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Protection of CD3 delta knockout mice from lymphocytic choriomeningitis virus-induced immunopathology: implications
D J Kappes1, D M Lawrence, M M Vaughn
1Division of Basic Science, The Fox Chase Cancer Center, 7701 Burholme Avenue, Philadelphia, Pennsylvania, 19111, USA.
Abstract:
For a virus to establish a neuronal infection, it must spread from its primary site of infection to the central nervous system (CNS) before immune-mediated clearance occurs. Lymphocytic choriomeningitis virus (LCMV) is a murine pathogen that can result in persistent neuronal infection in newborn mice and in adults that lack CD8(+) T cells. To determine the neuroinvasive capacity of LCMV in the presence of an existent, but compromised, cytotoxic T lymphocyte response, the course of LCMV infection was examined in mice that possess 10% of the normal complement of T lymphocytes, due to the lack of the CD3 delta (delta) subunit of the T cell receptor complex (CD3 delta KO mice). Unlike immunocompetent mice that produced a massive immune response that caused death by 6-7 days postinfection, CD3 delta KO mice mounted a weak response and survived. The presence of viral antigen gradually shifted from the class I MHC-positive meninges and ependyma to class I MHC-deficient CNS neurons 10-30 days postinoculation. The infected CD3 delta KO mice developed a delayed T cell response that suppressed virus replication in peripheral tissues but not in the CNS; subsequent adoptive transfer experiments supported the hypothesis that the lack of clearance from neurons was due to sequestration of LCMV in an immune-privileged cell type. Based on these results, we propose that a critical parameter in the pathogenesis of neurotropic viruses is the rate of immune activation; individuals with impaired T cell responses may be more vulnerable to persisting CNS infections.
Insights
A weakened T cell response allows viruses like Lymphocytic choriomeningitis virus (LCMV) to persist in the central nervous system (CNS). Impaired immunity increases vulnerability to neurotropic viral infections.
Area of Science:
- Neurovirology
- Immunology
- Central Nervous System (CNS) Infections
Background:
- Viruses must reach the CNS before immune clearance to cause neuronal infection.
- Lymphocytic choriomeningitis virus (LCMV) can cause persistent CNS infections in specific immune-deficient models.
Purpose of the Study:
- To investigate LCMV neuroinvasion in mice with a compromised cytotoxic T lymphocyte response (CD3 delta KO mice).
- To understand the role of T cell response rate in neurotropic viral pathogenesis.
Main Methods:
- Examined LCMV infection course in CD3 delta knockout (KO) mice with reduced T cell populations.
- Tracked viral antigen distribution within the CNS over time.
- Utilized adoptive transfer experiments to test immune clearance hypotheses.
Main Results:
- CD3 delta KO mice survived LCMV infection due to a weak immune response, unlike immunocompetent mice.
- Viral antigens shifted from meninges to CNS neurons in KO mice.
- Delayed T cell response suppressed peripheral virus but not CNS infection, suggesting immune privilege.
Conclusions:
- The rate of immune activation is critical in neurotropic viral pathogenesis.
- Individuals with impaired T cell immunity are more susceptible to persistent CNS infections.
- LCMV clearance failure in neurons may be due to sequestration in immune-privileged cells.
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