Severe acute respiratory syndrome vaccine development: experiences of vaccination against avian infectious bronchitis coronavirus
Top Cited Papers
Open Access
- 1 December 2003
- journal article
- review article
- Published by Taylor & Francis in Avian Pathology
- Vol. 32 (6) , 567-582
- https://doi.org/10.1080/03079450310001621198
Abstract
Vaccines against infectious bronchitis of chickens (Gallus gallus domesticus) have arguably been the most successful, and certainly the most widely used, of vaccines for diseases caused by coronaviruses, the others being against bovine, canine, feline and porcine coronaviruses. Infectious bronchitis virus (IBV), together with the genetically related coronaviruses of turkey (Meleagris gallopovo) and ring-necked pheasant (Phasianus colchicus), is a group 3 coronavirus, severe acute respiratory syndrome (SARS) coronavirus being tentatively in group 4, the other known mammalian coronaviruses being in groups 1 and 2. IBV replicates not only in respiratory tissues (including the nose, trachea, lungs and airsacs, causing respiratory disease), but also in the kidney (associated with minor or major nephritis), oviduct, and in many parts of the alimentary tract—the oesophagus, proventriculus, duodenum, jejunum, bursa of Fabricius, caecal tonsils (near the distal end of the tract), rectum and cloaca (the common opening for release of eggs and faeces), usually without clinical effects. The virus can persist, being re-excreted at the onset of egg laying (4 to 5 months of age), believed to be a consequence of the stress of coming into lay. Genetic lines of chickens differ in the extent to which IBV causes mortality in chicks, and in respect of clearance of the virus after the acute phase. Live attenuated (by passage in chicken embryonated eggs) IBV strains were introduced as vaccines in the 1950s, followed a couple of decades later by inactivated vaccines for boosting protection in egg-laying birds. Live vaccines are usually applied to meat-type chickens at 1 day of age. In experimental situations this can result in sterile immunity when challenged by virulent homologous virus. Although 100% of chickens may be protected (against clinical signs and loss of ciliary activity in trachea), sometimes 10% of vaccinated chicks do not respond with a protective immune response. Protection is short lived, the start of the decline being apparent 9 weeks after vaccination with vaccines based on highly attenuated strains. IBV exists as scores of serotypes (defined by the neutralization test), cross-protection often being poor. Consequently, chickens may be re-vaccinated, with the same or another serotype, two or three weeks later. Single applications of inactivated virus has generally led to protection of SARS coronavirus, become asymptomatic excretors of virus, thereby posing a risk to non-vaccinated people. Looking further into the future, the high efficacy of the fowl adenovirus vector expressing the IBV S1 subunit provides optimism for a live SARS vaccine, if that were deemed to be necessary, with the possibility of including the N protein gene.Keywords
This publication has 112 references indexed in Scilit:
- Infectious bronchitis virus: Immunopathogenesis of infection in the chickenAvian Pathology, 1997
- Molecular analysis of the 793/B serotype of infectious bronchitis virus in Great BritainAvian Pathology, 1997
- Susceptibility of organ cultures from chicken tissues for strains of infectious bronchitis virus isolated from the intestineAvian Pathology, 1997
- Relationship between sequence variation in the S1 spike protein of infectious bronchitis virus and the extent of cross‐protectionin vivoAvian Pathology, 1997
- Cytopathology of chick renal epithelial cells experimentally infected with avian infectious bronchitis virusAvian Pathology, 1996
- Histopathology and immunohistochemistry of renal lesions due to infectious bronchitis virus in chicksAvian Pathology, 1996
- Challenge experiments to evaluate cross‐protection induced at the trachea and kidney level by vaccine strains and Belgian nephropathogenic isolates of avian infectious bronchitis virusAvian Pathology, 1993
- Location of the amino acid differences in the S1 spike glycoprotein subunit of closely related serotypes of infectious bronchitis virusAvian Pathology, 1992
- Comparison of the susceptibility to avian infectious bronchitis virus infection of two inbred lines of white leghorn chickensAvian Pathology, 1990
- Studies with a bivalent infectious bronchitis killed virus vaccineAvian Pathology, 1990