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Topic:Infectious Disease

Infectious diseases in horses encompass a range of illnesses caused by bacteria, viruses, fungi, or parasites. These diseases can affect various systems within the equine body, leading to symptoms that range from mild discomfort to severe systemic illness. Common infectious diseases in horses include equine influenza, strangles, equine herpesvirus, and West Nile virus. These diseases can be transmitted through direct contact with infected animals, contaminated surfaces, or vectors such as insects. Understanding the mechanisms of transmission, pathogenesis, and immune response is essential for effective prevention and control. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, diagnosis, treatment, and management of infectious diseases in horses.
Anti-biofilm activity of ultrashort cinnamic acid peptide derivatives against medical device-related pathogens.
Journal of peptide science : an official publication of the European Peptide Society    August 27, 2015   Volume 21, Issue 10 770-778 doi: 10.1002/psc.2805
Laverty G, McCloskey AP, Gorman SP, Gilmore BF.The threat of antimicrobial resistance has placed increasing emphasis on the development of innovative approaches to eradicate multidrug-resistant pathogens. Biofilm-forming microorganisms, for example, Staphylococcus epidermidis and Staphylococcus aureus, are responsible for increased incidence of biomaterial infection, extended hospital stays and patient morbidity and mortality. This paper highlights the potential of ultrashort tetra-peptide conjugated to hydrophobic cinnamic acid derivatives. These peptidomimetic molecules demonstrate selective and highly potent activity against resistant b...
Antimicrobial resistance in bacteria from horses: Epidemiology of antimicrobial resistance.
Equine veterinary journal    August 26, 2015   Volume 47, Issue 6 756-765 doi: 10.1111/evj.12471
Maddox TW, Clegg PD, Williams NJ, Pinchbeck GL.Antimicrobial resistance poses a significant threat to the continued successful use of antimicrobial agents for the treatment of bacterial infections. While the epidemiology of antimicrobial resistance in bacteria from man has been studied extensively, less work has been undertaken in companion animals, particularly horses. Methicillin-resistant Staphylococcus aureus has been identified as a cause of infections, with a low prevalence of nasal carriage by horses in the community but higher for hospitalised horses. Molecular characterisation has shown methicillin-resistant Staphylococcus aureus...
Aspergillus and aspergilloses in wild and domestic animals: a global health concern with parallels to human disease.
Medical mycology    August 26, 2015   Volume 53, Issue 8 765-797 doi: 10.1093/mmy/myv067
Seyedmousavi S, Guillot J, Arné P, de Hoog GS, Mouton JW, Melchers WJ, Verweij PE.The importance of aspergillosis in humans and various animal species has increased over the last decades. Aspergillus species are found worldwide in humans and in almost all domestic animals and birds as well as in many wild species, causing a wide range of diseases from localized infections to fatal disseminated diseases, as well as allergic responses to inhaled conidia. Some prevalent forms of animal aspergillosis are invasive fatal infections in sea fan corals, stonebrood mummification in honey bees, pulmonary and air sac infection in birds, mycotic abortion and mammary gland infections in ...
First molecular evidence of Coxiella burnetii infecting ticks in Cuba.
Ticks and tick-borne diseases    August 25, 2015   Volume 7, Issue 1 68-70 doi: 10.1016/j.ttbdis.2015.08.008
Coxiella burnetii is the causative agent of Q fever. In order to explore the occurrence of C. burnetii in ticks, samples were collected from horses, dogs and humans living in a Cuban occidental community. The species most commonly recovered were Amblyomma mixtum (67%), Rhipicephalus sanguineus s.l. (27%) and Dermacentor nitens (6%). Specific IS1111 PCR and amplicon sequencing allowed the identification of C. burnetii DNA in A. mixtum collected from a domestic horse. These findings, for first time in Cuba, indicate the need for an in-depth assessment of the C. burnetii occurrence in hosts and h...
Composition and Diversity of the Fecal Microbiome and Inferred Fecal Metagenome Does Not Predict Subsequent Pneumonia Caused by Rhodococcus equi in Foals.
PloS one    August 25, 2015   Volume 10, Issue 8 e0136586 doi: 10.1371/journal.pone.0136586
Whitfield-Cargile CM, Cohen ND, Suchodolski J, Chaffin MK, McQueen CM, Arnold CE, Dowd SE, Blodgett GP.In equids, susceptibility to disease caused by Rhodococcus equi occurs almost exclusively in foals. This distribution might be attributable to the age-dependent maturation of immunity following birth undergone by mammalian neonates that renders them especially susceptible to infectious diseases. Expansion and diversification of the neonatal microbiome contribute to development of immunity in the gut. Moreover, diminished diversity of the gastrointestinal microbiome has been associated with risk of infections and immune dysregulation. We thus hypothesized that varying composition or reduced div...
