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Roles of macrophages in measles virus infection of genetically modified mice
B Roscic-Mrkic1, R A Schwendener, B Odermatt
1Molecular Biology Institute, University of Zurich, Switzerland.
Abstract:
Knowledge of the mechanisms of virus dissemination in acute measles is cursory, but cells of the monocyte/macrophage (MM) lineage appear to be early targets. We characterized the dissemination of the Edmonston B vaccine strain of measles virus (MV-Ed) in peripheral blood mononuclear cells (PBMC) of two mouse strains expressing the human MV-Ed receptor CD46 with human-like tissue specificity and efficiency. In one strain the alpha/beta interferon receptor is defective, allowing for efficient MV-Ed systemic spread. In both mouse strains the PBMC most efficiently infected were F4/80-positive MMs, regardless of the inoculation route used. Circulating B lymphocytes and CD4-positive T lymphocytes were infected at lower levels, but no infected CD8-positive T lymphocytes were detected. To elucidate the roles of MMs in infection, we depleted these cells by clodronate liposome treatment in vivo. MV-Ed infection of splenic MM-depleted mice caused strong activation and infection of splenic dendritic cells (DC), followed by enhanced virus replication in the spleen. Similarly, depletion of lung macrophages resulted in strong activation and infection of lung DC. Thus, in MV infections of genetically modified mice, blood monocytes and tissue macrophages provide functions beneficial for both the virus and the host: they support virus replication early after infection, but they also contribute to protecting other immune cells from infection. Human MM may have similar roles in acute measles.
Insights
Monocyte/macrophages (MM) are early targets for measles virus (MV-Ed) infection in mice. Depleting MMs led to dendritic cell activation and enhanced virus replication, suggesting MMs play a dual role in MV infection.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Mechanisms of measles virus (MV) dissemination are not fully understood.
- Monocyte/macrophage (MM) lineage cells are suspected early targets in acute measles.
Purpose of the Study:
- To characterize MV dissemination in peripheral blood mononuclear cells (PBMC) of genetically modified mice expressing the human MV receptor CD46.
- To elucidate the role of MMs in MV infection and dissemination.
Main Methods:
- Used two mouse strains with human-like CD46 expression for MV-Ed infection.
- Administered clodronate liposomes to deplete MMs in vivo.
- Analyzed infected cell populations (MMs, B lymphocytes, T lymphocytes) and dendritic cell (DC) activation.
Main Results:
- F4/80-positive MMs were the most efficiently infected PBMC in both mouse strains.
- B lymphocytes and CD4+ T lymphocytes showed lower infection levels; CD8+ T lymphocytes were not infected.
- MM depletion resulted in splenic and lung DC activation and enhanced virus replication in the spleen.
Conclusions:
- In this mouse model, MMs are crucial early targets for MV-Ed.
- MMs support virus replication and also protect other immune cells from infection.
- Human MMs may have similar dual roles in acute measles pathogenesis.