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Topic:Influenza

Equine influenza is a highly contagious respiratory disease caused by influenza A viruses, specifically affecting horses. The disease is characterized by symptoms such as fever, coughing, nasal discharge, and lethargy. Transmission occurs primarily through aerosolized droplets and direct contact, leading to rapid spread among susceptible populations. Vaccination is a common preventive measure, though the virus's ability to mutate necessitates ongoing surveillance and vaccine updates. This page gathers peer-reviewed research studies and scholarly articles that explore the virology, epidemiology, clinical presentation, and management strategies of equine influenza, with a focus on its impact on equine health and welfare.
Re: Equine influenza supplement.
Australian veterinary journal    February 22, 2012   Volume 90, Issue 3 56-57 doi: 10.1111/j.1751-0813.2012.00900.x
Denney I.No abstract available
Horse owners’/managers’ perceptions about effectiveness of biosecurity measures based on their experiences during the 2007 equine influenza outbreak in Australia.
Preventive veterinary medicine    February 10, 2012   Volume 106, Issue 2 97-107 doi: 10.1016/j.prevetmed.2012.01.013
Schemann K, Firestone SM, Taylor MR, Toribio JA, Ward MP, Dhand NK.Following the first ever equine influenza outbreak in Australia in 2007, a study was conducted involving 200 horse owners and managers to determine their perceptions about effectiveness of biosecurity measures and the factors associated with these perceptions. Face-to-face interviews were conducted with horse owners/managers to obtain information about their perceptions of the effectiveness of biosecurity practices, their sources of information about infection control during the outbreak and their horse industry involvement. Two outcome variables were created from horse owners' responses to a ...
Efficacy of a single intravenous dose of the neuraminidase inhibitor peramivir in the treatment of equine influenza.
Veterinary journal (London, England : 1997)    February 10, 2012   Volume 193, Issue 2 358-362 doi: 10.1016/j.tvjl.2012.01.005
Yamanaka T, Bannai H, Nemoto M, Tsujimura K, Kondo T, Muranaka M, Hobo S, Minamijima YH, Yamada M, Matsumura T.Equine influenza A virus (EIV) of the H3N8 subtype is an important pathogen causing acute respiratory disease in horses. Peramivir is a selective inhibitor of the influenza virus neuraminidase (NA). The characteristics of peramivir are not only its capacity for parenteral administration, but also its strong affinity for NA and slow off-rate from the NA-peramivir complex, suggesting that it could lead to a prolonged inhibitory effect and thus allow a lower dosing frequency. The aims of this study were to evaluate the inhibitory efficacy of peramivir against the NA activities of EIV in vitro and...
Equine influenza supplement.
Australian veterinary journal    January 20, 2012   Volume 90, Issue 1-2 3 doi: 10.1111/j.1751-0813.2011.00888.x
Jacobs K.No abstract available
From the horse’s mouth: perceptions of the management of the 2007 equine influenza outbreak in Australia.
Transboundary and emerging diseases    January 16, 2012   Volume 59, Issue 6 503-516 doi: 10.1111/j.1865-1682.2012.01305.x
Schemann K, Firestone SM, Taylor MR, Toribio JA, Ward MP, Dhand NK.In August 2007, Australia experienced its first-ever outbreak of equine influenza, a highly infectious respiratory disease of horses. Although the outbreak spread over a large geographic area, it was eradicated within 5 months following a substantial disease control effort led by federal and state animal health authorities. Despite its timely control, this large-scale outbreak caused severe impacts on horse owners and industry participants. This study aimed to describe the perceptions of horse owners and managers, impacted by outbreak control measures, regarding the state government's animal h...
ISCOM-matrix-based equine influenza (EIV) vaccine stimulates cell-mediated immunity in the horse.
