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1.
Vaccine ; 38(6): 1486-1493, 2020 02 05.
Artigo em Inglês | MEDLINE | ID: mdl-31822427

RESUMO

Infectious bronchitis (IB) is a highly contagious respiratory disease of poultry, caused by the avian coronavirus infectious bronchitis virus (IBV). Currently, one of the most relevant genotypes circulating worldwide is IBV-QX (GI-19), for which vaccines have been developed by passaging virulent QX strains in embryonated chicken eggs. Here we explored the attenuated phenotype of a commercially available QX live vaccine, IB Primo QX, in specific pathogens free broilers. At hatch, birds were inoculated with QX vaccine or its virulent progenitor IBV-D388, and postmortem swabs and tissues were collected each day up to eight days post infection to assess viral replication and morphological changes. In the trachea, viral RNA replication and protein expression were comparable in both groups. Both viruses induced morphologically comparable lesions in the trachea, albeit with a short delay in the vaccinated birds. In contrast, in the kidney, QX vaccine viral RNA was nearly absent, which coincided with the lack of any morphological changes in this organ. This was in contrast to high viral RNA titers and abundant lesions in the kidney after IBV D388 infection. Furthermore, QX vaccine showed reduced ability to reach and replicate in conjunctivae and intestines including cloaca, resulting in significantly lower titers and delayed protein expression, respectively. Nephropathogenic IBVs might reach the kidney also via an ascending route from the cloaca, based on our observation that viral RNA was detected in the cloaca one day before detection in the kidney. In the kidney distal tubular segments, collecting ducts and ureter were positive for viral antigen. Taken together, the attenuated phenotype of QX vaccine seems to rely on slower dissemination and lower replication in target tissues other than the site of inoculation.


Assuntos
Vírus da Bronquite Infecciosa , Vacinas Virais/farmacocinética , Animais , Galinhas , Cloaca/virologia , Infecções por Coronavirus/prevenção & controle , Feminino , Vírus da Bronquite Infecciosa/imunologia , Vírus da Bronquite Infecciosa/patogenicidade , Vírus da Bronquite Infecciosa/fisiologia , Rim/patologia , Rim/virologia , Masculino , Distribuição Tecidual , Traqueia/patologia , Traqueia/virologia , Vacinas Atenuadas/administração & dosagem , Vacinas Atenuadas/farmacocinética , Vacinas Virais/administração & dosagem , Replicação Viral
2.
J Virol ; 89(17): 8783-92, 2015 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-26063435

RESUMO

UNLABELLED: Viruses exploit molecules on the target membrane as receptors for attachment and entry into host cells. Thus, receptor expression patterns can define viral tissue tropism and might to some extent predict the susceptibility of a host to a particular virus. Previously, others and we have shown that respiratory pathogens of the genus Gammacoronavirus, including chicken infectious bronchitis virus (IBV), require specific α2,3-linked sialylated glycans for attachment and entry. Here, we studied determinants of binding of enterotropic avian gammacoronaviruses, including turkey coronavirus (TCoV), guineafowl coronavirus (GfCoV), and quail coronavirus (QCoV), which are evolutionarily distant from respiratory avian coronaviruses based on the viral attachment protein spike (S1). We profiled the binding of recombinantly expressed S1 proteins of TCoV, GfCoV, and QCoV to tissues of their respective hosts. Protein histochemistry showed that the tissue binding specificity of S1 proteins of turkey, quail, and guineafowl CoVs was limited to intestinal tissues of each particular host, in accordance with the reported pathogenicity of these viruses in vivo. Glycan array analyses revealed that, in contrast to the S1 protein of IBV, S1 proteins of enteric gammacoronaviruses recognize a unique set of nonsialylated type 2 poly-N-acetyl-lactosamines. Lectin histochemistry as well as tissue binding patterns of TCoV S1 further indicated that these complex N-glycans are prominently expressed on the intestinal tract of various avian species. In conclusion, our data demonstrate not only that enteric gammacoronaviruses recognize a novel glycan receptor but also that enterotropism may be correlated with the high specificity of spike proteins for such glycans expressed in the intestines of the avian host. IMPORTANCE: Avian coronaviruses are economically important viruses for the poultry industry. While infectious bronchitis virus (IBV), a respiratory pathogen of chickens, is rather well known, other viruses of the genus Gammacoronavirus, including those causing enteric disease, are hardly studied. In turkey, guineafowl, and quail, coronaviruses have been reported to be the major causative agent of enteric diseases. Specifically, turkey coronavirus outbreaks have been reported in North America, Europe, and Australia for several decades. Recently, a gammacoronavirus was isolated from guineafowl with fulminating disease. To date, it is not clear why these avian coronaviruses are enteropathogenic, whereas other closely related avian coronaviruses like IBV cause respiratory disease. A comprehensive understanding of the tropism and pathogenicity of these viruses explained by their receptor specificity and receptor expression on tissues was therefore needed. Here, we identify a novel glycan receptor for enteric avian coronaviruses, which will further support the development of vaccines.


