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Published on: June 11, 2020
Neurodevelopmental effects of fetal antiepileptic drug exposure
Naymee J Velez-Ruiz1, Kimford J Meador
1Department of Neurology, Emory University, 1365 Clifton Rd., Clinic A, 2nd Fl., Atlanta, GA, 30322, USA, nvelezr@emory.edu.
Insights
Children exposed to antiepileptic drugs (AEDs) during pregnancy face increased risks of cognitive impairment. Valproate and polytherapy pose the most significant risks, while lamotrigine and levetiracetam appear safer for neurodevelopment.
Area of Science:
- Neuroscience
- Developmental Psychology
- Pharmacology
Background:
- Children born to mothers with epilepsy may exhibit cognitive deficits.
- Antiepileptic drugs (AEDs) are a significant factor in these neurodevelopmental outcomes.
- Mechanisms of AEDs' impact on fetal neurodevelopment are not fully understood.
Purpose of the Study:
- To review the impact of prenatal antiepileptic drug exposure on cognitive outcomes in children.
- To compare the risks associated with different AEDs and polytherapy.
Main Methods:
- Review of existing studies on cognitive outcomes in children exposed to AEDs in utero.
- Analysis of factors contributing to neurodevelopmental deficits, including specific AEDs and polytherapy.
Main Results:
- Valproate exposure is linked to dose-dependent, persistent cognitive deficits.
- Phenobarbital and phenytoin may also be associated with neurodevelopmental issues.
- Lamotrigine and levetiracetam appear to have better cognitive safety profiles.
- Polytherapy, especially involving valproate, is associated with worse outcomes than monotherapy or no exposure.
Conclusions:
- Prenatal AED exposure significantly impacts child cognitive development.
- Valproate and polytherapy represent the highest risks.
- Safer AED alternatives for pregnant women with epilepsy should be prioritized to mitigate neurodevelopmental risks.
Abstract:
Many studies investigating cognitive outcomes in children of women with epilepsy report an increased risk of mental impairment. Verbal scores on neuropsychometric measures may be selectively more involved. While a variety of factors contribute to the cognitive problems of children of women with epilepsy, antiepileptic drugs (AEDs) appear to play a major role. The mechanisms by which AEDs affect neurodevelopmental outcomes remain poorly defined. Animal models suggest that AED-induced apoptosis, altered neurotransmitter environment, and impaired synaptogenesis are some of the mechanisms responsible for cognitive and behavioral teratogenesis. AEDs that are known to induce apoptosis, such as valproate, appear to affect children's neurodevelopment in a more severe fashion. Fetal valproate exposure has dose-dependent associations with reduced cognitive abilities across a range of domains, and these appear to persist at least until the age of 6. Some studies have shown neurodevelopmental deficiencies associated with the use of phenobarbital and possibly phenytoin. So far, most of the investigations available suggest that fetal exposures to lamotrigine or levetiracetam are safer with regard to cognition when compared with other AEDs. Studies on carbamazepine show contradictory results, but most information available suggests that major poor cognitive outcomes should not be attributed to this medication. Overall, children exposed to polytherapy prenatally appear to have worse cognitive and behavioral outcomes compared with children exposed to monotherapy, and with the unexposed. There is an increase risk of neurodevelopmental deficits when polytherapy involves the use of valproate versus other agents.
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