Veterinary immunology and immunopathology    November 26, 2011   Volume 145, Issue 1-2 516-521 doi: 10.1016/j.vetimm.2011.11.019
Paillot R, Prowse L.The humoral immune response induced by ISCOM-matrix (Immuno Stimulating COMplex-Matrix)-adjuvanted equine influenza virus (EIV) vaccine is well documented in horses. ISCOM-matrix adjuvanted vaccines against human influenza are strong inducers of cell-mediated immunity (CMI), including T cell proliferation and virus-specific cytotoxic T cell. In the horse, the CMI response to equine influenza vaccination is less well characterised. An ISCOM-based vaccine has been shown to induce interferon gamma (IFN-γ) synthesis, a CMI marker, in the horse, but this has not been shown for the ISCOM-matrix vac...
A prospective longitudinal study of naturally infected horses to evaluate the performance characteristics of rapid diagnostic tests for equine influenza virus.
Veterinary microbiology    November 6, 2011   Volume 156, Issue 3-4 246-255 doi: 10.1016/j.vetmic.2011.10.031
Read AJ, Arzey KE, Finlaison DS, Gu X, Davis RJ, Ritchie L, Kirkland PD.An outbreak of equine influenza (EI) occurred in Australia in 2007. During the laboratory support for this outbreak, real-time reverse transcriptase polymerase chain reaction (qRT-PCR) assays and a blocking enzyme linked immunosorbent assay (bELISA) were used as testing methods to detect infection with the virus. The qRT-PCR and bELISA tests had not been used for EI diagnosis before, so it was not known how soon after infection these tests would yield positive results, or for how long these results would remain positive. To answer these questions, nasal swabs and blood samples were collected d...
The molecular epidemiology of equine influenza in Ireland from 2007-2010 and its international significance.
Equine veterinary journal    October 6, 2011   Volume 44, Issue 4 387-392 doi: 10.1111/j.2042-3306.2011.00472.x
Gildea S, Quinlivan M, Arkins S, Cullinane A.Antigenic and genetic drift of equine influenza (EI) virus is monitored annually by the Expert Surveillance Panel (ESP), which make recommendations on the need to update vaccines. Surveillance programmes are essential for this process to operate effectively and to decrease the risk of disease spread through the international movement of subclinically infected vaccinated horses. Not only is surveillance necessary to inform vaccine companies which strains are in circulation, but it serves as an early warning system for horse owners, trainers and veterinary clinicians, facilitating the implementa...
A comparison of antibody responses to commercial equine influenza vaccines following primary vaccination of Thoroughbred weanlings–a randomised blind study.
Vaccine    October 5, 2011   Volume 29, Issue 49 9214-9223 doi: 10.1016/j.vaccine.2011.09.101
Gildea S, Arkins S, Walsh C, Cullinane A.Many racing authorities, sales companies and equestrian bodies have mandatory vaccination policies for equine influenza (EI). The consequences of lack of vaccine efficacy include clinical disease, disruption to training programmes, the cancellation of equestrian events and the introduction of virus to susceptible populations. The correlation between antibody against the virus haemagglutinin and protection against influenza has been well established. The objective of this study was to compare the antibody responses of 66 unvaccinated Thoroughbred weanlings on four different stud farms, followin...
Antigenic and genetic evolution of equine influenza A (H3N8) virus from 1968 to 2007.
Journal of virology    September 21, 2011   Volume 85, Issue 23 12742-12749 doi: 10.1128/JVI.05319-11
Lewis NS, Daly JM, Russell CA, Horton DL, Skepner E, Bryant NA, Burke DF, Rash AS, Wood JL, Chambers TM, Fouchier RA, Mumford JA, Elton DM, Smith DJ.Equine influenza virus is a major respiratory pathogen in horses, and outbreaks of disease often lead to substantial disruption to and economic losses for equestrian industries. The hemagglutinin (HA) protein is of key importance in the control of equine influenza because HA is the primary target of the protective immune response and the main component of currently licensed influenza vaccines. However, the influenza virus HA protein changes over time, a process called antigenic drift, and vaccine strains must be updated to remain effective. Antigenic drift is assessed primarily by the hemagglu...
Horse owners’ biosecurity practices following the first equine influenza outbreak in Australia.