Keratoconjunctivitis in a group of Icelandic horses with suspected γ-herpesvirus involvement.
Equine veterinary journal    August 21, 2015   Volume 48, Issue 4 427-429 doi: 10.1111/evj.12465
Rushton JO, Kolodziejek J, Nell B, Weissenböck H, Nowotny N.The role of equid γ-herpesviruses on ocular surface diseases has been disputed, because the diagnosis is usually based on clinical symptoms and detection of viral DNA from samples obtained from live animals. Objective: To describe the clinical course, results of polymerase chain reaction (PCR) analysis, in situ hybridisation, cell culture and pathohistological findings of select cases in a presumed outbreak of herpesvirus infection in a group of 15 Icelandic horses. Methods: Case series. Methods: Pooled ocular and nasal swabs and peripheral blood mononuclear cells of horses diagnosed clinica...
Antimicrobial Susceptibilities of Aerobic Isolates from Respiratory Samples of Young New Zealand Horses.
Journal of veterinary internal medicine    August 20, 2015   Volume 29, Issue 6 1700-1706 doi: 10.1111/jvim.13600
Toombs-Ruane LJ, Riley CB, Kendall AT, Bolwell CF, Benschop J, Rosanowski SM.Decreased efficacy of antimicrobials and increased prevalence of multidrug resistance (MDR) is of concern worldwide. Objective: To describe and analyze bacterial culture and antimicrobial susceptibilities from respiratory samples submitted from young horses (4 weeks to 3 years old). Methods: Samples from 289 horses were submitted to a commercial laboratory. Methods: A retrospective database search of submissions made to a New Zealand veterinary laboratory between April 2004 and July 2014. The results of in vitro susceptibility testing by Kirby-Bauer disc diffusion were described and tabulat...
Equine Dermatophytosis due to Trichophyton bullosum, a Poorly Known Zoophilic Dermatophyte Masquerading as T. verrucosum.
Mycopathologia    August 20, 2015   Volume 180, Issue 5-6 407-419 doi: 10.1007/s11046-015-9931-0
Lyskova P, Hubka V, Petricakova A, Dobias R, Cmokova A, Kolarik M.Trichophyton bullosum is a zoophilic dermatophyte from the Arthroderma benhamiae complex with a poorly known distribution. In this study, we report a case of dermatophytosis caused by T. bullosum in a 6-year-old male horse who had a skin lesion located in a saddle area. The infection spread rapidly to the upper chest and to both sides of the trunk. The dermatophyte was isolated in culture and identified by sequence analysis of the internal transcribed spacer regions (ITS rDNA). To date, this is the first verified case of animal infection due to T. bullosum in Europe following the 2012 report o...
Equine Herpesvirus Type 1 Enhances Viral Replication in CD172a+ Monocytic Cells upon Adhesion to Endothelial Cells.
Journal of virology    August 19, 2015   Volume 89, Issue 21 10912-10923 doi: 10.1128/JVI.01589-15
Laval K, Favoreel HW, Poelaert KC, Van Cleemput J, Nauwynck HJ.Equine herpesvirus type 1 (EHV-1) is a main cause of respiratory disease, abortion, and encephalomyelopathy in horses. Monocytic cells (CD172a(+)) are the main carrier cells of EHV-1 during primary infection and are proposed to serve as a "Trojan horse" to facilitate the dissemination of EHV-1 to target organs. However, the mechanism by which EHV-1 is transferred from CD172a(+) cells to endothelial cells (EC) remains unclear. The aim of this study was to investigate EHV-1 transmission between these two cell types. We hypothesized that EHV-1 employs specific strategies to promote the adhesion o...
A study on African animal trypanosomosis in four areas of Senegal.
Folia parasitologica    August 18, 2015   Volume 62 2015.044 doi: 10.14411/fp.2015.044
Ravel S, Mediannikov O, Bossard G, Desquesnes M, Cuny G, Davoust B.In Senegal, several areas provide great potential for agriculture and animal production, but African animal trypanosomosis (AAT) is one of the major constraints to the development of more effective livestock production systems. A study was conducted to assess the current situation of AAT in this country. Surveys were carried out between June 2011 and September 2012 in four different areas: Dakar, Sine Saloum, Kedougou region and Basse Casamance in several animal species: dogs (152), donkeys (23), horses (63), sheep (43), goats (52) and cattle (104), distributed in the four sites. Molecular too...
