Analyze Diet

Topic:Streptococcus

Streptococcus spp. are a genus of bacteria that can affect horses, leading to various infections and health conditions. These bacteria are known for causing respiratory and systemic diseases, including strangles, which is primarily caused by Streptococcus equi subsp. equi. Streptococcal infections in horses can result in symptoms such as fever, nasal discharge, and lymph node abscessation. The transmission typically occurs through direct contact with infected animals or contaminated environments. Diagnosis often involves bacterial culture or PCR testing. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, pathogenesis, diagnosis, and treatment of Streptococcus infections in equine populations.
Internal abdominal abscesses in the horse: a study of 25 cases.
Journal of the American Veterinary Medical Association    February 1, 1978   Volume 172, Issue 3 304-309 
Rumbaugh GE, Smith BP, Carlson GP.internal abdominal abscesses in 25 horses, including 8 horses that died or were euthanatized, were found to be caused by Streptococcus equi, Streptococcus zooepidemicus, or Corynebacterium pseudotuberculosis. Breed or sex predilection was not found. Although horses of all ages were affected, those under 5 years of age were more commonly affected. Nearly all of the horses had a history of respiratory catarrh or lymphadenitis. Horses with internal abdominal abscesses also had intermittent, prolonged colic or chronic weight loss. Most horses had increased rectal temperature, increased heart and r...
Streptococci in animal disease.
Society for Applied Bacteriology symposium series    January 1, 1978   Volume 7 143-156 
Wilson CD, Salt GF.No abstract available
Regulation of the synthesis of M protein by sugars, Todd Hewitt broth, and horse serum, in growing cells of Streptococcus pyogenes.
Microbios    January 1, 1978   Volume 21, Issue 85-86 185-212 
Pine L, Reeves MW.Various sugars were tested for their effect on the differential rate of synthesis of M protein during the growth of Streptococcus pyogenes strain 0055 M12T12. In a semisynthetic medium alone, a high rate of M protein synthesis occurred with glucose as a substrate; decreasing rates of synthesis occurred with sucrose and trehalose, in that order, although the rates of growth were approximately equal with all sugars. A period of derepressed synthesis of M protein occurred in the lag phase of growth and in the stationary period as the substrates were being depleted. Although glucose inhibited the ...
Beta hemolytic group C streptococcal respiratory infection in infant and horse.
The Journal of pediatrics    November 1, 1977   Volume 91, Issue 5 845 doi: 10.1016/s0022-3476(77)81056-1
Rom S.No abstract available
Anaphylactoid purpura in a horse.
Veterinary pathology    July 1, 1977   Volume 14, Issue 4 325-331 doi: 10.1177/030098587701400403
Gunson DE, Rooney JR.An 8-year-old gelding with a long-standing, streptococcal respiratory infection developed dyspnoea and colic. Laparotomy disclosed numerous, discrete, hemorrhagic, thick areas of necrosis throughout the intestinal tract. At postmortem examination similar lesions were seen in the laryngeal mucosa and in many skeletal muscles. Microscopically these lesions had massive necrosis and hemorrhage with a leucocytoclastic vasculitis in adjacent tissue. This condition resembled anaphylactoid purpura (Henoch-Schönlein disease) in man. Fungal infection was ruled out by special stains which failed to show...
[Bacterial flora of the conjunctival sac of the horse].
Annali Sclavo; rivista di microbiologia e di immunologia    January 1, 1976   Volume 18, Issue 1 91-119 
Cattabiani F, Cabassi E, Allodi C, Gianelli F.The AA. report the results of taxonomic research conducted on the conjunctival sac of 59 horses for identification of the present bacterial flora. In the controlled animals, it was observed, at the level of the considered niche, a community constituted of normal bacterial populations, but not autochtonous in the significance they attributed from DUBOS et al., relative to the characterization of the indigenous microbiota of the intestine. The isolated normal bacterial flora seems to be constituted of: Micrococcus (subgroup 6 of Baird-Parker, M. luteus, Micrococcus spp.) isolated in 49,15% of th...
Immunity to Streptococcus equi.
