Literature DB >> 15851378

Association of RANTES with the replication of severe acute respiratory syndrome coronavirus in THP-1 cells.

D Li1, N Wu, H Yao, A Bader, Norbert H Brockmeyer, P Altmeyer.   

Abstract

BACKGROUND: Severe acute respiratory syndrome (SARS) is a novel infectious disease which is characterized by an overaggressive immune response. Chemokines are important inflammatory mediators and regulate disease due to viral infection. In previous study, we found that SARS-CoV has the ability to replicate in mononuclear cells. In present work, we sought to characterize the replication of SARS-CoV at the presence of RANTES in THP-1 cells.
METHODS: To determine whether RANTES play an role in the process of SARS, THP-1 cells were incubated with heat-inactivated SARS-CoV and ELISA was used to test RANTES levels in the supernatants; Then the effect of dexamethasone on the induced secretion was evaluated. Real-time PCR was used to investigate the effort of RANTES on the replication of SARS-CoV in vitro. Macrophages, induced by THP-1 cells, were used as cell model.
FINDINGS: Inactive SARS-CoV could induce THP-1 cells secret RANTES and this increase effect could not be suppressed by DXM. RANTES itself could inhibit the replication of SARS-CoV in THP-1 cells when it was added into the culture before or at the same time with the virus; No inhibition effect was shown when RANTES were added into the culture after SARS-CoV infected the cells.

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Year:  2005        PMID: 15851378

Source DB:  PubMed          Journal:  Eur J Med Res        ISSN: 0949-2321            Impact factor:   2.175


  3 in total

1.  Modeling the early events of severe acute respiratory syndrome coronavirus infection in vitro.

Authors:  Yu-Ting Yen; Fang Liao; Cheng-Hsiang Hsiao; Chuan-Liang Kao; Yee-Chun Chen; Betty A Wu-Hsieh
Journal:  J Virol       Date:  2006-03       Impact factor: 5.103

2.  Inhibition of severe acute respiratory syndrome coronavirus replication in a lethal SARS-CoV BALB/c mouse model by stinging nettle lectin, Urtica dioica agglutinin.

Authors:  Yohichi Kumaki; Miles K Wandersee; Aaron J Smith; Yanchen Zhou; Graham Simmons; Nathan M Nelson; Kevin W Bailey; Zachary G Vest; Joseph K-K Li; Paul Kay-Sheung Chan; Donald F Smee; Dale L Barnard
Journal:  Antiviral Res       Date:  2011-02-19       Impact factor: 5.970

3.  A modular framework for the development of targeted Covid-19 blood transcript profiling panels.

Authors:  Darawan Rinchai; Basirudeen Syed Ahamed Kabeer; Mohammed Toufiq; Zohreh Tatari-Calderone; Sara Deola; Tobias Brummaier; Mathieu Garand; Ricardo Branco; Nicole Baldwin; Mohamed Alfaki; Matthew C Altman; Alberto Ballestrero; Matteo Bassetti; Gabriele Zoppoli; Andrea De Maria; Benjamin Tang; Davide Bedognetti; Damien Chaussabel
Journal:  J Transl Med       Date:  2020-07-31       Impact factor: 5.531

  3 in total

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