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Topic:Virulence

Virulence in horses refers to the degree of pathogenicity exhibited by infectious agents, such as bacteria, viruses, or parasites, that affect equine health. It encompasses the mechanisms and factors that enable these pathogens to invade, cause disease, and spread within horse populations. Understanding virulence involves studying the genetic, molecular, and environmental factors that contribute to the severity of infections in horses. This topic includes research on the interaction between equine hosts and pathogens, the impact of virulence factors on disease progression, and strategies for managing and mitigating infections. This page compiles peer-reviewed research studies and scholarly articles that explore the mechanisms, impacts, and management of virulence in equine diseases.
Change in host cell tropism associated with in vitro replication of equine infectious anemia virus.
Journal of virology    June 1, 1989   Volume 63, Issue 6 2492-2496 doi: 10.1128/JVI.63.6.2492-2496.1989
Carpenter S, Chesebro B.Similar to other human and animal lentiviruses, equine infectious anemia virus (EIAV) is detectable in vivo in cells of the monocyte-macrophage lineage. Owing to their short-lived nature, horse peripheral blood macrophage cultures (HMC) are rarely used for in vitro propagation of EIAV, and equine dermal (ED) or kidney cell cultures, which can be repeatedly passed in vitro, are used in most studies. However, wild-type isolates of EIAV will not grow in these cell types without extensive adaptation, a process which may attenuate viral virulence. To better define the effect of host cell tropism on...
Difference of virulence in causing metritis in horses between heavily encapsulated, less heavily encapsulated and non-capsulated strains of Klebsiella pneumoniae capsular type 1.
The Japanese journal of veterinary research    October 1, 1987   Volume 35, Issue 4 263-273 
Kikuchi N, Hiramune T, Taniyama H, Yanagawa R.No abstract available
Nucleotide sequence of the 26 S mRNA of the virulent Trinidad donkey strain of Venezuelan equine encephalitis virus and deduced sequence of the encoded structural proteins.
Virology    July 30, 1986   Volume 152, Issue 2 400-413 doi: 10.1016/0042-6822(86)90142-x
Kinney RM, Johnson BJ, Brown VL, Trent DW.A cDNA clone containing all of the 26 S mRNA coding region of the RNA genome of Venezuelan equine encephalitis (VEE) virus, virulent strain Trinidad donkey (TRD), has been constructed and sequenced. The nucleotide and deduced amino acid sequences of the 26 S RNA of VEE virus conform to the general organization of the alphavirus subgenomic mRNA. Excluding the poly(A) tail, the VEE 26 S RNA is 3913 nucleotides long with a protein coding region of 3762 nucleotides. Codon usage in the translated region is nonrandom and correlates well with that reported for Sindbis (SIN), Semliki Forest (SF), and ...
Production and biological properties of M-protein of Streptococcus equi.
Research in veterinary science    March 1, 1985   Volume 38, Issue 2 184-188 
Srivastava SK, Barnum DA, Prescott JF.The production of M-protein antigen of Streptococcus equi was studied during in vitro growth in equine blood and in various media. Of 11 S equi strains studied, seven which had initially possessed 0.04 mg or less M-protein per 10 mg of streptococcal cell extract showed an increase in M-protein content after successive culture in heparinised horse blood. Maximum proliferation occurred in Todd-Hewitt (TH) medium with added 0.2 per cent w/v glucose when compared with TH medium alone or TH medium with 2 per cent w/v sucrose, starch, neopeptone or normal horse serum. The M-protein of these strains ...
Virulence and in vitro growth of a cell-adapted strain of equine infectious anemia virus after serial passage in ponies.
American journal of veterinary research    September 1, 1982   Volume 43, Issue 9 1556-1560 
Orrego A, Issel CJ, Montelaro RC, Adams WV.Five serial passages of a cell-adapted strain of equine infectious anemia (EIA) virus were conducted in Shetland ponies. The 13 recipient ponies became agar-gel immunodiffusion test-positive by 25 days after they were inoculated. The virulence of the cell-adapted strain of EIA virus markedly increased through 3 serial passages, although individual variation within passages was high. The 1st serial-passage recipient remained afebrile through 200 days, whereas a febrile episode occurred about every 185, 44, 35, and 33 days in the 2nd, 3rd, 4th, and 5th serial-passage recipients, respectively. Se...
Venezuelan equine encephalitis virus: horse virulence of P-676 and MF-8 small and minute plaques.
The American journal of tropical medicine and hygiene    March 1, 1981   Volume 30, Issue 2 444-448 doi: 10.4269/ajtmh.1981.30.444
Justines G, Oro G, Alvarez O.The P-676 and MF-8 epizootic strains of Venezuelan equine encephalitis (VEE) virus were found to contain a minute plaque (MP), different from the predominant small plaque (SP) present in these virus strains. The MP and SP were stable after passages in Vero cells, mice, or horses. Equines were inoculated with the SP or MP of the P-676 and MF-8 strains. Inoculation of either P-676 SP or MP into horses induced high fever and viremia but no signs of encephalitis or death. Four horses infected with MF-8 SP became very ill, with high fever and viremia; three of the inoculated animals died. Four hors...
Venezuelan equine encephalitis virus: comparison of infectivity and virulence of strains V-38 and P676 in donkeys.
The American journal of tropical medicine and hygiene    May 1, 1976   Volume 25, Issue 3 494-499 doi: 10.4269/ajtmh.1976.25.494
Mackenzie RM, de Siger J, Parra D.Two strains of Venezuelan equine encephalitis (VEE) virus were examined for the ability to replicate in, as well as to produce death among donkeys. One, a low passage strain known as strain P676 was originally isolated from mosquitos in Venezuela. The other, strain V-38 was isolated from a horse brain in 1938 and had undergone an unknown number of laboratory passages; it is used extensively for the preparation of inactivated VEE vaccine. Both strains were found to be approximately equal in their ability to infect donkeys. However, a quantity as small as 50% hamster intraperitoneal infectious u...
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.
A Study of Pneumococci Isolated from Horses Undergoing Pneumococcus Immunization.
The Journal of experimental medicine    April 30, 1927   Volume 45, Issue 5 787-797 doi: 10.1084/jem.45.5.787
Wadsworth AB, Sickles GM.IT HAS BEEN SHOWN THAT THE PNEUMOCOCCUS MULTIPLYING IN THE TISSUES OF THE IMMUNIZED ANIMAL (HORSE) BECOMES ATTENUATED: loses, in varying degrees, its virulence, capacity of capsule formation, susceptibility to phagocytosis, and type specificity. The antigenic activity as an immunizing agent and the production of "soluble specific substance" are also altered. In some instances, the typical pneumococcus characteristics may be quickly restored by one or two passages through a susceptible animal (mouse). In others, virulence is not recovered and the organism remains atypical. Whether these changes...
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