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Electrophysiologic analysis of a chronic seizure model after unilateral hippocampal KA injection
A Bragin1, J Engel, C L Wilson
1Department of Neurology, UCLA School of Medicine, Los Angeles, California 90095-1769, USA.
Purpose:
Unilateral intrahippocampal injections of kainic acid (KA) in rats produce spontaneous recurrent limbic seizures and morphologic changes in hippocampus that resemble hippocampal sclerosis in patients with medically refractory mesial temporal lobe epilepsy (MTLE), that form of temporal lobe epilepsy (TLE) associated with hippocampal sclerosis. Interictal in vivo electrophysiologic studies have revealed high-frequency (250-500 Hz) oscillations, termed fast ripples (FRs). These oscillations may uniquely occur in or adjacent to the site of hippocampal KA injection, in areas that generate spontaneous seizures. Similar field potentials also have been demonstrated in the epileptogenic region of patients with TLE. We have now characterized ictal electrographic patterns in this rat model for comparison with those in human TLE and begun to evaluate the role of FRs in the transition to ictus in the KA-treated rat.
Methods:
Rats received unilateral intrahippocampal injections of KA and, after the development of spontaneous seizures, were implanted with multiple fixed and moveable microelectrodes for single unit, field potential, and EEG recording. They were then monitored by using video-EEG telemetry for several weeks to capture and evaluate electrographic and behavioral seizure types. Results were correlated with Timm's stain demonstration of mossy fiber sprouting.
Results:
Low-voltage fast (LVF) and hypersynchronous electrographic ictal-onset patterns were seen in the KA-treated rat that resembled similar ictal-onset patterns in patients with TLE. Hypersynchronous, but not LVF, ictal discharges were associated with recurrent FRs. As in the human, hypersynchronous ictal onsets originated predominantly in hippocampus, whereas LVF ictal onsets more often involved extrahippocampal structures. LVF ictal onsets occurred during wakefulness or paradoxical sleep and were usually associated with motor behavior, whereas hypersynchronous ictal onsets occurred during slow-wave sleep or periods of immobility and were not associated with motor behavior unless there was transition to another ictal electrographic pattern. Mossy fiber sprouting did not correlate with the frequency of ictal EEG discharges exhibited by each rat but was greater in those rats that demonstrated frequent behavioral seizures.
Conclusions:
The electrographic features of spontaneous seizures in the KA-treated rat resemble those of patients with medically refractory TLE with respect to EEG pattern and localization. Our data suggest that hypersynchronous ictal onsets represent epileptogenic disturbances in hippocampal circuits, whereas LVF ictal onsets may involve extrahippocampal areas having more direct connections to the motor system. Hypersynchronous seizures may involve the same neuronal mechanisms that generate interictal FRs.
Insights
Kainic acid-induced seizures in rats mimic human temporal lobe epilepsy (TLE) with hippocampal sclerosis. Hypersynchronous seizures, linked to fast ripples, originate in the hippocampus, unlike low-voltage fast seizures.
Area of Science:
- Neuroscience
- Epilepsy Research
- Animal Models of Seizures
Background:
- Kainic acid (KA) injection in rats models mesial temporal lobe epilepsy (MTLE) with hippocampal sclerosis.
- This model exhibits spontaneous recurrent limbic seizures and characteristic hippocampal changes.
- Interictal fast ripples (FRs) are observed in both the rat model and human TLE epileptogenic zones.
Purpose of the Study:
- To characterize ictal electrographic patterns in the KA-treated rat model for comparison with human TLE.
- To investigate the role of fast ripples (FRs) in the transition to seizures (ictus) in this model.
- To compare seizure onset patterns and localization between the rat model and human TLE patients.
Main Methods:
- Rats received unilateral intrahippocampal KA injections.
- Following seizure development, rats were implanted with microelectrodes for EEG and field potential recordings.
- Video-EEG telemetry monitored seizures over weeks; results correlated with Timm's stain for mossy fiber sprouting.
Main Results:
- KA-treated rats displayed low-voltage fast (LVF) and hypersynchronous ictal-onset patterns, similar to human TLE.
- Hypersynchronous ictal discharges, originating in the hippocampus, were associated with recurrent FRs.
- LVF onsets, often extrahippocampal, occurred during wakefulness/REM sleep with motor behavior; hypersynchronous onsets occurred during slow-wave sleep without motor behavior unless transitioning.
Conclusions:
- The KA-treated rat model accurately replicates the electrographic features and localization of seizures in medically refractory TLE.
- Hypersynchronous ictal onsets likely reflect hippocampal circuit disturbances, potentially involving mechanisms generating interictal FRs.
- LVF ictal onsets may involve extrahippocampal areas with direct motor system connections.