Interaction of severe acute respiratory syndrome-associated coronavirus with dendritic cells
Open Access
- 1 July 2006
- journal article
- Published by Microbiology Society in Journal of General Virology
- Vol. 87 (7) , 1953-1960
- https://doi.org/10.1099/vir.0.81624-0
Abstract
Severe acute respiratory syndrome (SARS) of humans is caused by a novel coronavirus of zoonotic origin termed SARS-associated coronavirus (SARS-CoV). The virus induces severe injury of lung tissue, as well as lymphopenia and destruction of the architecture of lymphatic tissue by as-yet-unknown mechanisms. In this study, the interaction of SARS-CoV with dendritic cells (DCs), the key regulators of immune responses, was analysed. Monocyte-derived DCs were infected with SARS-CoV and analysed for viability, surface-marker expression and alpha interferon (IFN-α) induction. SARS-CoV infection was monitored by quantitative RT-PCR, immunofluorescence analysis and recovery experiments. SARS-CoV infected both immature and mature DCs, although replication efficiency was low. Immature DCs were activated by SARS-CoV infection and by UV-inactivated SARS-CoV. Infected DCs were still viable on day 6 post-infection, but major histocompatibility complex class I upregulation was missing, indicating that DC function was impaired. Additionally, SARS-CoV infection induced a delayed activation of IFN-α expression. Therefore, it is concluded that SARS-CoV has the ability to circumvent both the innate and the adaptive immune systems.Keywords
This publication has 41 references indexed in Scilit:
- Organ distribution of severe acute respiratory syndrome (SARS) associated coronavirus (SARS‐CoV) in SARS patients: implications for pathogenesis and virus transmission pathwaysThe Journal of Pathology, 2004
- Treatment of SARS with human interferonsThe Lancet, 2003
- The clinical pathology of severe acute respiratory syndrome (SARS): a report from ChinaThe Journal of Pathology, 2003
- Identification of a Novel Coronavirus in Patients with Severe Acute Respiratory SyndromeNew England Journal of Medicine, 2003
- Human cytomegalovirus impairs dendritic cell function: a novel mechanism of human cytomegalovirus immune escapeEuropean Journal of Immunology, 2003
- In Vitro Detection of Apoptosis in Monocytes/Macrophages Infected with Human CoronavirusClinical and Vaccine Immunology, 2002
- Viral mechanisms of immune evasionTrends in Microbiology, 2000
- Maturation, Activation, and Protection of Dendritic Cells Induced by Double-stranded RNAThe Journal of Experimental Medicine, 1999
- Dendritic cells and the control of immunityNature, 1998
- Origin, maturation and antigen presenting function of dendritic cellsCurrent Opinion in Immunology, 1997