Complete genome analysis of equine coronavirus isolated in Japan.
Archives of virology    August 14, 2015   Volume 160, Issue 11 2903-2906 doi: 10.1007/s00705-015-2565-1
Nemoto M, Oue Y, Murakami S, Kanno T, Bannai H, Tsujimura K, Yamanaka T, Kondo T.Equine coronavirus has been responsible for several outbreaks of disease in the United States and Japan. Only one complete genome sequence (NC99 isolated in the US) had been reported for this pathogenic RNA virus. Here, we report the complete genome sequences of three equine coronaviruses isolated in 2009 and 2012 in Japan. The genome sequences of Tokachi09, Obihiro12-1 and Obihiro12-2 were 30,782, 30,916 and 30,916 nucleotides in length, respectively, excluding the 3'-poly (A) tails. All three isolates were genetically similar to NC99 (98.2-98.7%), but deletions and insertions were observed i...
A human case of strangles (equine distemper) with skin lesions.
Indian journal of dermatology, venereology and leprology    August 12, 2015   Volume 82, Issue 2 198-200 doi: 10.4103/0378-6323.162320
Brzezinski P, Chiriac A.No abstract available
Prevalence of equine coronavirus in nasal secretions from horses with fever and upper respiratory tract infection.
The Veterinary record    August 10, 2015   Volume 177, Issue 11 289 doi: 10.1136/vr.103263
Pusterla N, Holzenkaempfer N, Mapes S, Kass P.No abstract available
Rapid diagnosis of strangles (Streptococcus equi subspecies equi) using PCR.
Research in veterinary science    August 9, 2015   Volume 102 162-166 doi: 10.1016/j.rvsc.2015.08.008
Cordoni G, Williams A, Durham A, Florio D, Zanoni RG, La Ragione RM.Strangles is one of the most common equine infectious diseases with serious health, welfare and socio-economic impact. However, the detection of Streptococcus equi subspecies equi can be challenging and persistently infected carriers are common. Furthermore, the use of classical microbiology can result in an underestimation of the prevalence of the disease. The difficulties associated with the slow diagnosis of Strangles can result in rapid spread of the disease. Therefore, rapid and economical diagnostic tests are urgently required. Here, two multiplex assays, were developed and validated for...
Northern Ireland disease surveillance report, April to June 2015.
The Veterinary record    August 8, 2015   Volume 177, Issue 6 144-147 doi: 10.1136/vr.h4201
No abstract available
Equine herpesvirus-1 suppresses type-I interferon induction in equine endothelial cells.
Veterinary immunology and immunopathology    August 5, 2015   Volume 167, Issue 3-4 122-129 doi: 10.1016/j.vetimm.2015.07.015
Sarkar S, Balasuriya UB, Horohov DW, Chambers TM.Equine herpesvirus-1 (EHV-1) is one of the most common and important respiratory viral pathogens of horses. EHV-1 in horses replicates initially in the respiratory epithelium and then spreads systematically to endothelial cells lining the small blood vessels in the uterus and spinal cord, and highly pathogenic virus strains can produce aborted fetuses or myeloencephalopathy. Like other herpes viruses, EHV-1 employs a variety of mechanisms for immune evasion. Some herpes viruses down-regulate the type-I interferon (IFN) response to infection, but such activity has not been described for EHV-1. ...
This could be the start of something big-20 years since the identification of bats as the natural host of Hendra virus.
One health (Amsterdam, Netherlands)    August 4, 2015   Volume 1 14-16 doi: 10.1016/j.onehlt.2015.07.001
Black P, Douglas I, Field H.Hendra virus was first described in 1994 in Australia, causally associated with a cluster of fatal equine and human cases at a thoroughbred racing stable in the Brisbane suburb of Hendra. This year marks the twentieth anniversary of the identification of pteropid bats (flying-foxes) as the natural host of the virus, and it is timely to reflect on a pivotal meeting of an eclectic group of scientists in that process. They included animal and public health experts, environmental scientists, veterinary and horse industry representatives, and wildlife experts. The task was to review and prioritise ...
E5 nucleotide polymorphisms suggest quasispecies occurrence in BPV-1 sub-clinically infected horses.
Research in veterinary science    July 31, 2015   Volume 102 80-82 doi: 10.1016/j.rvsc.2015.07.016
Savini F, Gallina L, Prosperi A, Battilani M, Bettini G, Scagliarini A.BPV-1 is known as the main causative agent of equine sarcoid, but the virus has also been detected in skin and blood of healthy horses. Previous reports demonstrated the presence of E5 variants in sarcoids of donkeys and horses; we investigated whether this genetic variability might be also found in BPV-1, PBMC associated, of sub-clinically infected horses. With this aim, we analyzed the E5 gene of 21 BPV-1 strains from diseased and sub-clinically infected horses. Our analyses lead us to demonstrate that multiple sequence variants can be present in the blood of sub-clinically infected horses, ...
