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An In vitro Model to Study Immune Responses of Human Peripheral Blood Mononuclear Cells to Human Respiratory Syncytial Virus Infection
Published on: December 10, 2013
Respiratory syncytial virus and other respiratory viruses
1State University of New York and Children's Hospital of Buffalo, 219 Bryant Street, Buffalo, NY 14222, USA. rwelliver@upa.chob.edu
Insights
Respiratory syncytial virus (RSV) infection triggers inflammation via cytokines and chemokines. Elevated chemokine levels correlate with severe RSV disease and may link to wheezing in children.
Area of Science:
- Virology
- Immunology
- Pediatrics
Background:
- Respiratory syncytial virus (RSV) is a common infant respiratory pathogen.
- RSV pathogenesis involves viral and host factors, including immune responses.
- Epithelial cells and T lymphocytes play key roles in RSV-induced inflammation.
Purpose of the Study:
- To explore the role of cytokines and chemokines in RSV pathogenesis.
- To investigate the link between chemokine levels and RSV disease severity.
- To understand the long-term implications of RSV-induced inflammation.
Main Methods:
- Analysis of viral and host factors in RSV infection.
- Measurement of cytokine and chemokine levels (e.g., MIP-1α, MCP-1).
- Correlation of chemokine levels with clinical parameters like oxygen saturation.
Main Results:
- RSV infection activates epithelial cells to release inflammatory mediators.
- Elevated macrophage-inflammatory protein-1-alpha (MIP-1α) and monocyte chemotactic protein-1 (MCP-1) are associated with severe bronchiolitis.
- Higher chemokine levels correlate with lower oxygen saturation, indicating disease severity.
Conclusions:
- Chemokine release is implicated in the severity of RSV disease.
- Children with eosinophilia during RSV bronchiolitis may have increased risk of later wheezing.
- Other respiratory viruses like influenza share similar inflammatory pathways with RSV.
Abstract:
Respiratory syncytial virus (RSV), a nonsegmented, single stranded RNA virus, infects one-half of all infants within the first year of life. RSV possesses pathogenetic qualities that may be attributed to the interplay of viral and host-specific factors including virus strains of different virulence, size of the inoculum, family history of asthma or airway hyperreactivity and immunologic anomalies of the host. Inflammatory cell recruitment and activation occur in response to RSV infection of epithelial cells. Epithelial cells initiate the inflammatory response to RSV by elaborating a wide variety of cytokines and chemokines that trigger further inflammatory responses. Helper T lymphocytes mediate the relative balance of cytokine production and also secrete a variety of antiviral and proinflammatory interleukins. Elevated levels of macrophage-inflammatory protein-1-alpha, an attractant of eosinophils, and monocyte chemotactic protein-1 parallel severe forms of bronchiolitis. Macrophage-inflammatory protein-1-alpha and monocyte chemotactic protein-1 levels also are inversely related to oxygen saturation, suggesting that severity of RSV disease may be linked to chemokine release. Children known to be eosinophilic during an episode of bronchiolitis appear more prone to wheeze at an older age. Influenza, parainfluenza and metapneumoviruses share major epidemiologic risk factors for lower respiratory tract infection similar to those of RSV. Like RSV some of these viruses may also promote an exaggerated lymphocyte-proliferative response, and subjects infected with parainfluenza viruses produce elevated levels of virus-specific IgE. Preliminary evidence suggests that severe RSV and influenza viral infections are mediated via chemokine up-regulation.
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