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Evaluation of MicroRNAs in Pediatric Epilepsy
Kürşat Bora Çarman1, Hande Gazeteci Tekin2, Dilek Çavuşoğlu3
1Department of Pediatric Neurology, Eskişehir Osmangazi University Faculty of Medicine, Eskişehir, Turkey.
Insights
Serum microRNA-155 and microRNA-223 levels are elevated in children with epilepsy, particularly in drug-resistant cases. Increased microRNA-155 and decreased microRNA-146a are associated with epilepsy risk.
Area of Science:
- Neuroscience
- Genetics
- Biochemistry
Background:
- Epilepsy pathophysiology is not fully understood.
- MicroRNA (miRNA) expression alterations are observed in adult epilepsy.
- Investigating miRNA in childhood epilepsy is crucial.
Purpose of the Study:
- To identify serum microRNA expression differences in children with idiopathic generalized epilepsy.
- To compare miRNA profiles between drug-responsive and drug-resistant epilepsy groups.
Main Methods:
- Serum samples from 43 children with epilepsy and 66 controls were analyzed.
- Quantitative real-time polymerase chain reaction (qRT-PCR) was used to measure microRNA-181a, microRNA-155, microRNA-146a, and microRNA-223.
- Patients with idiopathic generalized epilepsy and normal MRI were included.
Main Results:
- Serum microRNA-155 and microRNA-223 expressions were significantly elevated in epileptic children compared to controls.
- Drug-resistant epilepsy patients showed higher levels of microRNA-146a, microRNA-155, and microRNA-223 compared to drug-responsive patients.
- Logistic regression indicated microRNA-155 increase as an epilepsy risk factor and microRNA-146a decrease as a risk factor.
Conclusions:
- Childhood epilepsy is associated with abnormal serum microRNA expression.
- Specific microRNAs (miR-155, miR-223, miR-146a) show altered expression patterns in pediatric epilepsy.
- These findings contribute to understanding miRNA's role in childhood epilepsy development.
Objective:
The pathophysiology of epilepsy remains unknown. Recent research has shown that microRNA expression changes in epileptic adults. In the present work, we aimed to identify serum microRNA expression in drug-responsive and resistant children with idiopathic general- ized epilepsy.
Materials And Methods:
The study included 43 (20 male and 23 female) epilepsy patients and 66 (43 male and 23 female) control subjects. The mean ages of the groups were 113.41 ± 61.83 and 105.46 ± 62.31 months, respectively. Twenty-eight epileptic patients were classi- fied as drug resistant. Thirteen of the controls were the siblings of patients with epilepsy. The study only included children with idiopathic generalized epilepsy who had normal brain mag- netic resonance imaging. The serum microRNA expressions (microRNA-181a, microRNA-155, microRNA-146, and microRNA-223) were investigated. Expressions of serum microRNA-181a, microRNA-155, microRNA-146, and microRNA-223 were previously investigated in epilepsy patients and children with febrile seizures. Therefore, these microRNAs were chosen. The expressions of serum levels of microRNAs were determined using quantitative real-time poly- merase chain reaction.
Results:
The results indicated that the expressions of serum microRNA-155 and microRNA-223 were elevated in epileptic children (P < .05). The expression of the same microRNAs was also elevated in individuals with drug-resistant epilepsy compared to healthy controls (P < .05). microRNA-146a, microRNA-155, and microRNA-223 expressions were higher in drug-resistant patients than in drug-responsive children (P < .05). A logistic regression study determined that an increase of microRNA-155 was a risk for epilepsy, while a decrease of microRNA-146a risk for epilepsy.
Conclusion:
Few researchers have investigated the function of microRNAs in the develop- ment of childhood epilepsy. Our findings revealed that epilepsy patients have abnormal microRNAexpression.
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