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A Murine Model of Dengue Virus-induced Acute Viral Encephalitis-like Disease
Published on: April 28, 2019
Microglial response to murine leukemia virus-induced encephalopathy is a good indicator of neuronal perturbations
Qing-Shan Xue1, Cui Yang, Paul M Hoffman
1Department of Neuroscience, PO Box 100244, University of Florida College of Medicine, McKnight Brain Institute, Gainesville, FL 32610-0244, USA.
Abstract:
The neuronal pathology caused by neonatal infection of rats with the PVC-211 murine leukemia virus (PVC-211 MuLV) and its underlying mechanisms are not well defined even though a loss of neurons and spongiform neurodegeneration has been reported to accompany the disease. Here we sought to identify sites of neurodegeneration using microglial reactivity as an indirect marker and to characterize microglial activation during disease progression. Using a panel of microglial antibodies including Iba1, OX-42, ED1, and anti-ferritin, we have studied the response of microglial cells to neonatal CNS infection with PVC-211 at post-infection survival times 7, 14, 21, and 28 days. We found that microglial activation occurred primarily in the spinal cord and brainstem where it gradually increased in intensity over the time course of this study. Other brain areas were relatively unremarkable in their microglial reaction to viral infection within this time frame. However, the presence of activated microglial cells was not correlated directly with the presence of viral glycoprotein (gp70), which was expressed in endothelial cells throughout the CNS. Although double-labeling of microglia with Iba1 and ED1 revealed numerous actively phagocytic microglia during disease progression, not all activated microglia were ED1-positive. In addition to the intense microglial activation, we found increased ferritin expression sporadically throughout the virus-infected brain. The ferritin-positive cells were mostly microglia that exhibited dystrophic changes and likely represented a degenerating subpopulation of microglial cells. Thus, activated microglia can co-exist with degenerating microglia in the same brain region. We attempted to localize degenerating neurons or neurites using Fluoro-Jade, anti-tau, and anti-alpha synuclein staining, but none of these procedures yielded results to indicate obvious neuronal pathology. We conclude that the visualization of microglial activation is a more sensitive measure of neuronal perturbations than direct detection of neuronal pathology which may be subtle and not produce overt degenerative changes.
Insights
Neonatal infection with PVC-211 murine leukemia virus (PVC-211 MuLV) causes microglial activation in rat spinal cord and brainstem. Microglial reactivity is a more sensitive indicator of subtle neuronal changes than direct pathology detection.
Area of Science:
- Neuroscience
- Immunology
- Virology
Background:
- Neonatal infection with PVC-211 murine leukemia virus (PVC-211 MuLV) leads to neuronal loss and spongiform neurodegeneration.
- The precise mechanisms and pathological sites of PVC-211 MuLV-induced neurodegeneration remain poorly understood.
- Microglial cells are key immune responders in the central nervous system (CNS) and can serve as indicators of neuropathology.
Purpose of the Study:
- To identify neurodegeneration sites using microglial reactivity as an indirect marker.
- To characterize microglial activation patterns during the progression of PVC-211 MuLV infection.
Main Methods:
- Neonatal rats were infected with PVC-211 MuLV.
- Microglial responses were assessed at 7, 14, 21, and 28 days post-infection using antibodies against Iba1, OX-42, ED1, and ferritin.
- Viral glycoprotein (gp70) expression and potential neuronal pathology markers (Fluoro-Jade, anti-tau, anti-alpha synuclein) were also examined.
Main Results:
- Microglial activation was predominantly observed in the spinal cord and brainstem, increasing over time.
- Activated microglia were not directly correlated with viral glycoprotein (gp70) presence in endothelial cells.
- Intense microglial activation, including phagocytic and degenerating microglia (ferritin-positive), was noted, but direct neuronal pathology was not evident.
Conclusions:
- Microglial activation serves as a sensitive marker for detecting neuronal perturbations following PVC-211 MuLV infection.
- Direct detection of neuronal pathology may be less sensitive for subtle changes induced by this virus.
- Activated and degenerating microglia can coexist in the same affected CNS regions.
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