Biological characteristics and propagation of human rhinovirus-C in differentiated sinus epithelial cells
about
Rhinovirus C targets ciliated airway epithelial cells.Virus/Allergen Interaction in Asthma ExacerbationChimeric rhinoviruses obtained via genetic engineering or artificially induced recombination are viable only if the polyprotein coding sequence derives from the same species.Multiple classes of antiviral agents exhibit in vitro activity against human rhinovirus type CLPS modulates rhinovirus-induced chemokine secretion in monocytes and macrophages.Effects of rhinovirus species on viral replication and cytokine production.Temperature-dependent innate defense against the common cold virus limits viral replication at warm temperature in mouse airway cells.Species-specific and cross-reactive IgG1 antibody binding to viral capsid protein 1 (VP1) antigens of human rhinovirus species A, B and C.Identification of a novel human rhinovirus C type by antibody capture VIDISCA-454.Phenotypic responses of differentiated asthmatic human airway epithelial cultures to rhinovirus.Cadherin-related family member 3, a childhood asthma susceptibility gene product, mediates rhinovirus C binding and replication.Rhinovirus-C detection in children presenting with acute respiratory infection to hospital in Brazil.Phosphatidylinositol 4-kinase III beta is essential for replication of human rhinovirus and its inhibition causes a lethal phenotype in vivo.Modeling of the human rhinovirus C capsid suggests possible causes for antiviral drug resistance.Rhinoviral infection and asthma: the detection and management of rhinoviruses by airway epithelial cells.How rhinovirus infections cause exacerbations of asthma.The contributions of allergic sensitization and respiratory pathogens to asthma inception.Rhinoviruses and Their Receptors: Implications for Allergic DiseaseReverse genetics system for studying human rhinovirus infections.Classification and evolution of human rhinovirusesProduction, purification, and capsid stability of rhinovirus C types.Immunization with Live Human Rhinovirus (HRV) 16 Induces Protection in Cotton Rats against HRV14 Infection.Propagation of rhinovirus-C strains in human airway epithelial cells differentiated at air-liquid interfaceModeling of the human rhinovirus C capsid suggests a novel topography with insights on receptor preference and immunogenicity.Conditionally reprogrammed primary airway epithelial cells maintain morphology, lineage and disease specific functional characteristics.Rhinovirus Biology, Antigenic Diversity, and Advancements in the Design of a Human Rhinovirus Vaccine.
P2860
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P2860
Biological characteristics and propagation of human rhinovirus-C in differentiated sinus epithelial cells
description
2012 nî lūn-bûn
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2012年の論文
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2012年論文
@yue
2012年論文
@zh-hant
2012年論文
@zh-hk
2012年論文
@zh-mo
2012年論文
@zh-tw
2012年论文
@wuu
2012年论文
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2012年论文
@zh-cn
name
Biological characteristics and ...... ntiated sinus epithelial cells
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Biological characteristics and ...... ntiated sinus epithelial cells
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type
label
Biological characteristics and ...... ntiated sinus epithelial cells
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Biological characteristics and ...... ntiated sinus epithelial cells
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prefLabel
Biological characteristics and ...... ntiated sinus epithelial cells
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Biological characteristics and ...... ntiated sinus epithelial cells
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P2093
P2860
P1433
P1476
Biological characteristics and ...... ntiated sinus epithelial cells
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P2093
James E Gern
Rebecca Brockman-Schneider
Shamaila Ashraf
Thomas R Pasic
Yury A Bochkov
P2860
P304
P356
10.1016/J.VIROL.2012.11.002
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P577
2012-11-27T00:00:00Z