 89:1101-1103. 1965.-Venezuelan equine encephalomyelitis (VEE) virus has been shown to induce changes of lipid components within the L cell. Lipid inclusions in the form of dark granular bodies were observed in the L cell after aqueous osmium tetroxide fixation and Sudan black staining. Microscopic examination of cells as early as 8 hr after infection with VEE virus showed an increase in the concentration of these inclu...
The Specific Polysaccharide of Type XVIII Pneumococcus. III.
Biochemistry    November 1, 1963   Volume 2 1288-1294 doi: 10.1021/bi00906a020
ESTRADA-PARRA S, HEIDELBERGER M.No abstract available
A case of equine ringworm caused by Microsporum gypseum.
Nihon juigaku zasshi. The Japanese journal of veterinary science    August 1, 1963   Volume 25, Issue 4 203-205 doi: 10.1292/jvms1939.25.203
Okoshi S, Takashio M.No abstract available