Preventive veterinary medicine    September 4, 2011   Volume 102, Issue 4 304-314 doi: 10.1016/j.prevetmed.2011.08.002
Schemann K, Taylor MR, Toribio JA, Dhand NK.A cross-sectional study was conducted involving 759 Australian horse owners to determine their biosecurity practices and perceptions one year after the 2007 equine influenza outbreak and to investigate the factors influencing these perceptions and practices. A web link to an online questionnaire was sent to 1224 horse owners as a follow-up to a previous study to obtain information about biosecurity perceptions and practices, impacts of the 2007 EI outbreak, demographic information and information about horse industry involvement. Ordinal logistic regression analyses were conducted to determine...
Development and evaluation of a reverse transcription loop-mediated isothermal amplification assay for H3N8 equine influenza virus.
Journal of virological methods    August 30, 2011   Volume 178, Issue 1-2 239-242 doi: 10.1016/j.jviromet.2011.07.015
Nemoto M, Yamanaka T, Bannai H, Tsujimura K, Kondo T, Matsumura T.Reverse transcription loop-mediated isothermal amplification (RT-LAMP) was applied to the detection of equine influenza virus (EIV). Because equine influenza is caused currently by EIV of the H3H8 subtype, the RT-LAMP primer set was designed to target the hemagglutinin gene of this subtype. The detection limit of the RT-LAMP assay was a virus dilution of 10(-5); which was 10(3) times more sensitive than the Espline Influenza A&B-N test and 10 times more sensitive than a reverse transcription polymerase chain reaction (RT-PCR) assay. The specificity of the RT-LAMP assay was examined by usin...
The first five days: field and laboratory investigations during the early stages of the equine influenza outbreak in Australia, 2007.
Australian veterinary journal    August 17, 2011   Volume 89 Suppl 1 6-10 doi: 10.1111/j.1751-0813.2011.00724.x
Kirkland PD, Davis RJ, Wong D, Ryan D, Hart K, Corney B, Hewitson G, Cooper K, Biddle A, Eastwood S, Slattery S, Rayward D, Evers M, Wright T....Until August 2007, Australia was one of only three countries internationally recognised to be free of equine influenza (EI). This report documents the diagnosis of the first cases of EI in Australian horses and summarises the investigations that took place over the next 5 days. During that time, a multifocal outbreak was identified across eastern New South Wales and south-eastern Queensland. The use of an influenza type A pan-reactive real-time reverse transcription polymerase chain reaction allowed rapid confirmation of suspect cases of EI.
Hygiene practices to prevent the spread of equine influenza by humans.
Australian veterinary journal    August 17, 2011   Volume 89 Suppl 1 124-125 doi: 10.1111/j.1751-0813.2011.00765.x
Major DA.This paper describes a protocol for hygiene practices that was devised by a practice in which all veterinarians were involved on a daily basis in visiting infected premises, including sampling, treatment of clinical cases and general veterinary work. This protocol was strictly followed when attending an infected or at risk property.
Behaviour of equine influenza virus in a naïve population: a practitioner’s perspective.
Australian veterinary journal    August 17, 2011   Volume 89 Suppl 1 13-14 doi: 10.1111/j.1751-0813.2011.00726.x
Major DA, Jones B.We describe the behaviour of equine influenza (EI) virus infection in a naïve population as observed by equine veterinary practitioners. The clinical signs displayed by infected horses and the highly contagious nature of the disease are discussed, as well as the treatment and management of infected horses.
Equine influenza in Australia: a clinical overview.
Australian veterinary journal    August 17, 2011   Volume 89 Suppl 1 11-13 doi: 10.1111/j.1751-0813.2011.00725.x
Gilkerson JR.The clinical symptoms observed during the 2007 equine influenza outbreak are compared and contrasted with those observed in overseas outbreaks and described in the veterinary literature.
Evaluation of the response to an accelerated immunisation schedule using a canarypox-vectored equine influenza vaccine, shortened interdose intervals and vaccination of young foals.
