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Purpose: to evaluate changes in the transcriptome of hippocampal cells during the course of epileptogenesis, from the early events post status epilepticus (SE) to the onset of recurrent spontaneous seizures. Experimental Design: Gene expression profiling was analyzed in hippocampi of rats subjected ...
ORGANISM(S): Rattus norvegicus 
Anti-epileptogenic agents that prevent the development of epilepsy following a brain insult remain the holy grail of epilepsy therapeutics. In order to identify such drugs, it is necessary to first understand the cellular and molecular events that underlie the epileptogenic process, from initial ins...
ORGANISM(S): Mus musculus (Mouse) 
2019-05-23 | PXD010986 | Pride
Timecourse of epileptogenesis in an TSC1 inducible mouse model
The role of Methyl-CpG binding domain 3 (Mbd3) in epileptogenesis
Epilepsy causes altered gene expression; transient adenosine treatment inhibits progression of epileptogenesis Hippocampus of epileptic rat is hypermethylated compared to naïve; adenosine treatment causes hypomethylation Metylation state in epileptic rats (9 weeks post kainic acid induced status epi...
ORGANISM(S): Rattus rattus 
Insults to the cerebral cortex, such as trauma, ischemia or infections, may result in the development of epilepsy, one of the most common neurological disorders. Previous studies have suggested that perturbations in neurovascular integrity and breakdown of the blood-brain barrier (BBB) lead to neuro...
ORGANISM(S): Rattus norvegicus 
Neuronal and glial DNA methylation and gene expression changes in early epileptogenesis
To determine how the loss of TSC induces epileptogenesis, we made use of an inducible Tsc1 knock-out mouse model. Tsc1 was homozygously deleted in all CAMK2A positive neurons. Hippocampal tissue was collected at different time points after gene deletion and during epileptogenesis, of mice of both se...
ORGANISM(S): Mus musculus 
2021-11-11 | GSE164306 | GEO
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