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Reduced seizure threshold and hippocampal cell loss in rats exposed to alcohol during the brain growth spurt
D J Bonthius1, J Woodhouse, N E Bonthius
1Department of Pediatrics, University of Iowa, Iowa City 52242, USA. daniel-bonthius@uiowa.edu
Insights
Developmental alcohol exposure in rats permanently lowers seizure threshold and causes hippocampal CA1 cell loss. This hippocampal pathology is linked to increased seizure susceptibility in alcohol-exposed offspring.
Area of Science:
- Neuroscience
- Developmental Biology
- Toxicology
Background:
- Epilepsy is a common neurological issue in children with fetal alcohol syndrome (FAS).
- The direct link between alcohol's neurotoxic effects and epilepsy in FAS is not fully understood.
- The hippocampus is susceptible to alcohol damage and its dysfunction can lead to epilepsy.
Purpose of the Study:
- To investigate the impact of developmental alcohol exposure on seizure threshold.
- To explore the relationship between altered seizure threshold and alcohol-induced hippocampal neuronal loss.
Main Methods:
- Rat pups were exposed to varying doses of alcohol daily during early development (postnatal days 4-9).
- Seizure thresholds (behavioral and electrographic) were assessed using pentylenetetrazol (PTZ) on postnatal days 31 and 90.
- Hippocampal cell counts (CA1, CA3 pyramidal cells, and dentate gyrus granule cells) were determined using stereology.
Main Results:
- Daily alcohol exposure led to a dose-dependent decrease in seizure threshold and selective loss of hippocampal CA1 pyramidal cells.
- A significant correlation was observed between reduced seizure threshold and CA1 pyramidal cell loss.
- Electrophysiological recordings confirmed alcohol-induced seizure threshold reduction and implicated hippocampal circuitry in seizure generation.
Conclusions:
- Developmental alcohol exposure can cause lasting reductions in seizure threshold.
- Alcohol exposure selectively damages hippocampal CA1 pyramidal cells, leading to permanent pathology.
- Hippocampal pathology is the likely cause of the reduced seizure threshold observed in alcohol-exposed animals.
Background:
Epilepsy is a prominent sign of neurologic dysfunction in some children with fetal alcohol syndrome (FAS). However, it is unknown whether the epileptic disorders in these children are directly due to the neuroteratogenic effects of alcohol or to some other factor accompanying maternal alcoholism. The hippocampus is vulnerable to alcohol-induced pathologic changes, and dysfunction of the hippocampus often manifests as epilepsy. We examined the effect of alcohol exposure during development on the seizure threshold and examined the relationship between alteration of seizure threshold and alcohol-induced neuronal loss from the hippocampus.
Methods:
Rat pups received 0.85, 2.5, or 3.75 g/kg of alcohol via intragastric intubation daily over postnatal days (PD) 4-9. An intubated control and a suckle control group were also included. To assess the effect of a single day of alcohol exposure, an additional group received 3.75 g/kg of alcohol on PD 4 alone. Behavioral seizure thresholds were determined by intravenous infusion of the proconvulsant, pentylenetetrazol (PTZ), on PD 31 or on PD 90. In addition, electrographic seizure thresholds were determined by recording extracellular field potentials from the dentate gyrus. The number of hippocampal CA1 pyramidal cells, CA3 pyramidal cells, and granule cells of the dentate gyrus were determined by stereology.
Results:
Daily exposure to alcohol resulted in a dose-dependent decrease in the seizure threshold and in the selective loss of CA1 pyramidal cells. Reduction in the seizure threshold was significantly correlated with loss of CA1 pyramidal cells. Recordings of extracellular field potentials confirmed the alcohol-induced reduction in seizure threshold, demonstrated that PTZ-induced seizures involve hippocampal-parahippocampal circuitry, and provided evidence that the hippocampal formation is the generator of the PTZ-induced seizures in alcohol-exposed animals.
Conclusions:
These findings demonstrate that exposure of the developing brain to alcohol can permanently reduce the threshold for both behavioral and electrographic seizures and can selectively kill hippocampal CA1 pyramidal cells. Both the pathologic findings and the physiologic recordings support the concept that the reduced seizure threshold in alcohol-exposed animals is due to hippocampal pathology.
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