Australian veterinary journal    August 17, 2011   Volume 89 Suppl 1 137-139 doi: 10.1111/j.1751-0813.2011.00767.x
Minke JM, El-Hage CM, Tazawa P, Homer D, Lemaitre L, Cozette V, Gilkerson JR, Kirkland PD.The results of an accelerated immunisation schedule for horses used as part of the emergency response plan to contain and eradicate equine influenza in Australia in 2007 is described. The horses studied were vaccinated with a recombinant canarypox-vectored vaccine (ProteqFlu®, Merial) with a shorter interdose interval. Vaccinated horses included foals aged less than 4 months.
Spatial association and clinical development of equine influenza in horses yarded overnight at an equestrian event at Maitland prior to propagating the 2007 epidemic in Australia.
Australian veterinary journal    August 17, 2011   Volume 89 Suppl 1 68-69 doi: 10.1111/j.1751-0813.2011.00751.x
Britton AL, Major DA, Perry GH, Read AJ.The interaction and stabling of horses at equine events may have a substantial impact on the spread of a zoonotic disease. This study aimed to investigate the spread of equine influenza (EI) at an equestrian event at the start of the Australian outbreak. Around one-third of the competing horses were stabled overnight at the event and, of these, 70% developed symptoms of EI within 7 days. The index case was never positively identified, but stabling position and disease onset provided clues to its potential identity.
The 2007 outbreak of equine influenza in Australia: lessons learned for international trade in horses.
Revue scientifique et technique (International Office of Epizootics)    August 4, 2011   Volume 30, Issue 1 87-93 doi: 10.20506/rst.30.1.2021
Watson J, Daniels P, Kirkland P, Carroll A, Jeggo M.In August 2007 Australia experienced its first outbreak of equine influenza. The disease occurred first in a quarantine station for imported horses near Sydney and subsequently escaped into the general horse population. After an extensive campaign the disease was eradicated and Australia is again recognised as free of this disease. Equine influenza was then, and is now, recognised to be the major disease risk associated with live horse imports into Australia and measures designed to mitigate this risk formed the basis of the quarantine protocols then in place. Subsequent investigations into th...
Potential of vaccination to confound interpretation of real-time PCR results for equine influenza.
The Veterinary record    August 3, 2011   Volume 169, Issue 10 252 doi: 10.1136/vr.d4300
Diallo IS, Read AJ, Kirkland PD.No abstract available
Phylogenetic and molecular characterization of equine H3N8 influenza viruses from Greece (2003 and 2007): evidence for reassortment between evolutionary lineages.
Virology journal    July 14, 2011   Volume 8 350 doi: 10.1186/1743-422X-8-350
Bountouri M, Fragkiadaki E, Ntafis V, Kanellos T, Xylouri E.For first time in Greece equine influenza virus infection was confirmed, by isolation and molecular analysis, as the cause of clinical respiratory disease among unvaccinated horses during 2003 and 2007 outbreaks. Methods: Equine influenza virus (EIV) H3N8 was isolated in MDCK cells from 30 nasal swabs from horses with acute respiratory disease, which were tested positive by Directigen Flu A. Isolation was confirmed by haemagglutination assay and RT-PCR assay of the M, HA and NA gene. Results: HA sequences of the Greek isolates appeared to be more closely related to viruses isolated in early 19...
Assessment of the proportion of under-reporting during the 2007 equine influenza outbreak in New South Wales, Australia.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 73-74 doi: 10.1111/j.1751-0813.2011.00754.x
Dhand NK, Sergeant ES.During the 2007 equine influenza (EI) outbreak in Australia, there was no objective information about the possible under-reporting of cases by horse owners either so that they would avoid movement restrictions or because of their inability to detect infection. This investigation aimed to estimate the proportion of under-reporting during the outbreak based on the results of surveillance undertaken in conjunction with vaccination. The results provided improved estimates of morbidity during the outbreak and indicated the level of under-reporting likely to occur in future outbreaks of other infect...
