H5N1 and 1918 Pandemic Influenza Virus Infection Results in Early and Excessive Infiltration of Macrophages and Neutrophils in the Lungs of Mice
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Open Access
- 1 August 2008
- journal article
- review article
- Published by Public Library of Science (PLoS) in PLoS Pathogens
- Vol. 4 (8), e1000115
- https://doi.org/10.1371/journal.ppat.1000115
Abstract
Fatal human respiratory disease associated with the 1918 pandemic influenza virus and potentially pandemic H5N1 viruses is characterized by severe lung pathology, including pulmonary edema and extensive inflammatory infiltrate. Here, we quantified the cellular immune response to infection in the mouse lung by flow cytometry and demonstrate that mice infected with highly pathogenic (HP) H1N1 and H5N1 influenza viruses exhibit significantly high numbers of macrophages and neutrophils in the lungs compared to mice infected with low pathogenic (LP) viruses. Mice infected with the 1918 pandemic virus and a recent H5N1 human isolate show considerable similarities in overall lung cellularity, lung immune cell sub-population composition and cellular immune temporal dynamics. Interestingly, while these similarities were observed, the HP H5N1 virus consistently elicited significantly higher levels of pro-inflammatory cytokines in whole lungs and primary human macrophages, revealing a potentially critical difference in the pathogenesis of H5N1 infections. These results together show that infection with HP influenza viruses such as H5N1 and the 1918 pandemic virus leads to a rapid cell recruitment of macrophages and neutrophils into the lungs, suggesting that these cells play a role in acute lung inflammation associated with HP influenza virus infection. In addition, primary macrophages and dendritic cells were also susceptible to 1918 and H5N1 influenza virus infection in vitro and in infected mouse lung tissue. Patients who succumbed to influenza during the 1918 pandemic had severe lung pathology marked by extensive inflammatory infiltrate, indicating a robust immune response in the lung. Similar findings have been reported from H5N1-infected patients, raising the question as to why people expire in the presence of a strong immune response. We addressed this question by characterizing the immune cell populations in the mouse lung following infection with the 1918 pandemic virus and two H5N1 viruses isolated from fatal cases. Our data shows excessive immune cell infiltration in the lungs contributing to severe consolidation and tissue architecture destruction in mice infected with highly pathogenic (HP) influenza viruses, supporting the histopathological observations of lung tissue from 1918 and H5N1 fatalities. We found that certain cells of the innate immune system, specifically macrophages and neutrophils, increase significantly into the mouse lung shortly following HP virus infection. Interestingly, lung macrophages and dendritic cells were shown to be susceptible to 1918 and H5N1 virus infection in vitro or ex vivo, suggesting a possible mechanism of immunopathogenesis. Identification of the precise inflammatory cells associated with lung inflammation will be important for the development of treatments that could potentially enhance or modulate host innate immune responses.Keywords
This publication has 51 references indexed in Scilit:
- Single gene reassortants identify a critical role for PB1, HA, and NA in the high virulence of the 1918 pandemic influenza virusProceedings of the National Academy of Sciences, 2008
- Highly Pathogenic Avian Influenza H5N1 Viruses Elicit an Attenuated Type I Interferon Response in Polarized Human Bronchial Epithelial CellsJournal of Virology, 2007
- Inhibition of the cytokine response does not protect against lethal H5N1 influenza infectionProceedings of the National Academy of Sciences, 2007
- Differential onset of apoptosis in influenza A virus H5N1- and H1N1-infected human blood macrophagesJournal of General Virology, 2007
- Role of Host Cytokine Responses in the Pathogenesis of Avian H5N1 Influenza Viruses in MiceJournal of Virology, 2007
- Genomic analysis of increased host immune and cell death responses induced by 1918 influenza virusNature, 2006
- 1918 Influenza: the Mother of All PandemicsEmerging Infectious Diseases, 2006
- 1918 Influenza: the Mother of All PandemicsEmerging Infectious Diseases, 2006
- Avian Influenza A (H5N1) Infection in HumansNew England Journal of Medicine, 2005
- Human Disease from Influenza A (H5N1), Thailand, 2004Emerging Infectious Diseases, 2005