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Using Enzyme-based Biosensors to Measure Tonic and Phasic Glutamate in Alzheimer's Mouse Models
Published on: May 3, 2017
Peripherally restricted viral challenge elevates extracellular glutamate and enhances synaptic transmission in the
Holly C Hunsberger1,2, Desheng Wang3,4, Tiffany J Petrisko5
1Behavioral Neuroscience, Department of Psychology, West Virginia University, Morgantown, West Virginia, USA.
Abstract:
Peripheral infections increase the propensity and severity of seizures in susceptible populations. We have previously shown that intraperitoneal injection of a viral mimic, polyinosinic-polycytidylic acid (PIC), elicits hypersusceptibility of mice to kainic acid (KA)-induced seizures. This study was undertaken to determine whether this seizure hypersusceptibility entails alterations in glutamate signaling. Female C57BL/6 mice were intraperitoneally injected with PIC, and after 24 h, glutamate homeostasis in the hippocampus was monitored using the enzyme-based microelectrode arrays. PIC challenge robustly increased the level of resting extracellular glutamate. While pre-synaptic potassium-evoked glutamate release was not affected, glutamate uptake was profoundly impaired and non-vesicular glutamate release was augmented, indicating functional alterations of astrocytes. Electrophysiological examination of hippocampal slices from PIC-challenged mice revealed a several fold increase in the basal synaptic transmission as compared to control slices. PIC challenge also increased the probability of pre-synaptic glutamate release as seen from a reduction of paired-pulse facilitation and synaptic plasticity as seen from an enhancement of long-term potentiation. Altogether, our results implicate a dysregulation of astrocytic glutamate metabolism and an alteration of excitatory synaptic transmission as the underlying mechanism for the development of hippocampal hyperexcitability, and consequently seizure hypersusceptibility following peripheral PIC challenge. Peripheral infections/inflammations enhance seizure susceptibility. Here, we explored the effect of peritoneal inflammation induced by a viral mimic on glutamate homeostasis and glutamatergic neurotransmission in the mouse hippocampus. We found that peritoneal inflammation elevated extracellular glutamate concentration and enhanced the probability of pre-synaptic glutamate release resulting in hyperexcitability of neuronal networks. These mechanisms are likely to underlie the enhanced seizure propensity.
Insights
Peripheral inflammation, induced by polyinosinic-polycytidylic acid (PIC), increases seizure susceptibility. This occurs due to impaired glutamate uptake and altered synaptic transmission in the hippocampus.
Area of Science:
- Neuroscience
- Neuroinflammation
- Epilepsy Research
Background:
- Peripheral infections can worsen seizures in susceptible individuals.
- Previous studies showed polyinosinic-polycytidylic acid (PIC) increases seizure susceptibility in mice.
- The impact of PIC-induced inflammation on hippocampal glutamate signaling remained unclear.
Purpose of the Study:
- To investigate if PIC-induced seizure hypersusceptibility involves changes in glutamate signaling.
- To examine glutamate homeostasis and neurotransmission in the hippocampus following PIC challenge.
Main Methods:
- Mice received intraperitoneal injections of PIC.
- Hippocampal glutamate levels and release were measured using microelectrode arrays.
- Electrophysiology was used to assess synaptic transmission and plasticity in hippocampal slices.
Main Results:
- PIC challenge elevated resting extracellular glutamate levels.
- Glutamate uptake was impaired, and non-vesicular release increased, suggesting astrocyte dysfunction.
- Basal synaptic transmission, glutamate release probability, and long-term potentiation were enhanced.
- Paired-pulse facilitation decreased, indicating increased presynaptic release probability.
Conclusions:
- Dysregulation of astrocytic glutamate metabolism contributes to hippocampal hyperexcitability.
- Altered excitatory synaptic transmission underlies seizure hypersusceptibility after PIC challenge.
- These findings elucidate mechanisms linking peripheral inflammation to increased seizure propensity.
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