Virulence Factor Genes Detected in the Complete Genome Sequence of Corynebacterium uterequi DSM 45634, Isolated from the Uterus of a Maiden Mare.
Genome announcements    July 30, 2015   Volume 3, Issue 4 e00783-15 doi: 10.1128/genomeA.00783-15
Rückert C, Kriete M, Jaenicke S, Winkler A, Tauch A.The complete genome sequence of the type strain Corynebacterium uterequi DSM 45634 from an equine urogenital tract specimen comprises 2,419,437 bp and 2,163 protein-coding genes. Candidate virulence factors are homologs of DIP0733, DIP1281, and DIP1621 from Corynebacterium diphtheriae and of sialidase precursors from Trueperella pyogenes and Chlamydia trachomatis.
Development of three triplex real-time reverse transcription PCR assays for the qualitative molecular typing of the nine serotypes of African horse sickness virus.
Journal of virological methods    July 29, 2015   Volume 223 69-74 doi: 10.1016/j.jviromet.2015.07.015
Weyer CT, Joone C, Lourens CW, Monyai MS, Koekemoer O, Grewar JD, van Schalkwyk A, Majiwa PO, MacLachlan NJ, Guthrie AJ.Blood samples collected as part of routine diagnostic investigations from South African horses with clinical signs suggestive of African horse sickness (AHS) were subjected to analysis with an AHS virus (AHSV) group specific reverse transcription quantitative polymerase chain reaction (AHSV RT-qPCR) assay and virus isolation (VI) with subsequent serotyping by plaque inhibition (PI) assays using AHSV serotype-specific antisera. Blood samples that tested positive by AHSV RT-qPCR were then selected for analysis using AHSV type specific RT-qPCR (AHSV TS RT-qPCR) assays. The TS RT-qPCR assays were ...
Site-Specific Amino Acid Preferences Are Mostly Conserved in Two Closely Related Protein Homologs.
Molecular biology and evolution    July 29, 2015   Volume 32, Issue 11 2944-2960 doi: 10.1093/molbev/msv167
Doud MB, Ashenberg O, Bloom JD.Evolution drives changes in a protein's sequence over time. The extent to which these changes in sequence lead to shifts in the underlying preference for each amino acid at each site is an important question with implications for comparative sequence-analysis methods, such as molecular phylogenetics. To quantify the extent that site-specific amino acid preferences shift during evolution, we performed deep mutational scanning on two homologs of human influenza nucleoprotein with 94% amino acid identity. We found that only a modest fraction of sites exhibited shifts in amino acid preferences tha...
Retrospective evaluation of blood culture isolates and sepsis survival rate in foals in the Czech Republic: 50 cases (2011-2013).
Journal of veterinary emergency and critical care (San Antonio, Tex. : 2001)    July 28, 2015   Volume 25, Issue 5 660-666 doi: 10.1111/vec.12348
Hytychová T, Bezděková B.To identify the specific pathogens causing sepsis in hospitalized foals in the Czech Republic and identify important factors associated with their survival. Methods: A retrospective study from 2011 to 2013. Methods: University veterinary teaching hospital. Methods: Fifty compromised foals. Methods: None. Results: Blood was aseptically collected for bacterial culture from compromised foals. The foals were classified as septic according to a positive blood culture result or sepsis score ≥11. Blood cultures were positive in 44% of the foals. In these positive cultures, 27.3% had only Gram-posit...
Reproductive Disorders in Horses.
The Veterinary clinics of North America. Equine practice    July 27, 2015   Volume 31, Issue 2 389-405 doi: 10.1016/j.cveq.2015.04.011
Snider TA.Reproductive disease is relatively common in the horse, resulting in a variable, yet significant, economic impact on individual horsemen as well as the entire industry. Diverse expertise from the veterinary community ensures and improves individual and population health of the horse. From a pathology and diagnostics perspective, this review provides a comprehensive overview of pathology of the male and female equine reproductive tract. Recognition by clinical and gross features is emphasized, although some essential histologic parameters are included, as appropriate. Where relevant, discussion...
Penetration depth of corneal cross-linking with riboflavin and UV-A (CXL) in horses and rabbits.
