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Updated: Aug 7, 2026

A Model for Epilepsy of Infectious Etiology using Theiler's Murine Encephalomyelitis Virus
Published on: June 23, 2022
A mouse model of persistent brain infection with recombinant Measles virus
S Schubert1, K Möller-Ehrlich1, K Singethan1
1Institute for Virology and Immunobiology, University of Würzburg, Versbacher Straße 7, D-97078 Würzburg, Germany.
Abstract:
Measles virus (MV) nucleocapsids are present abundantly in brain cells of patients with subacute sclerosing panencephalitis (SSPE). This invariably lethal brain disease develops years after acute measles as result of a persistent MV infection. Various rodent models for MV infection of the central nervous system (CNS) have been described in the past, in which the detection of viral antigens is based on histological staining procedures of paraffin embedded brains. Here, the usage of a recombinant MV (MV-EGFP-CAMH) expressing the haemagglutinin (H) of the rodent-adapted MV-strain CAM/RB and the enhanced green fluorescent protein (EGFP) is described. In newborn rodents the virus infects neurons and causes an acute lethal encephalitis. From 2 weeks on, when the immune system of the genetically unmodified animal is maturating, intracerebral (i.c.) infection is overcome subclinically, however, a focal persistent infection in groups of neurons remains. The complete brain can be analysed in 50 or 100 microm slices, and infected autofluorescent cells are readily detected. Seven and 28 days post-infection (p.i.) 86 and 81% of mice are infected, respectively, and virus persists for more than 50 days p.i. Intraperitoneal immunization with MV 1 week before infection, but not after infection, protects and prevents persistence. The high percentage of persistence demonstrates that this is a reliable and useful model of a persistent CNS infection in fully immunocompetent mice, which allows the investigation of determinants of the immune system.
Insights
A new recombinant measles virus (MV) model in rodents establishes persistent central nervous system (CNS) infection. This model allows studying persistent MV infections and immune system determinants in immunocompetent mice.
Area of Science:
- Neuroscience
- Virology
- Immunology
Background:
- Subacute sclerosing panencephalitis (SSPE) is a lethal brain disease caused by persistent measles virus (MV) infection.
- Existing rodent models for MV central nervous system (CNS) infection rely on histological staining of brain tissue.
Purpose of the Study:
- To describe a novel recombinant MV model (MV-EGFP-CAMH) for studying persistent CNS infections.
- To evaluate the utility of this model in immunocompetent mice for investigating immune system roles.
Main Methods:
- Generation of a recombinant MV expressing enhanced green fluorescent protein (EGFP) and MV haemagglutinin (H).
- Intracerebral inoculation of newborn rodents, followed by analysis of infected brain slices for EGFP fluorescence.
- Assessment of viral persistence and protection conferred by pre-infection immunization.
Main Results:
- The recombinant MV caused acute lethal encephalitis in newborn rodents.
- A focal persistent infection in neurons was established and detectable via EGFP fluorescence in brain slices.
- Virus persisted for over 50 days post-infection in 81-86% of infected mice.
- Intraperitoneal immunization one week prior to infection prevented viral persistence.
Conclusions:
- The MV-EGFP-CAMH model provides a reliable method for studying persistent CNS infections in immunocompetent mice.
- This model facilitates investigation into the determinants of the immune system in controlling persistent viral infections.

