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Updated: Jan 11, 2026

Behavioral And Physiological Analysis In A Zebrafish Model Of Epilepsy
Published on: October 19, 2021
Focal postnatal deletion of Tsc2 causes epilepsy
Carlie McCoy1, Mary Dusing2, Lilian G Jerow3
1Division of Neurosurgery, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, United States.
Introduction:
Tuberous sclerosis complex (TSC) is a genetic disorder caused by mutations in either the TSC1 or TSC2 genes. These mutations prevent the TSC1/TSC2 protein complex from forming, resulting in hyperactivation of the mechanistic target of rapamycin (mTOR) cell growth and protein synthesis pathway. Epilepsy is one of the most common neurological symptoms in TSC patients, often associated with focal cortical lesions. However, it is not fully established whether such focal abnormalities are sufficient on their own to generate seizures and associated behavioral deficits. Here, we created a novel mouse model to test the hypothesis that a focal, postnatal deletion of Tsc2 from cortical neurons is sufficient to induce an epileptogenic network and produce behavioral changes relevant to TSC.
Methods:
Tsc2 was deleted from neurons in a focal area of the frontal cortex in Tsc2 fl/fl (fTSC2 KO) mice following neonatal bilateral AAV9-CaMKII-Cre-mCherry injections on postnatal day 2. One group of adult fTSC2 KO and Tsc2 wt/wt (control) mice was implanted with cortical electrodes for combined video-EEG monitoring. A separate group of control and fTSC2 KO mice, injected with a lower viral titer, underwent video recording and behavioral exploration analysis in a novel environment. Tissue was collected for histology.
Results:
All adult fTSC2 KO mice implanted with cortical electrodes had seizures, whereas no control mice did. Histological analyses showed that virally infected cells in fTSC2 KO mice had enlarged somas and increased mTOR activation (pS6 expression). These fTSC2 KO mice also had decreased parvalbumin and somatostatin interneuron densities in the surrounding cortex. fTSC2 KO mice displayed increased anxiety-like behaviors, spending significantly less time in the center of the novel environment compared to controls.
Conclusion:
A focal, postnatal deletion of Tsc2 from cortical neurons is sufficient to cause both epilepsy and behavioral deficits in mice. This model recapitulates key phenotypes of TSC, including abnormal cell growth, reduced inhibitory cell density, and increased microglia activation. This fTSC2 KO model is advantageous for delineating the cortical changes that support epilepsy and behavioral deficits in TSC, and for investigating possible targets for therapeutic intervention.
Insights
A focal deletion of the Tsc2 gene in mouse cortical neurons caused epilepsy and anxiety-like behaviors. This new model helps study tuberous sclerosis complex (TSC) and potential therapies.
Area of Science:
- Neuroscience
- Genetics
- Developmental Biology
Background:
- Tuberous sclerosis complex (TSC) is a genetic disorder caused by mutations in TSC1 or TSC2 genes, leading to mTOR pathway hyperactivation.
- Epilepsy is a common neurological symptom in TSC, often linked to focal cortical lesions, but the sufficiency of these lesions to cause seizures is unclear.
Purpose of the Study:
- To test if focal, postnatal deletion of Tsc2 in cortical neurons is sufficient to induce an epileptogenic network and behavioral deficits relevant to TSC.
- To establish a novel mouse model for studying TSC-related epilepsy and behavioral changes.
Main Methods:
- Focal deletion of Tsc2 in cortical neurons of Tsc2(fl/fl) mice using AAV9-CaMKII-Cre-mCherry injections.
- Video-EEG monitoring in adult mice with focal Tsc2 deletion (fTSC2 KO) and controls.
- Behavioral analysis in a novel environment and histological examination of brain tissue.
Main Results:
- All fTSC2 KO mice exhibited seizures, unlike control mice.
- Histology revealed enlarged neuron somas, increased mTOR activation (pS6), and reduced interneuron density in fTSC2 KO mice.
- fTSC2 KO mice displayed increased anxiety-like behaviors in a novel environment.
Conclusions:
- A focal, postnatal Tsc2 deletion in cortical neurons is sufficient to cause epilepsy and behavioral deficits in mice.
- The fTSC2 KO model effectively recapitulates key TSC phenotypes, including abnormal cell growth and altered neuronal circuitry.
- This model provides a valuable tool for investigating the cortical basis of TSC-associated epilepsy and for exploring therapeutic targets.
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