Time Course and Cellular Localization of SARS-CoV Nucleoprotein and RNA in Lungs from Fatal Cases of SARS
Open Access
- 3 January 2006
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLoS Medicine
- Vol. 3 (2) , e27
- https://doi.org/10.1371/journal.pmed.0030027
Abstract
Cellular localization of severe acute respiratory syndrome coronavirus (SARS-CoV) in the lungs of patients with SARS is important in confirming the etiological association of the virus with disease as well as in understanding the pathogenesis of the disease. To our knowledge, there have been no comprehensive studies investigating viral infection at the cellular level in humans. We collected the largest series of fatal cases of SARS with autopsy material to date by merging the pathological material from two regions involved in the 2003 worldwide SARS outbreak in Hong Kong, China, and Toronto, Canada. We developed a monoclonal antibody against the SARS-CoV nucleoprotein and used it together with in situ hybridization (ISH) to analyze the autopsy lung tissues of 32 patients with SARS from Hong Kong and Toronto. We compared the results of these assays with the pulmonary pathologies and the clinical course of illness for each patient. SARS-CoV nucleoprotein and RNA were detected by immunohistochemistry and ISH, respectively, primarily in alveolar pneumocytes and, less frequently, in macrophages. Such localization was detected in four of the seven patients who died within two weeks of illness onset, and in none of the 25 patients who died later than two weeks after symptom onset. The pulmonary alveolar epithelium is the chief target of SARS-CoV, with macrophages infected subsequently. Viral replication appears to be limited to the first two weeks after symptom onset, with little evidence of continued widespread replication after this period. If antiviral therapy is considered for future treatment, it should be focused on this two-week period of acute clinical disease.Keywords
This publication has 36 references indexed in Scilit:
- Multiple organ infection and the pathogenesis of SARSThe Journal of Experimental Medicine, 2005
- Aged BALB/c Mice as a Model for Increased Severity of Severe Acute Respiratory Syndrome in Elderly HumansJournal of Virology, 2005
- Fatal Severe Acute Respiratory Syndrome Is Associated with Multiorgan Involvement by CoronavirusThe Journal of Infectious Diseases, 2005
- Pulmonary pathology of severe acute respiratory syndrome in TorontoLaboratory Investigation, 2005
- Re: To KF, Tong JH, Chan PK,et al. Tissue and cellular tropism of the coronavirus associated with severe acute respiratory syndrome: anin-situ hybridization study of fatal cases.J Pathol 2004; 202: 157–163The Journal of Pathology, 2004
- Plasma inflammatory cytokines and chemokines in severe acute respiratory syndromeClinical and Experimental Immunology, 2004
- Isolation and Characterization of Viruses Related to the SARS Coronavirus from Animals in Southern ChinaScience, 2003
- A Single Amino Acid Mutation in the PA Subunit of the Influenza Virus RNA Polymerase Inhibits Endonucleolytic Cleavage of Capped RNAsJournal of Virology, 2002
- The Acute Respiratory Distress SyndromeNew England Journal of Medicine, 2000
- Immunolocalization of tumour necrosis factor α in lung tissue from patients dying with adult respiratory distress syndromeHistopathology, 1991