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Pathogenesis of murine enterovirus myocarditis: virus dissemination and immune cell targets
K Klingel1, S Stephan, M Sauter
1Institute for Pathology, Department of Molecular Pathology, University of Tübingen, Germany. Karin.Klingel@uni-tuebingen.de
Abstract:
In order to identify organ and cellular targets of persistent enterovirus infection in vivo, immunocompetent mice (SWR/J, H-2q) were inoculated intraperitoneally with coxsackievirus B3 (CVB3). By use of in situ hybridization for the detection of enteroviral RNA, we show that CVB3 is capable of inducing a multiorgan disease. During acute infection, viral RNA was visualized at high levels in the heart muscle, pancreas, spleen, and lymph nodes and at comparably low levels in the central nervous system, thymus, lung, and liver. At later stages of the disease, the presence of enteroviral RNA was found to be restricted to the myocardium, spleen, and lymph nodes. To characterize infected lymphoid cells during the course of the disease, enteroviral RNA and cell-specific surface antigens were visualized simultaneously in situ in spleen tissue sections. In acute infection, the majority of infected spleen cells, which are located primarily at the periphery of lymph follicles, were found to express the CD45R/B220+ phenotype of pre-B and B cells. Whereas viral RNA was also detected in certain CD4+ helper T cells and Mac-1+ macrophages, no enteroviral genomes were identified in CD8+ cytotoxic/suppressor T cells. Later in disease, the localization of enteroviral RNA revealed a persistent type of infection of B cells within the germinal centers of secondary follicles. In addition, detection of the replicative viral minus-strand RNA intermediate provided evidence for virus replication in lymphoid cells of the spleen during the course of the disease. These data indicate that immune cells are important targets of CVB3 infection, providing a noncardiac reservoir for viral RNA during acute and persistent myocardial enterovirus infection.
Insights
Persistent enterovirus infection targets immune cells, particularly B cells in the spleen, acting as a reservoir for viral RNA during acute and chronic heart infections.
Area of Science:
- Virology
- Immunology
- Pathology
Background:
- Enteroviruses, like coxsackievirus B3 (CVB3), can cause persistent infections.
- Identifying viral targets in vivo is crucial for understanding disease pathogenesis.
Purpose of the Study:
- To identify organ and cellular targets of persistent coxsackievirus B3 (CVB3) infection in immunocompetent mice.
- To investigate the role of immune cells in CVB3 infection and persistence.
Main Methods:
- Intraperitoneal inoculation of SWR/J mice with CVB3.
- In situ hybridization to detect enteroviral RNA in various organs and cell types.
- Simultaneous visualization of viral RNA and cell-specific surface antigens (e.g., B220, CD4, Mac-1, CD8) in spleen tissue.
Main Results:
- CVB3 induced multiorgan disease, with high viral RNA levels in the heart, pancreas, spleen, and lymph nodes during acute infection.
- Viral RNA persisted in the myocardium, spleen, and lymph nodes at later stages.
- In acute infection, CVB3 primarily infected pre-B and B cells (CD45R/B220+) in the spleen periphery, with some infection in CD4+ T cells and macrophages, but not CD8+ T cells.
- Persistent infection involved B cells within germinal centers, and viral replication was confirmed in splenic lymphoid cells.
Conclusions:
- Immune cells, especially B cells, are significant targets of CVB3 infection.
- Infected immune cells serve as a noncardiac reservoir for viral RNA during acute and persistent enterovirus infections of the heart.