Assuntos
Infecções por Coronavirus/veterinária , Coronavirus do Peru/metabolismo , Receptores Virais/metabolismo , Tropismo Viral/genética , Animais , Galinhas/virologia , Infecções por Coronavirus/virologia , Enterite/virologia , Galactanos/metabolismo , Vírus da Bronquite Infecciosa/metabolismo , Intestinos/virologia , Doenças das Aves Domésticas/virologia , Ligação Proteica/genética , Perus/virologia
3.
Virus Res ; 194: 37-48, 2014 Dec 19.
Artigo em Inglês | MEDLINE | ID: mdl-25451062

RESUMO

Avian coronaviruses of the genus Gammacoronavirus are represented by infectious bronchitis virus (IBV), the coronavirus of chicken. IBV causes a highly contagious disease affecting the respiratory tract and, depending on the strain, other tissues including the reproductive and urogenital tract. The control of IBV in the field is hampered by the many different strains circulating worldwide and the limited protection across strains due to serotype diversity. This diversity is believed to be due to the amino acid variation in the S1 domain of the major viral attachment protein spike. In the last years, much effort has been undertaken to address the role of the avian coronavirus spike protein in the various steps of the virus' live cycle. Various models have successfully been developed to elucidate the contribution of the spike in binding of the virus to cells, entry of cell culture cells and organ explants, and the in vivo tropism and pathogenesis. This review will give an overview of the literature on avian coronavirus spike proteins with particular focus on our recent studies on binding of recombinant soluble spike protein to chicken tissues. With this, we aim to summarize the current understanding on the avian coronavirus spike's contribution to host and tissue predilections, pathogenesis, as well as its role in therapeutic and protective interventions.


Assuntos
Vírus da Bronquite Infecciosa/fisiologia , Glicoproteína da Espícula de Coronavírus/metabolismo , Tropismo Viral , Ligação Viral , Internalização do Vírus , Animais , Galinhas
4.
Vet J ; 196(1): 40-6, 2013 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-22939088

RESUMO

Intra-articular injection of opioids provides analgesia in painful equine joints and µ-opioid receptors (MORs) have been demonstrated in equine synovial membranes. The aim of this study was to determine whether acute inflammatory conditions will lead to up-regulation of MOR in equine synovial membranes and whether anti-inflammatory treatment can prevent any such upregulation. In a two-period, blinded, placebo-controlled randomised cross-over design, lipopolysaccharide (LPS, 1.0 ng) was injected into the left or right middle carpal joint of seven healthy ponies. Arthroscopy and synovial membrane biopsy was performed under general anaesthesia at baseline, 48 h (T48) and 672 h (T672) after LPS injection, with ponies assigned to receive either phenylbutazone (PBZ 2.2mg/kg PO BID) or placebo from 2h post-LPS. Ponies were scored for pain and lameness. Repeated synovial fluid samples were obtained and the degree of synovitis scored both macroscopically and microscopically. The density and staining pattern of MOR-like protein in synovial membrane biopsies over the course of the synovitis with or without PBZ treatment was evaluated using immunohistochemical techniques. LPS injection consistently induced a severe transient synovitis. Pain and lameness were significantly attenuated by treatment with PBZ. Up-regulation of MOR-like protein in the inflamed equine synovial membrane could be demonstrated in the placebo treated animals, but not in the PBZ-treated animals overall, although there were no significant differences at any individual time-point between the two groups. It was concluded that acute inflammation will up-regulate MOR, while anti-inflammatory treatment will attenuate this response.


Assuntos
Anti-Inflamatórios não Esteroides/uso terapêutico , Doenças dos Cavalos/tratamento farmacológico , Coxeadura Animal/tratamento farmacológico , Dor/veterinária , Fenilbutazona/uso terapêutico , Receptores Opioides mu/metabolismo , Membrana Sinovial/metabolismo , Sinovite/veterinária , Animais , Artroscopia/veterinária , Western Blotting/veterinária , Articulações do Carpo/metabolismo , Articulações do Carpo/patologia , Estudos Cross-Over , Escherichia coli/fisiologia , Doenças dos Cavalos/induzido quimicamente , Doenças dos Cavalos/metabolismo , Cavalos , Inflamação/induzido quimicamente , Inflamação/tratamento farmacológico , Inflamação/metabolismo , Inflamação/veterinária , Injeções Intra-Articulares/veterinária , Coxeadura Animal/induzido quimicamente , Coxeadura Animal/metabolismo , Lipopolissacarídeos/administração & dosagem , Lipopolissacarídeos/imunologia , Locomoção/efeitos dos fármacos , Masculino , Dor/tratamento farmacológico , Líquido Sinovial/metabolismo , Sinovite/induzido quimicamente , Sinovite/tratamento farmacológico , Sinovite/metabolismo , Regulação para Cima
5.
Food Microbiol ; 28(5): 974-9, 2011 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-21569941

RESUMO

Preservation of natural sausage casings using dry salt or saturated brine is regarded as sufficient to inactivate vegetative pathogenic non-spore-forming bacteria present on the casings. Although the outgrowth of bacterial spores is prevented by salt or saturated brine preservation, these spores will remain present and develop into vegetative cells when conditions are more favourable. To prevent subsequent outgrowth additional preservation measures should be implemented. In the experiments described the use of nisin was evaluated to reduce outgrowth of spores in desalinated casings. The bacteriocin nisin was chosen because of its known efficacy against spore-forming bacteria and their spores in various foodstuffs. Clostridium spore suspensions (Clostridium sporogenes, ATCC 3584) were used in two concentrations to inoculate three nisin concentrations (10, 50, 100 µg/mL) in water containing gamma-irradiated casings. Additionally, the binding of nisin to casings, using (14)C-labeled nisin Z and subsequent availability of nisin were evaluated. Results demonstrate that nisin is partly reversibly bound to casings and can reduce the outgrowth of Clostridium spores in the model used by approximately 1 log(10) (90%). However, the biological relevance of these results needs to be determined further by conducting industrial trials before any recommendation can be made on the practical implementation of nisin in the preservation of natural sausage casings.


Assuntos
Clostridium/efeitos dos fármacos , Conservação de Alimentos/métodos , Conservantes de Alimentos/farmacologia , Nisina/farmacologia , Esporos Bacterianos/crescimento & desenvolvimento , Clostridium/crescimento & desenvolvimento , Esporos Bacterianos/efeitos dos fármacos
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