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Modeling Neuronal Death and Degeneration in Mouse Primary Cerebellar Granule Neurons
Published on: November 6, 2017
Proinflammatory mediators released by activated microglia induces neuronal death in Japanese encephalitis
Ayan Ghoshal1, Sulagna Das, Soumya Ghosh
1National Brain Research Centre, Manesar, Haryana, India.
Abstract:
While a number of studies have documented the importance of microglia in central nervous system (CNS) response to injury, infection and disease, little is known regarding its role in viral encephalitis. We therefore, exploited an experimental model of Japanese Encephalitis, to better understand the role played by microglia in Japanese Encephalitis Virus (JEV) infection. Lectin staining performed to assess microglial activation indicated a robust increase in reactive microglia following infection. A difference in the topographic distribution of activated, resting, and phagocytic microglia was also observed. The levels of various proinflammatory mediators, such as inducible nitric oxide synthase (iNOS), cyclooxygenase-2 (Cox-2), IL-6, IL-1beta, TNF-alpha, and MCP-1 that have been implicated in microglial response to an activational state was significantly elevated following infection. These cytokines exhibited region selective expression in the brains of infected animals, with the highest expression observed in the hippocampus. Moreover, the expression of neuronal specific nuclear protein NeuN was markedly downregulated during progressive infection indicating neuronal loss. In vitro studies further confirmed that microglial activation and subsequent release of various proinflammatory mediators induces neuronal death following JEV infection. Although initiation of immune responses by microglial cells is an important protective mechanism in the CNS, unrestrained inflammatory responses may result in irreparable brain damage. Our findings suggest that the increased microglial activation following JEV infection influences the outcome of viral pathogenesis. It is likely that the increased microglial activation triggers bystander damage, as the animals eventually succumb to infection.
Insights
Microglia activation increases during Japanese Encephalitis Virus (JEV) infection, leading to inflammation and neuronal death. This microglial response significantly impacts JEV pathogenesis and may cause bystander damage.
Area of Science:
- Neuroscience
- Immunology
- Virology
Background:
- Microglia are key immune cells in the central nervous system (CNS).
- Their role in viral encephalitis, specifically Japanese Encephalitis (JE), is not well understood.
- Japanese Encephalitis Virus (JEV) causes significant neurological disease.
Purpose of the Study:
- To investigate the role of microglia in the pathogenesis of JEV infection.
- To analyze microglial activation and inflammatory responses in a mouse model of JE.
- To determine the impact of microglial activation on neuronal survival during JEV infection.
Main Methods:
- Used a mouse model of Japanese Encephalitis.
- Assessed microglial activation using lectin staining.
- Measured levels of proinflammatory mediators (iNOS, Cox-2, IL-6, IL-1beta, TNF-alpha, MCP-1).
- Evaluated neuronal loss by quantifying NeuN expression.
- Conducted in vitro studies to confirm JEV-induced neuronal death.
Main Results:
- JEV infection robustly increased reactive microglia.
- Activated microglia showed distinct topographic distribution.
- Proinflammatory mediators and cytokines were significantly elevated, with highest expression in the hippocampus.
- Neuronal loss (downregulation of NeuN) was observed during infection.
- In vitro studies confirmed that activated microglia induce neuronal death.
Conclusions:
- Increased microglial activation is a key feature of JEV infection.
- Elevated inflammatory mediators contribute to neuronal damage and death.
- Unrestrained microglial response may lead to bystander damage and influence disease outcome.
- Microglial activation plays a critical role in the pathogenesis of Japanese Encephalitis.
Related Concept Videos
Encephalitis ll: Pathophysiology
Arboviral Encephalitis
Encephalitis l: Introduction
Bacterial Meningitis II: Pathophysiology

