Related Experiment Video
Updated: May 26, 2026

Modeling Neuronal Death and Degeneration in Mouse Primary Cerebellar Granule Neurons
Published on: November 6, 2017
Glutamate released by Japanese encephalitis virus-infected microglia involves TNF-α signaling and contributes to
Chun-Jung Chen1, Yen-Chuan Ou, Cheng-Yi Chang
1Department of Education and Research, Taichung Veterans General Hospital, Taichung, Taiwan.
Abstract:
The substantial activation of microglia in Japanese encephalitis virus (JEV)-induced Japanese encephalitis found in numerous studies demonstrates that the disease pathogenesis involves bystander damage caused by microglia-released mediators. Previously, we reported that microglia synthesized and secreted bioactive mediators with neurotoxic potential into the cultured supernatants in response to JEV infection. In this study, we found that the supernatants of JEV-infected microglia caused MK801-inhibitable neuronal damage in cultured neurons, indicating a potential excitotoxic mechanism. Infection with JEV was found to elicit the extracellular glutamate accumulation from microglia but not from neuron and astrocyte cultures. The glutaminase inhibitor 6-diazo-5-oxo-L-norleucine, cystine/glutamate antiporter inhibitor α-aminoadipic acid, and the gap junction inhibitor carbenoxolone reduced JEV infection-induced microglial glutamate release and neurotoxicity. We further demonstrated that tumor necrosis factor-alpha (TNF-α) was a key cytokine which stimulated extensive microglial glutamate release by up-regulating glutaminase expression via signals involving protein kinase C, cAMP responsive element-binding protein, and CAAT-enhancer-binding protein-beta. Although the elevated expression of excitatory amino acid transporter 1 and 2 was observed in JEV-infected cells, the glutamate uptake activity was significantly inhibited by TNF-α. The JEV infection-induced alterations, such as the extracellular glutamate release and glutamate-mediated excitoneurotoxicity, also occurred in neuron/glia cultures. Our findings support a potential link between neuroinflammation and the development of excitotoxic neuronal injury in Japanese encephalitis. The link between neuroinflammation and excitotoxic death may involve a mechanism in which TNF-α released by microglia plays a facilitory role in glutamate excitoneurotoxicity via up-regulation of glutamate synthesis and down-regulation of glutamate uptake.
Insights
Japanese encephalitis virus (JEV) infection causes microglia to release glutamate, leading to excitotoxic neuronal damage. Tumor necrosis factor-alpha (TNF-α) exacerbates this by increasing glutamate release and reducing uptake, linking neuroinflammation to excitotoxicity.
Area of Science:
- Neuroscience
- Immunology
- Virology
Background:
- Microglia activation is key in Japanese encephalitis virus (JEV)-induced Japanese encephalitis.
- Microglia-derived mediators contribute to neurotoxicity during JEV infection.
- Previous work showed JEV-infected microglia release neurotoxic mediators.
Purpose of the Study:
- Investigate the mechanism of JEV-induced neurotoxicity.
- Determine the role of microglia-released glutamate in excitotoxicity.
- Elucidate the involvement of tumor necrosis factor-alpha (TNF-α) in this process.
Main Methods:
- Cultured microglia, neurons, and neuron/glia co-cultures were infected with JEV.
- Assessed neuronal damage using MK801 inhibition.
- Measured extracellular glutamate levels and the effects of specific inhibitors (glutaminase, antiporter, gap junction).
- Analyzed the role of TNF-α and its signaling pathways (PKC, CREB, C/EBPβ) on glutamate metabolism.
- Evaluated glutamate transporter expression and uptake activity.
Main Results:
- Supernatants from JEV-infected microglia caused excitotoxic neuronal damage.
- JEV infection increased extracellular glutamate release from microglia.
- Inhibitors of glutamate synthesis and transport reduced JEV-induced neurotoxicity.
- TNF-α upregulated microglial glutaminase expression and glutamate release.
- TNF-α inhibited glutamate uptake despite increased transporter expression.
- JEV-induced glutamate excitotoxicity was observed in mixed neuron/glia cultures.
Conclusions:
- JEV infection induces excitotoxic neuronal injury via microglial glutamate release.
- TNF-α plays a critical role by promoting glutamate synthesis and impairing uptake.
- This highlights a link between neuroinflammation and excitotoxic neuronal death in Japanese encephalitis.
Related Concept Videos
Encephalitis ll: Pathophysiology
Arboviral Encephalitis
Encephalitis l: Introduction
Hepatic Encephalopathy
Bacterial Meningitis II: Pathophysiology

