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Published on: May 14, 2013
Proinflammatory effects of interferon gamma in mouse adenovirus 1 myocarditis
Mary K McCarthy1, Megan C Procario2, Nele Twisselmann2
1Department of Microbiology and Immunology, University of Michigan, Ann Arbor, Michigan, USA.
Unlabelled:
Adenoviruses are frequent causes of pediatric myocarditis. Little is known about the pathogenesis of adenovirus myocarditis, and the species specificity of human adenoviruses has limited the development of animal models, which is a significant barrier to strategies for prevention or treatment. We have developed a mouse model of myocarditis following mouse adenovirus 1 (MAV-1) infection to study the pathogenic mechanisms of this important cause of pediatric myocarditis. Following intranasal infection of neonatal C57BL/6 mice, we detected viral replication and induction of interferon gamma (IFN-γ) in the hearts of infected mice. MAV-1 caused myocyte necrosis and induced substantial cellular inflammation that was composed predominantly of CD3(+) T lymphocytes. Depletion of IFN-γ during acute infection reduced cardiac inflammation in MAV-1-infected mice without affecting viral replication. We observed decreased contractility during acute infection of neonatal mice, and persistent viral infection in the heart was associated with cardiac remodeling and hypertrophy in adulthood. IFN-γ is a proinflammatory mediator during adenovirus-induced myocarditis, and persistent adenovirus infection may contribute to ongoing cardiac dysfunction.
Importance:
Studying the pathogenesis of myocarditis caused by different viruses is essential in order to characterize both virus-specific and generalized factors that contribute to disease. Very little is known about the pathogenesis of adenovirus myocarditis, which is a significant impediment to the development of treatment or prevention strategies. We used MAV-1 to establish a mouse model of human adenovirus myocarditis, providing the means to study host and pathogen factors contributing to adenovirus-induced cardiac disease during acute and persistent infection. The MAV-1 model will enable fundamental studies of viral myocarditis, including IFN-γ modulation as a therapeutic strategy.
Insights
A new mouse model using mouse adenovirus 1 (MAV-1) reveals interferon gamma (IFN-γ) drives inflammation in adenovirus myocarditis. This model aids understanding of viral heart disease and potential therapeutic strategies.
Area of Science:
- Virology
- Immunology
- Cardiology
Background:
- Adenoviruses are common causes of pediatric myocarditis.
- Limited understanding of adenovirus myocarditis pathogenesis hinders prevention and treatment strategies.
- Species specificity of human adenoviruses has restricted animal model development.
Purpose of the Study:
- To establish a mouse model of adenovirus myocarditis using mouse adenovirus 1 (MAV-1).
- To investigate the pathogenic mechanisms of adenovirus myocarditis, including the role of interferon gamma (IFN-γ).
- To provide a platform for studying host and pathogen factors in acute and persistent viral heart disease.
Main Methods:
- Neonatal C57BL/6 mice were intranasally infected with MAV-1.
- Viral replication, cardiac inflammation (CD3(+) T lymphocytes), myocyte necrosis, and cardiac function were assessed.
- IFN-γ depletion was performed during acute infection.
- Cardiac remodeling and hypertrophy were evaluated in adult mice with persistent infection.
Main Results:
- MAV-1 infection led to viral replication and IFN-γ induction in the heart.
- Myocyte necrosis and significant T-lymphocyte inflammation were observed.
- IFN-γ depletion reduced cardiac inflammation without impacting viral replication.
- Acute infection caused decreased cardiac contractility, while persistent infection was linked to cardiac remodeling and hypertrophy.
Conclusions:
- IFN-γ acts as a proinflammatory mediator in adenovirus-induced myocarditis.
- Persistent adenovirus infection may contribute to long-term cardiac dysfunction and remodeling.
- The MAV-1 mouse model is valuable for studying viral myocarditis pathogenesis and therapeutic interventions, such as IFN-γ modulation.
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