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Multi-electrode Array Recordings of Human Epileptic Postoperative Cortical Tissue
Published on: October 26, 2014
Cell injury and receptor expression in the epileptic human amygdala
Maryam Jafarian1, Sayed Mostafa Modarres Mousavi1, Fatemeh Alipour1
1Shefa Neuroscience Research Center, Khatam Alanbia Hospital, Tehran, Iran.
Abstract:
Neuropathological findings in the amygdala obtained from patients with mesial temporal lobe epilepsy (MTLE) indicate varying degrees of histopathological alterations, such as neuronal loss and gliosis. The mechanisms underlying cellular damage in the amygdala of patients with MTLE have not been fully elucidated. In the present study, we assess cellular damage, determine the receptor expression of major inhibitory and excitatory neurotransmitters, and evaluate the correlation between the expression of various receptors and cell damage in the basolateral complex and the centromedial areas in the amygdala specimens resected during brain surgery on 30 patients with medically intractable MTLE. Our data reveal an increased rate of cell damage and apoptosis as well as decreased expression levels of several GABAergic receptor subunits (GABAARα1, GABAARβ3, and GABABR1) and GAD65 in the amygdalae obtained during epilepsy surgery compared to autopsy specimens. Analyses of the expression of glutamate excitatory receptor subunits (NR1, NR2B, mGluR1α, GluR1, and GluR2) reveal no significant differences between the epileptic amygdalae and autopsy control tissues. Furthermore, the increased occurrence of apoptotic cells in the amygdala is negatively correlated with the reduced expression of the studied GABAergic receptor subunits and GAD65 but is not correlated with the expression of excitatory receptors. The present data point to the importance of GABAergic neurotransmission in seizure-induced cell injury in the amygdala of patients with MTLE and suggest several GABA receptor subunits as potential druggable target structures to control epilepsy and its comorbid disorders, such as anxiety.
Insights
Mesial temporal lobe epilepsy (MTLE) involves amygdala cell damage and apoptosis. Reduced GABAergic receptor expression correlates with this damage, suggesting GABA receptor targets for epilepsy treatment.
Area of Science:
- Neuroscience
- Epilepsy Research
- Cellular Biology
Background:
- Mesial temporal lobe epilepsy (MTLE) is characterized by neuropathological changes in the amygdala, including neuronal loss and gliosis.
- The precise mechanisms driving amygdala cellular damage in MTLE remain incompletely understood.
Purpose of the Study:
- To investigate cellular damage and neurotransmitter receptor expression in the amygdala of MTLE patients.
- To explore correlations between receptor expression and cell damage in specific amygdala regions (basolateral complex and centromedial areas).
Main Methods:
- Analysis of amygdala specimens from 30 surgically treated MTLE patients.
- Assessment of cell damage, apoptosis rates, and expression levels of GABAergic and glutamatergic receptor subunits.
- Comparison with autopsy control specimens.
Main Results:
- Increased cell damage and apoptosis observed in MTLE amygdalae compared to controls.
- Decreased expression of GABAergic receptor subunits (GABAARα1, GABAARβ3, GABABR1) and GAD65.
- No significant differences in excitatory glutamate receptor subunit expression; no correlation with cell damage.
Conclusions:
- GABAergic neurotransmission plays a critical role in seizure-induced amygdala injury in MTLE.
- Specific GABA receptor subunits represent potential therapeutic targets for epilepsy and associated anxiety disorders.
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