Veterinary ophthalmology    July 27, 2015   Volume 19, Issue 4 275-284 doi: 10.1111/vop.12301
Gallhoefer NS, Spiess BM, Guscetti F, Hilbe M, Hartnack S, Hafezi F, Pot SA.CXL penetration depth is an important variable influencing clinical treatment effect and safety. The purposes of this study were to determine the penetration depth of CXL in rabbit and equine corneas in epithelium-on and epithelium-off procedures and to assess an ex vivo fluorescent biomarker staining assay for objective assessment of CXL penetration depth. Methods: CXL treatment was performed according to a standardized protocol on 21 and 17 rabbit eyes and on 12 and 10 equine eyes with and without debridement, respectively. Control corneas were treated similarly, but not exposed to CXL. Hem...
Molecular evidence of Theileria equi infection in Hyalomma anatolicum ticks infested on sero-positive Indian horses.
Acta parasitologica    July 24, 2015   Volume 60, Issue 2 322-329 doi: 10.1515/ap-2015-0045
Bhagwan J, Kumar A, Kumar R, Goyal L, Goel P, Kumar S.A sizeable Indian equine population is considered to be pre-immune carrier of Theileria equi infection. In this study we confirmed the presence of T. equi specific DNA in Hyalomma anatolicum ticks which were infested on sero-positive horses. Fifty two Indigenous horses were randomly selected from endemic areas and their blood and tick samples were collected. Tick salivary glands and blood samples were processed for separation of DNA and serum, respectively. Serum samples were analyzed by EMA-2ELISA and nine horses were found positive for T. equi specific antibodies. Species-specific primers we...
Equine infectious anaemia in Europe: Time to re-examine the efficacy of monitoring and control protocols?
Equine veterinary journal    July 23, 2015   Volume 48, Issue 2 140-142 doi: 10.1111/evj.12466
Bolfa P, Barbuceanu F, Leau SE, Leroux C.No abstract available
Equine Disease Surveillance: Quarterly Summary.
The Veterinary record    July 18, 2015   Volume 177, Issue 3 65-68 doi: 10.1136/vr.h3771
No abstract available
Characterisation of the Equine adenovirus 2 genome.
Veterinary microbiology    July 18, 2015   Volume 179, Issue 3-4 184-189 doi: 10.1016/j.vetmic.2015.07.024
Giles C, Vanniasinkam T, Barton M, Mahony TJ.Equine adenovirus 2 (EAdV-2) is one of two serotypes of adenoviruses known to infect equines. Initial studies did not associate EAdV-2 infections with any specific clinical syndromes, although more recent evidence suggests that EAdV-2 may be associated with clinical and subclinical gastrointestinal infections of foals and adults respectively. In contrast, Equine adenovirus 1 is well recognised as a pathogen associated with upper respiratory tract infections of horses. In this study the complete genome sequence of EAdV-2 is reported. As expected, genes common to the adenoviruses were identified...
Presence of leptospires on genital tract of mares with reproductive problems.
Veterinary microbiology    July 17, 2015   Volume 179, Issue 3-4 264-269 doi: 10.1016/j.vetmic.2015.06.014
Hamond C, Pestana CP, Rocha-de-Souza CM, Cunha LE, Brandão FZ, Medeiros MA, Lilenbaum W.Leptospirosis is a zoonotic disease of global importance, and has a worldwide distribution. Equine leptospirosis is commonly manifested by recurrent uveitis, reproductive disorders, as abortions, embryonic absorption, stillbirth and the birth of weak foals. The aim of this study was to verify the presence of Leptospira sp or its DNA in genital tract of mares with reproductive problems. A total of 38 mares with reproductive problems were studied. All the mares were sampled for blood (for serology), urine (for culturing and qPCR), vaginal fluid-VF and endometrial biopsy-EB (for culturing, qPCR a...
Variability of non-structural proteins of equine arteritis virus during persistent infection of the stallion.
Polish journal of veterinary sciences    July 15, 2015   Volume 18, Issue 2 255-259 doi: 10.1515/pjvs-2015-0033
Socha W, Rola J, Żmudziński JF.The genetic stability of ORF1a encoding non-structural proteins nsp1, nsp2, nsp3 and nsp4 of equine arteritis virus (EAV) has been analysed for nearly seven years in a persistently infected stallion of the Malopolska breed. Between November 2004 and June 2011, 11 semen samples were collected. Viral RNA extracted from semen of this carrier stallion was amplified, sequenced and compared with the sequences of the other known strains of EAV. Sequence analysis of ORF1a showed 84 synonymous and 16 non-synonymous mutations. The most variable part of ORF1a was the region encoding nsp2 protein with 13 ...