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About:
Changes in salivary analytes in canine parvovirus: A high-resolution quantitative proteomic study
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An Entity of Type :
schema:ScholarlyArticle
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covidontheweb.inria.fr
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Type:
Academic Article
research paper
schema:ScholarlyArticle
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type
Academic Article
research paper
schema:ScholarlyArticle
isDefinedBy
Covid-on-the-Web dataset
has title
Changes in salivary analytes in canine parvovirus: A high-resolution quantitative proteomic study
Creator
Eckersall, David
Escribano, Damián
Franco-Martínez, Lorena
Guillemin, Nicolas
Horvatić, Anita
Kocatürk, Meriç
Lamy, Elsa
Martínez-Subiela, Silvia
Mrljak, Vladimir
Tvarijonaviciute, Asta
Yilmaz, Zeki
Cerón, José
Source
Elsevier; Medline; PMC
abstract
Abstract The present study evaluated the changes in salivary proteome in parvoviral enteritis (PVE) in dogs through a high-throughput quantitative proteomic analysis. Saliva samples from healthy dogs and dogs with severe parvovirosis that survived or perished due to the disease were analysed and compared by Tandem Mass Tags (TMT) analysis. Proteomic analysis quantified 1516 peptides, and 287 (corresponding to 190 proteins) showed significantly different abundances between studied groups. Ten proteins were observed to change significantly between dogs that survived or perished due to PVE. Bioinformatics’ analysis revealed that saliva reflects the involvement of different pathways in PVE such as catalytic activity and binding, and indicates antimicrobial humoral response as a pathway with a major role in the development of the disease. These results indicate that saliva proteins reflect physiopathological changes that occur in PVE and could be a potential source of biomarkers for this disease.
has issue date
2018-10-31
(
xsd:dateTime
)
bibo:doi
10.1016/j.cimid.2018.09.011
bibo:pmid
30396423
has license
els-covid
sha1sum (hex)
001ec025dd65db8a47827c8f49d9c41d60f35d00
schema:url
https://doi.org/10.1016/j.cimid.2018.09.011
resource representing a document's title
Changes in salivary analytes in canine parvovirus: A high-resolution quantitative proteomic study
has PubMed Central identifier
PMC7124818
has PubMed identifier
30396423
schema:publication
Comparative Immunology, Microbiology and Infectious Diseases
resource representing a document's body
covid:001ec025dd65db8a47827c8f49d9c41d60f35d00#body_text
is
schema:about
of
named entity 'Mass'
named entity 'Tags'
named entity 'evaluated'
named entity 'study'
named entity 'quantified'
named entity 'proteomic'
covid:arg/001ec025dd65db8a47827c8f49d9c41d60f35d00
named entity 'perished'
named entity 'salivary'
named entity 'studied'
named entity 'Saliva'
named entity 'Proteomic'
named entity 'proteome'
named entity 'Tandem Mass Tags'
named entity 'Proteomic analysis'
named entity 'high-throughput'
named entity 'Saliva samples'
named entity 'proteomic study'
named entity 'canine parvovirus'
named entity 'vomiting'
named entity 'fibrinogen'
named entity 'Gene Ontology'
named entity 'transmembrane'
named entity 'Korea'
named entity 'glutathione'
named entity 'canine'
named entity 'trypsin'
named entity 'Gene Ontology'
named entity 'haematological'
named entity 'saliva'
named entity 'iodoacetamide'
named entity 'Thermo Scientific'
named entity 'disease-free'
named entity 'apolipoprotein'
named entity 'saliva'
named entity 'negative regulation'
named entity 'neutropenia'
named entity 'apoptosis'
named entity 'plug-in'
named entity 'saliva'
named entity 'saliva'
named entity 'interactome'
named entity 'lymphopenia'
named entity 'biomarkers'
named entity 'metabolism'
named entity 'neutropenia'
named entity 'cell growth'
named entity 'saliva'
named entity 'prognosis'
named entity 'clinician'
named entity 'parvovirus'
named entity 'fibrinogen'
named entity 'animal species'
named entity 'over-expressed'
named entity 'haemorrhage'
named entity 'dehydration'
named entity 'sepsis'
named entity 'biological processes'
named entity 'inflammation'
named entity 'S100A12'
named entity 'rapidly dividing cells'
named entity 'EFHD2'
named entity 'virus'
named entity 'Gram-negative bacteria'
named entity 'protein'
named entity 'hydroxylamine'
named entity 'Streptococcus pyogenes'
named entity 'glycoproteins'
named entity 'bladder cancer'
named entity 'necrosis'
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