PubMed Health⌕ Search

Biomedical subjects

N L Meyers

Publications and source records attributed to N L Meyers.

11 recordsLinked to original sources

Experimental herpes simplex virus type 1 (HSV-1) infection of the spinal cord and dorsal root ganglia.

Host factors determining the outcome of herpes simplex virus type 1 (HSV-1) infection within neurons are poorly understood. This paper aims to identify regional differences in the behaviour of HSV-1 within the nervous system as an approach to investigating the role of the host environment in determining the outcome of infection. We describe a mouse model of HSV infection focused on motor neurons of the spinal cord, resulting from intramuscular injection (i.m.) and compare this with the behaviour of virus within sensory neurons following scarification of virus on to skin. Viral antigen was detectable immunohistochemically by 2 days in both models and disappeared by 9-11 days. The time course of acute infection was reflected in the i.m. group by quantitative plaque assay for virus. Inflammation and cell destruction occurred in both models, but clinical features and histological destruction were greater in the group infected via the intramuscular route. In the sensory ganglia, a latent state from which virus could be reactivated by explanation, was established with LATS expression detectable in many neurons at 35 days post-infection (p.i.), but not in non-neuronal cells. Expression of latency associated transcript (LATS) was detected in motor neutrons in spinal cords at 35 days p.i. providing evidence for establishment of a LATS-positive latent state at this site, and continued to be detectable up to 6 months post-infection. In addition, LATS was detected in white matter at late times, suggesting a non-neuronal site of latency. In contrast to the behaviour in sensory ganglia, induced reactivation from spinal cords, by explanation and nerve section, was a very rare event. We have shown that a LATS-positive latent state can be established within motor neurons of the CNS, but that there are regional differences in the biology and outcome of infection between the CNS and peripheral nervous system. We propose that this may be a useful model to study reproducibly, the behaviour of HSV-1 in a CNS environment and, by comparison with sensory ganglion infection, to explore host factors which may underlie these regional differences. The relevance of this model for using HSV-1 as a therapeutic vector for motor neurons is also discussed.

Animals↗

The neurobiology of alphaherpesvirus infections.

In this review we have tried to outline some of the recent experimental data which has contributed to our understanding the neurobiology of herpesviruses. We have attempted to draw together the threads of several different but related disciplines, i.e. virology, immunology, neurobiology and cell biology, to demonstrate how all are inextricably linked and may be used in combination to address some of the issues surrounding the molecular basis of herpesvirus latency and reactivation. In conclusion, the interaction between virus and host and in particular the neuron, is very complex. We have probably only scratched the surface here in revealing some of the many pathways and factors which are thought to impinge on this unique relationship. Ultimately, it is likely that a full understanding of that relationship will prove to be one of the most exciting and important milestones in biology.

Alphaherpesvirinae↗

Antibody response elicited against empty reticuloendotheliosis virus particles in two inbred lines of chicken.

Immunisation of Houghton White Leghorn line 15I and 6(1) chickens with empty reticuloendotheliosis virus particles elicited a primary antibody response which is probably directed against the viral envelope glycoproteins gp73/71 and gp22. Antibodies in line 15I birds were shown to be non-neutralising and did not protect against the tumourigenic effects of reticuloendotheliosis virus, strain T. However, immunised line 6(1) chicks did not exhibit the runting syndrome associated with reticuloendotheliosis virus infection, suggesting that antibody against viral coat proteins may play a role in modulating pathogenesis in certain lines of chicken.

Animals↗