Australian veterinary journal    December 1, 1975   Volume 51, Issue 12 554-559 doi: 10.1111/j.1751-0813.1975.tb09379.x
Woolcock JB.Using the long chain test, and in some cases the bactericidal test, to measure antibody, the development of the immune response in horses to Str. equi has been followed. Long chain indices in excess of 5.0, accompanied by strong bactericidal capacity, were recorded in serums after the full 3-dose immunisation course with a commercial vaccine. The full course elicited the most satisfactory antibody titres declined within the 12 month post-vaccination period, thus providing support for the recommendation that yearly booster doses should be administered. The immune response in horses during 2 str...
Experimentally-induced Streptococcus equi infection in horses with resultant guttural pouch empyema.
Veterinary medicine, small animal clinician : VM, SAC    October 1, 1975   Volume 70, Issue 10 1194-1199 
Knight AP, Voss JL, McChesney AE, Bigbee HG.No abstract available
Studies in atypical Streptococcus equi.
Research in veterinary science    September 1, 1975   Volume 19, Issue 2 115-119 
Woolcock JB.An atypical variety of Streptococcus equi is described. It was shown to be deficient in capsular material, to be very virulent for mice and to possess a cell-wall protein similar to the M-like protein of classical Str equi. Antiserum prepared against classical Str equi effectively opsonised the atypical strains, and induced the formation of long chains by these atypical strains. It is possible that this variant of Str equi can be used to overcome many of the current problems associated with the manufacture and use of strangles vaccines.
Letter: Streptococcus zooepidemicus and infertility in horses.
Australian veterinary journal    May 1, 1975   Volume 51, Issue 5 281-282 doi: 10.1111/j.1751-0813.1975.tb06951.x
Hughes KL.No abstract available
[Differentiation of the causative agent of strangles from Streptococcus pyogenes].
Veterinariia    April 1, 1975   Issue 4 102-103 
Moskalik RS.No abstract available
Epidemiology of equine streptococci.
Research in veterinary science    January 1, 1975   Volume 18, Issue 1 113-114 
Woolcock JB.Equine tonsillar tissue and the draining regional lymph nodes, as well as deep nasal swabs were examined bacteriologically. Group C streptococci, predominantly Streptococcus zooepidemicus, were shown to be present in all tissues. The most frequent site for isolation was the tonsil. Streptococcus equi was not located in any of the tissues sampled.
The capsule of Streptococcus equi.
Journal of general microbiology    December 1, 1974   Volume 85, Issue 2 372-375 doi: 10.1099/00221287-85-2-372
Woolcock JB.No abstract available
[Beta-hemolytic streptococci during puerperal period in the horse].
Berliner und Munchener tierarztliche Wochenschrift    December 1, 1974   Volume 87, Issue 23 445-447 
Bonengel H, Schels H, Reissinger H.No abstract available
Vesico-ureteral reflux in a foal with streptococcal infection.
Australian veterinary journal    September 1, 1974   Volume 50, Issue 9 413-414 doi: 10.1111/j.1751-0813.1974.tb05349.x
Wallace CE, Christie BA.No abstract available
Purification and antigenicity of an M-like protein of Streptococcus equi.
Infection and immunity    July 1, 1974   Volume 10, Issue 1 116-122 doi: 10.1128/iai.10.1.116-122.1974
Woolcock JB.A cell wall component of Streptococcus equi analogous to the M protein of group A streptococci has been identified and purified. A highly purified product has been obtained from cells by hot acid extraction, followed by acid precipitation, ammonium sulfate fractionation, and column chromatography. This product reacts with S. equi antiserum. The existence of this fraction in S. equi has been confirmed by the failure of trypsin-treated cells and their extracts to remove the long-chaining capacity of S. equi antiserum. The antigenicity of this M-like protein when incorporated in adjuvant has been...
The immunology of streptococcal infections.
Australian veterinary journal    February 1, 1973   Volume 49, Issue 2 85-90 doi: 10.1111/j.1751-0813.1973.tb09322.x
Woolcock JB.No abstract available
[Efficiency of human and horse erythrocytes in the antistreptolysin reaction].
Zeitschrift fur Immunitatsforschung, experimentelle und klinische Immunologie    August 1, 1971   Volume 142, Issue 2 136-140 
Otto R.No abstract available
[Penetration of streptomycin into the aqueous humor and cerebrospinal fluid in the horse following intra-muscular administration].
