Limbic Network Interactions Leading to Hyperexcitability in a Model of Temporal Lobe Epilepsy
- 1 January 2002
- journal article
- research article
- Published by American Physiological Society in Journal of Neurophysiology
- Vol. 87 (1), 634-639
- https://doi.org/10.1152/jn.00351.2001
Abstract
In mouse brain slices that contain reciprocally connected hippocampus and entorhinal cortex (EC) networks, CA3 outputs control the EC propensity to generate experimentally induced ictal-like discharges resembling electrographic seizures. Neuronal damage in limbic areas, such as CA3 and dentate hilus, occurs in patients with temporal lobe epilepsy and in animal models (e.g., pilocarpine- or kainate-treated rodents) mimicking this epileptic disorder. Hence, hippocampal damage in epileptic mice may lead to decreased CA3 output function that in turn would allow EC networks to generate ictal-like events. Here we tested this hypothesis and found that CA3-driven interictal discharges induced by 4-aminopyridine (4AP, 50 μM) in hippocampus-EC slices from mice injected with pilocarpine 13–22 days earlier have a lower frequency than in age-matched control slices. Moreover, EC-driven ictal-like discharges in pilocarpine-treated slices occur throughout the experiment (≤6 h) and spread to the CA1/subicular area via the temporoammonic path; in contrast, they disappear in control slices within 2 h of 4AP application and propagate via the trisynaptic hippocampal circuit. Thus, different network interactions within the hippocampus-EC loop characterize control and pilocarpine-treated slices maintained in vitro. We propose that these functional changes, which are presumably caused by seizure-induced cell damage, lead to seizures in vivo. This process is facilitated by a decreased control of EC excitability by hippocampal outputs and possibly sustained by the reverberant activity between EC and CA1/subiculum networks that are excited via the temporoammonic path.Keywords
This publication has 23 references indexed in Scilit:
- The Pilocarpine Model of Epilepsy in MiceEpilepsia, 1996
- Passive propagation of LTD to stratum oriens-alveus inhibitory neurons modulates the temporoammonic input to the hippocampal CA1 regionNeuron, 1995
- The direct perforant path input to CA1: Excitatory or inhibitory?Hippocampus, 1995
- Monosynaptic GABA-mediated inhibitory postsynaptic potentials in ca1 pyramidal cells of hyperexcitable hippocampal slices from kainic acid-treated ratsNeuroscience, 1993
- Mossy fiber synaptic reorganization in the epileptic human temporal lobeAnnals of Neurology, 1989
- Seizure activity in vitro: a dual focus modelEpilepsy Research, 1988
- Limbic seizure and brain damage produced by kainic acid: Mechanisms and relevance to human temporal lobe epilepsyNeuroscience, 1985
- Seizures produced by pilocarpine in mice: A behavioral, electroencephalographic and morphological analysisBrain Research, 1984
- Limbic seizures produced by pilocarpine in rats: Behavioural, electroencephalographic and neuropathological studyBehavioural Brain Research, 1983
- Modification of seizure activity by electrical stimulation: II. Motor seizureElectroencephalography and Clinical Neurophysiology, 1972