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Updated: May 1, 2026

Assessment of Memory Function in Pilocarpine-induced Epileptic Mice
Published on: June 4, 2020
Early-life seizures result in deficits in social behavior and learning
Joaquin N Lugo1, John W Swann2, Anne E Anderson3
1Department of Psychology and Neuroscience, Baylor University, Waco, TX 76798, USA; Cain Foundation Laboratories, Jan and Dan Duncan Neurological Research Institute at Texas Children's Hospital, USA; Department of Pediatrics, Baylor College of Medicine, Houston, TX 77030, USA.
Insights
Early life seizures in mice impaired learning, memory, and social behaviors. These findings suggest a critical window for seizure onset impacting long-term neurodevelopmental outcomes in children.
Area of Science:
- Neuroscience
- Developmental Neuroscience
- Behavioral Neuroscience
Background:
- Epilepsy in children frequently co-occurs with autism spectrum disorder (ASD) and psychiatric conditions.
- The age of seizure onset is a key factor influencing behavioral and cognitive outcomes in children with autism.
Purpose of the Study:
- To investigate if seizures induced during early postnatal development (postnatal days 7-11) lead to learning and memory deficits.
- To determine if early-life seizures contribute to autism-like behavioral changes, specifically social interaction impairments.
Main Methods:
- Seizures were induced in C57BL/6J mice using flurothyl on postnatal days 7-11.
- Control groups included handled and naïve mice without flurothyl exposure.
- Adult mice underwent a battery of behavioral tests, including the Morris water maze and social interaction assays.
Main Results:
- Mice with early-life seizures exhibited significant learning and memory deficits in the Morris water maze.
- No differences were observed in anxiety-like behaviors (elevated-plus maze) or repetitive behaviors (marble burying).
- Significant impairments in social interaction were noted in the social chamber and social partition tests.
Conclusions:
- Early-life seizures disrupt hippocampal-dependent learning and memory functions.
- Seizures during a critical developmental window cause lasting deficits in social behavior, mirroring aspects of autism.
- These findings highlight the detrimental impact of early seizures on neurodevelopmental trajectories.
Abstract:
Children with epilepsy show a high co-morbidity with psychiatric disorders and autism. One of the critical determinants of a child's behavioral outcome with autism and cognitive dysfunction is the age of onset of seizures. In order to examine whether seizures during postnatal days 7-11 result in learning and memory deficits and behavioral features of autism we administered the inhalant flurothyl to induce seizures in C57BL/6J mice. Mice received three seizures per day for five days starting on postnatal day 7. Parallel control groups consisted of similarly handled animals that were not exposed to flurothyl and naïve mice. Subjects were then processed through a battery of behavioral tests in adulthood: elevated-plus maze, nose-poke assay, marble burying, social partition, social chamber, fear conditioning, and Morris water maze. Mice with early-life seizures had learning and memory deficits in the training portion of the Morris water maze (p<0.05) and probe trial (p<0.01). Mice with seizures showed no differences in marble burying, the nose-poke assay, or elevated plus-maze testing compared to controls. However, they showed a significant difference in the social chamber and social partition tests. Mice with seizures during postnatal days 7-11 showed a significant decrease in social interaction in the social chamber test and had a significant impairment in social behavior in the social partition test. Together, these results indicate that early life seizures result in deficits in hippocampal-dependent memory tasks and produce long-term disruptions in social behavior.
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