Zentralblatt fur Veterinarmedizin. Reihe A    April 1, 1970   Volume 17, Issue 4 378-379 
Kottman J, Hanák J, Zakopal J.No abstract available
The clinical aspects of streptococcic infections of horses.
Journal of the American Veterinary Medical Association    July 15, 1969   Volume 155, Issue 2 413-414 
Fallon EH.No abstract available
[Evolution in France of the main viral and microbial diseases of horses. Sanitary and medical prophylaxis].
Bulletin - Office international des epizooties    July 1, 1969   Volume 70, Issue 7 915-920 
Mathieu E.No abstract available
[Intrauterine therapy of streptococcus endometritis of mares with Rifamycin SV. A preliminary communication].
Deutsche tierarztliche Wochenschrift    November 15, 1967   Volume 74, Issue 22 573-577 
de Bois CH, von Leeuwen W.No abstract available
Cross-reactions of streptococcal group N teichoic acid in antipneumococcal horse sera of types VI, XIV, XVI, and XXVII.
Journal of bacteriology    July 1, 1966   Volume 92, Issue 1 281-283 doi: 10.1128/jb.92.1.281-283.1966
Heidelberger M, Elliott S.No abstract available
[Serum Inhibitors of Streptolysin O in Animals. I. Inhibitors in Normal and Animals Immunized Against Streptolysin O].
Annales de l\'Institut Pasteur    March 1, 1964   Volume 106 380-387 
PEREZ JJ, WAHL R, BOISSOL C.No abstract available
Facilitation of demonstration of hemolytic streptococci in throat swabs by the use of nucleate and a mixture of sheep and horse blood.
Acta pathologica et microbiologica Scandinavica    January 1, 1955   Volume 36, Issue 2 187-192 doi: 10.1111/j.1699-0463.1955.tb04587.x
GRUBB R, NYMAN M.No abstract available
The characters of streptococci isolated from the uteri of thoroughbred mares in Ireland.
Journal of comparative pathology    October 1, 1952   Volume 62, Issue 4 260-265 doi: 10.1016/s0368-1742(52)80027-x
CRONIN MT.No abstract available
[Tests for demonstration of antistreptolysin in streptococcus infected horses].
Schweizer Archiv fur Tierheilkunde    April 1, 1951   Volume 93, Issue 4 265-275 
FEY H.No abstract available
A motile streptococcus from an aborted equine fetus.
The Cornell veterinarian    July 1, 1948   Volume 38, Issue 3 313-315 
BRUNER DW, EDWARDS PR.No abstract available
A Study of the Inhibition of Streptococcal Proteinase by Sera of Normal and Immune Animals and of Patients Infected with Group A Hemolytic Streptococci.
The Journal of experimental medicine    May 31, 1947   Volume 85, Issue 6 591-606 doi: 10.1084/jem.85.6.591
Todd EW.Antiproteinase sera were prepared by immunizing horses with filtrates from a selected strain of group A streptococcus. This strain, which produced high titred proteinase but no erythrogenic toxin, was selected from forty-two strains of group A streptococci which produced varying amounts of proteinase. A few strains belonging to groups B, C, and G were also tested; they were all proteinase-negative. Methods are described for titrating streptococcal proteinase in crude culture filtrates and for measuring the antiproteinase activity of serum. The antiproteinase titres of sera from immunized horse...
The Streptococci of Equines.
The Journal of experimental medicine    August 1, 1919   Volume 30, Issue 2 159-178 doi: 10.1084/jem.30.2.159
Jones FS.The lower nasal mucosa and the pharynx of thirty eastern and twenty-three western horses have been examined for streptococci. Eight of the eastern horses carried non-hemolytic streptococci on the nasal mucosa. From the pharynx of six, non-hepiolytic streptococci were cultivated. The throats of eighteen contained strains of the hemolytic type. The nasal mucosa of the eastern horses failed to show hemolytic streptococci. Eight western horses carried non-hemolytic streptococci in the nasal passage; eight also harbored the hemolytic type. Twenty-two strains were isolated from the pharynx. Eleven w...
1 20 21 22