Seizures beget seizures in temporal lobe epilepsies: the boomerang effects of newly formed aberrant kainatergic synapses
- PMID: 18488058
- PMCID: PMC2384153
- DOI: 10.1111/j.1535-7511.2008.00241.x
Seizures beget seizures in temporal lobe epilepsies: the boomerang effects of newly formed aberrant kainatergic synapses
Abstract
Do temporal lobe epilepsy (TLE) seizures in adults promote further seizures? Clinical and experimental data suggest that new synapses are formed after an initial episode of status epilepticus, however their contribution to the transformation of a naive network to an epileptogenic one has been debated. Recent experimental data show that newly formed aberrant excitatory synapses on the granule cells of the fascia dentate operate by means of kainate receptor-operated signals that are not present on naive granule cells. Therefore, genuine epileptic networks rely on signaling cascades that differentiate them from naive networks. Recurrent limbic seizures generated by the activation of kainate receptors and synapses in naive animals lead to the formation of novel synapses that facilitate the emergence of further seizures. This negative, vicious cycle illustrates the central role of reactive plasticity in neurological disorders.
References
-
- Gowers W. Epilepsy and Other Chronic Convulsive Disorders: Their Causes, Symptoms and Treatment. London, Churchill: J&A; 1881.
-
- Ben-Ari Y. Limbic seizure and brain-damage produced by kainic acid—mechanisms and relevance to human temporal-lobe epilepsy. Neuroscience. 1985;14:375–403. - PubMed
-
- Ben-Ari Y, Cossart R. Kainate, a double agent that generates seizures: two decades of progress. Trends Neurosci. 2000;23:580–587. - PubMed
-
- Nadler JV. The recurrent mossy fiber pathway of the epileptic brain. Neurochem Res. 2003;28:1649–1658. - PubMed
-
- Crepel V, Represa A, Beaudoin M, Ben-Ari Y. Hippocampal damage induced by ischemia and intra-amygdaloid kainate injection – effects on N-methyl-D-aspartate, N-(1-[2-thienyl]cyclohexyl)piperidine and glycine binding-sites. Neuroscience. 1989;31:605–612. - PubMed
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