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Approaches in the understanding of morbillivirus neurovirulence
S L Cosby1, W P Duprex, L A Hamill
1Department of Microbiology, Medical Biology Centre, Queen's University Belfast, Belfast, Northern Ireland, United Kingdom. l.cosby@qub.ac.uk
Abstract:
Certain members of the morbillivirus genus, canine distemper virus, phocine distemper virus, and the cetacean viruses of dolphins and porpoises exhibit high levels of central nervous system (CNS) infection in their natural hosts. CNS complications are rare for measles virus (MV) and are not associated with rinderpest virus (RPV) and peste des petits ruminants virus (PPRV) infection. However, both RPV and PPRV are neurovirulent in permissive murine strains. Human postmortem tissue, neural cell cultures, and animal models have been used to answer major questions concerning morbillivirus neurovirulence. Studies of the MV CNS complication subacute sclerosing panencephalitis (SSPE) indicate that virus could enter the CNS either by direct infection of endothelial cells or in infected leucocytes, followed by infection of predominately neurones and oligodendrocytes. It has been established that MV neurovirulence in mice is partially determined by the virus-receptor specificity. The two known MV receptors, CD46 and SLAM, have been examined in normal and SSPE brain tissue and the findings suggest that further receptors may be necessary to explain infection of the CNS with wild-type strains of MV. In both humans and mice (and in vitro), once infection of neurones has been established, virus spreads transneuronally. It is possible that all morbilliviruses transiently infect the CNS in their natural hosts, but development of disease is dependent on the efficiency of the immune response. Alternatively, for RPV and PPRV, virus entry may be restricted due either to absence of viral receptors or failure of virus to replicate or spread in the CNS.
Insights
Morbilliviruses like canine distemper virus can infect the central nervous system (CNS). While measles virus (MV) rarely causes CNS complications, research explores morbillivirus neurovirulence, receptor specificity, and spread within the CNS.
Area of Science:
- Virology
- Neuroscience
- Immunology
Background:
- Morbilliviruses exhibit varied neuroinvasive potential in natural hosts.
- Canine distemper virus and phocine distemper virus frequently cause CNS infections.
- Measles virus (MV) rarely causes CNS complications, unlike RPV and PPRV in mice.
Purpose of the Study:
- To investigate the mechanisms of morbillivirus neurovirulence.
- To understand virus entry into the central nervous system (CNS).
- To explore the role of viral receptors and host immune response in disease development.
Main Methods:
- Analysis of human postmortem brain tissue.
- In vitro studies using neural cell cultures.
- In vivo experiments using animal models.
Main Results:
- MV enters the CNS via endothelial cells or infected leukocytes, infecting neurons and oligodendrocytes.
- MV neurovirulence in mice is partly determined by CD46 and SLAM receptor specificity.
- Transneuronal spread of MV occurs in infected neurons in humans and mice.
Conclusions:
- Further CNS receptors may be involved in wild-type MV infections.
- Morbillivirus CNS disease development may depend on the host immune response.
- RPV and PPRV neurovirulence may be limited by receptor absence or replication failure in the CNS.