Clinical signs of equine influenza in a closed population of horses at a 3-day event in southern Queensland, Australia.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 17-18 doi: 10.1111/j.1751-0813.2011.00729.x
Dups JN, Morton JM, Anthony ND, Dwyer JF.This report describes the clinical signs of equine influenza (EI) during an epidemic in a closed, predominantly immunologically naïve population of horses. It included 254 study horses, few of which exhibited all three signs of pyrexia, nasal discharge and cough simultaneously. We conclude that although the majority of affected horses exhibit temperature patterns resembling those most often described in the published literature, clinicians should be aware that other profiles are quite common.
Clinical impression of equine influenza at Morgan Park and the western region of Brisbane, Queensland, Australia.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 16-17 doi: 10.1111/j.1751-0813.2011.00727.x
Anthony ND.The clinical signs of horses infected with equine influenza in two Queensland locations, Morgan Park Recreational Grounds at Warwick, and the western region of Brisbane, are described and compared. Clinical signs were observed to be more severe, and treatment more intensive, in horses in stressful settings.
Quantitative analysis of the risk of spread of equine influenza associated with movements of vaccinated horses from infected areas during the Australian outbreak.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 103-108 doi: 10.1111/j.1751-0813.2011.00761.x
Sergeant ES, Stone M, Moloney BJ, Arthur R.Simulation models were developed to quantify the likelihood of equine influenza virus infection entering pre-movement isolation, persisting through pre- and post-movement isolation periods without being detected by scheduled laboratory testing, and escaping to infect susceptible horses at a destination. The mean probability of escape ranged from 1 in 1,200,000 to 1 in 600,000 depending on lot size. For 95% of iterations the probability of escape was less than 1 in 200,000, regardless of lot size. For a large group of 600 horses processed as multiple separate lots, the mean probability of escap...
In this issue: Equine influenza in Australia in 2007–the definitive story.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 1-2 doi: 10.1111/j.1751-0813.2011.00783.x
Jackson AE.No abstract available
Pathological changes in horses dying with equine influenza in Australia, 2007.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 19-22 doi: 10.1111/j.1751-0813.2011.00731.x
Begg AP, Reece RL, Hum S, Townsend W, Gordon A, Carrick J.Analysis of pathology results from the 2007 equine influenza (EI) outbreak in Australia indicate that young foals in naïve horse populations are prone to developing broncho-interstitial pneumonia, and that this can be a rare manifestation of EI virus infection in mature horses. All horses may develop secondary bacterial bronchopneumonia, with mature horses more likely to die. EI outbreaks among heavily pregnant mares can result in increased neonatal losses because of premature placental separation and dystocia causing fetal hypoxia.
Factors associated with high psychological distress in horse industry participants during the 2007 Australian equine influenza outbreak and evidence of recovery after 1 year.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 158-159 doi: 10.1111/j.1751-0813.2011.00772.x
Taylor M, Agho K, Stevens G, Raphael B.This short report summarises data on the prevalence of high psychological distress in horse industry participants during the 2007 Australian equine influenza (EI) outbreak and the statistical analysis undertaken to identify the factors associated with this high psychological distress. In addition, follow-up data collected 1 year later are reported briefly.
Demonstrating freedom from equine influenza in New South Wales, Australia, following the 2007 outbreak.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 164-169 doi: 10.1111/j.1751-0813.2011.00779.x
Sergeant ES, Wilson G.To quantify the probability of freedom from equine influenza (EI) in New South Wales (NSW), Australia, based on analysis of polymerase chain reaction (PCR) testing. Methods: Testing in the infected areas of NSW during the period 1 January to 30 April 2008. Results: Data from the random survey were collated and analysed to provide estimates of the probability of detecting EI if it was present at a prevalence ranging from 0.01% to 0.5%. The sensitivity estimates were then combined with a prior estimate of the probability of freedom in a simulation model, to estimate the posterior probability of ...
Real-time RT-PCR for detection of equine influenza and its evaluation using samples from horses infected with A/equine/Sydney/2007 (H3N8).
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 37-38 doi: 10.1111/j.1751-0813.2011.00739.x
Foord AJ, Selleck P, Colling A, Klippel J, Middleton D, Heine HG.No abstract available
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