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A human in vitro model system for investigating genome-wide host responses to SARS coronavirus infection

BACKGROUND: The molecular basis of severe acute respiratory syndrome (SARS) coronavirus (CoV) induced pathology is still largely unclear. Many SARS patients suffer respiratory distress brought on by interstitial infiltration and frequently show peripheral blood lymphopenia and occasional leucopenia....

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Autores principales: Ng, Lisa FP, Hibberd, Martin L, Ooi, Eng-Eong, Tang, Kin-Fai, Neo, Soek-Ying, Tan, Jenny, Krishna Murthy, Karuturi R, Vega, Vinsensius B, Chia, Jer-Ming, Liu, Edison T, Ren, Ee-Chee
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2004
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC518965/
https://www.ncbi.nlm.nih.gov/pubmed/15357874
http://dx.doi.org/10.1186/1471-2334-4-34
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author Ng, Lisa FP
Hibberd, Martin L
Ooi, Eng-Eong
Tang, Kin-Fai
Neo, Soek-Ying
Tan, Jenny
Krishna Murthy, Karuturi R
Vega, Vinsensius B
Chia, Jer-Ming
Liu, Edison T
Ren, Ee-Chee
author_facet Ng, Lisa FP
Hibberd, Martin L
Ooi, Eng-Eong
Tang, Kin-Fai
Neo, Soek-Ying
Tan, Jenny
Krishna Murthy, Karuturi R
Vega, Vinsensius B
Chia, Jer-Ming
Liu, Edison T
Ren, Ee-Chee
author_sort Ng, Lisa FP
collection PubMed
description BACKGROUND: The molecular basis of severe acute respiratory syndrome (SARS) coronavirus (CoV) induced pathology is still largely unclear. Many SARS patients suffer respiratory distress brought on by interstitial infiltration and frequently show peripheral blood lymphopenia and occasional leucopenia. One possible cause of this could be interstitial inflammation, following a localized host response. In this study, we therefore examine the immune response of SARS-CoV in human peripheral blood mononuclear cells (PBMCs) over the first 24 hours. METHODS: PBMCs from normal healthy donors were inoculated in vitro with SARS-CoV and the viral replication kinetics was studied by real-time quantitative assays. SARS-CoV specific gene expression changes were examined by high-density oligonucleotide array analysis. RESULTS: We observed that SARS-CoV was capable of infecting and replicating in PBMCs and the kinetics of viral replication was variable among the donors. SARS-CoV antibody binding assays indicated that SARS specific antibodies inhibited SARS-CoV viral replication. Array data showed monocyte-macrophage cell activation, coagulation pathway upregulation and cytokine production together with lung trafficking chemokines such as IL8 and IL17, possibly activated through the TLR9 signaling pathway; that mimicked clinical features of the disease. CONCLUSIONS: The identification of human blood mononuclear cells as a direct target of SARS-CoV in the model system described here provides a new insight into disease pathology and a tool for investigating the host response and mechanisms of pathogenesis.
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spelling pubmed-5189652004-09-26 A human in vitro model system for investigating genome-wide host responses to SARS coronavirus infection Ng, Lisa FP Hibberd, Martin L Ooi, Eng-Eong Tang, Kin-Fai Neo, Soek-Ying Tan, Jenny Krishna Murthy, Karuturi R Vega, Vinsensius B Chia, Jer-Ming Liu, Edison T Ren, Ee-Chee BMC Infect Dis Research Article BACKGROUND: The molecular basis of severe acute respiratory syndrome (SARS) coronavirus (CoV) induced pathology is still largely unclear. Many SARS patients suffer respiratory distress brought on by interstitial infiltration and frequently show peripheral blood lymphopenia and occasional leucopenia. One possible cause of this could be interstitial inflammation, following a localized host response. In this study, we therefore examine the immune response of SARS-CoV in human peripheral blood mononuclear cells (PBMCs) over the first 24 hours. METHODS: PBMCs from normal healthy donors were inoculated in vitro with SARS-CoV and the viral replication kinetics was studied by real-time quantitative assays. SARS-CoV specific gene expression changes were examined by high-density oligonucleotide array analysis. RESULTS: We observed that SARS-CoV was capable of infecting and replicating in PBMCs and the kinetics of viral replication was variable among the donors. SARS-CoV antibody binding assays indicated that SARS specific antibodies inhibited SARS-CoV viral replication. Array data showed monocyte-macrophage cell activation, coagulation pathway upregulation and cytokine production together with lung trafficking chemokines such as IL8 and IL17, possibly activated through the TLR9 signaling pathway; that mimicked clinical features of the disease. CONCLUSIONS: The identification of human blood mononuclear cells as a direct target of SARS-CoV in the model system described here provides a new insight into disease pathology and a tool for investigating the host response and mechanisms of pathogenesis. BioMed Central 2004-09-09 /pmc/articles/PMC518965/ /pubmed/15357874 http://dx.doi.org/10.1186/1471-2334-4-34 Text en Copyright © 2004 Ng et al; licensee BioMed Central Ltd.
spellingShingle Research Article
Ng, Lisa FP
Hibberd, Martin L
Ooi, Eng-Eong
Tang, Kin-Fai
Neo, Soek-Ying
Tan, Jenny
Krishna Murthy, Karuturi R
Vega, Vinsensius B
Chia, Jer-Ming
Liu, Edison T
Ren, Ee-Chee
A human in vitro model system for investigating genome-wide host responses to SARS coronavirus infection
title A human in vitro model system for investigating genome-wide host responses to SARS coronavirus infection
title_full A human in vitro model system for investigating genome-wide host responses to SARS coronavirus infection
title_fullStr A human in vitro model system for investigating genome-wide host responses to SARS coronavirus infection
title_full_unstemmed A human in vitro model system for investigating genome-wide host responses to SARS coronavirus infection
title_short A human in vitro model system for investigating genome-wide host responses to SARS coronavirus infection
title_sort human in vitro model system for investigating genome-wide host responses to sars coronavirus infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC518965/
https://www.ncbi.nlm.nih.gov/pubmed/15357874
http://dx.doi.org/10.1186/1471-2334-4-34
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