Valproate Use Is Associated With Posterior Cortical Thinning and Ventricular Enlargement in Epilepsy Patients
Manuela Tondelli1, Anna Elisabetta Vaudano1, Sanjay M Sisodiya2,3
1Neurology Unit, OCSAE Hospital, AOU Modena, Modena, Italy.
Insights
Valproate use in epilepsy patients is linked to reduced occipital lobe cortical thickness and enlarged ventricles. These structural brain changes were not observed in past valproate users, suggesting reversibility.
Area of Science:
- Neuroimaging
- Epileptology
- Pharmacology
Background:
- Valproate is a widely prescribed antiepileptic drug with known associations with neurodevelopmental issues.
- Previous reports suggest potential links between valproate use and adverse brain changes, including atrophy and ventricular enlargement.
Purpose of the Study:
- To investigate the relationship between current valproate use and structural brain alterations in individuals with epilepsy.
- To compare brain structures of valproate users with those on other antiepileptic drugs, drug-naïve patients, and healthy controls.
Main Methods:
- A cross-sectional study involving 152 epilepsy patients with normal MRI scans.
- Patients were categorized into current valproate users, users of other antiepileptic drugs, and drug-naïve individuals.
- Cortical thickness and subcortical volumes were analyzed using Freesurfer software.
Main Results:
- Valproate users exhibited reduced occipital lobe cortical thickness (cuneus, lingual gyrus, pericalcarine gyri) compared to other groups.
- Increased lateral ventricle volume was observed in valproate users across both hemispheres.
- Individuals with past valproate exposure, but not current use, did not show these observed brain changes.
Conclusions:
- Current valproate use in epilepsy is associated with specific structural brain changes, notably in the posterior cortex and lateral ventricles.
- These findings highlight potential adverse effects of valproate on brain structure, independent of epilepsy syndrome or demographic factors.
- The absence of changes in past users suggests potential reversibility of valproate-associated brain alterations.
Abstract:
Valproate is a drug widely used to treat epilepsy, bipolar disorder, and occasionally to prevent migraine headache. Despite its clinical efficacy, prenatal exposure to valproate is associated with neurodevelopmental impairments and its use in children and adults was associated with rare cases of reversible brain atrophy and ventricular enlargement. To determine whether valproate use is related with structural brain changes we examined through a cross-sectional study cortical and subcortical structures in a group of 152 people with epilepsy and a normal clinical brain MRI. Patients were grouped into those currently using valproate (n = 54), those taking drugs other than valproate (n = 47), and drug-naïve patients (n = 51) at the time of MRI, irrespectively of their epilepsy syndrome. Cortical thickness and subcortical volumes were analyzed using Freesurfer, version 5.0. Subjects exposed to valproate (either in mono- or polytherapy) showed reduced cortical thickness in the occipital lobe, more precisely in the cuneus bilaterally, in the left lingual gyrus, and in left and right pericalcarine gyri when compared to patients who used other antiepileptic drugs, to drug-naïve epilepsy patients, and to healthy controls. Considering the subgroup of patients using valproate monotherapy (n = 25), both comparisons with healthy controls and drug-naïve groups confirmed occipital lobe cortical thickness reduction. Moreover, patients using valproate showed increased left and right lateral ventricle volume compared to all other groups. Notably, subjects who were non-valproate users at the time of MRI, but who had valproate exposure in the past (n = 27) did not show these cortical or subcortical brain changes. Cortical changes in the posterior cortex, particularly in the visual cortex, and ventricular enlargement, are present in people with epilepsy using valproate, independently from clinical and demographical variables. These findings are relevant both for the efficacy and adverse events profile of valproate use in people with epilepsy.
Related Concept Videos
Antiepileptic Drugs: Modulators of Neurotransmitter Release Mediated by SV2A Protein
SV2A is a transmembrane glycoprotein located predominantly in the brain, modulating the release of neurotransmitters for neuronal communication. Both levetiracetam and brivaracetam exhibit a high affinity for...
Antiepileptic Drugs: GABAergic Pathway Potentiators
The key GABA pathway potentiators used in epilepsy management are as follows.
Benzodiazepines are a well-known class of drugs used for...
Antiepileptic Drugs: Glutamate Antagonists
Antiepileptic Drugs: Potassium Channel Activators
Ezogabine has gained approval as an adjunctive treatment...
Antiepileptic Drugs: Calcium Channel Blockers
Calcium channel blockers exert their antiepileptic effects by targeting T-type calcium channels, which are integral to transmitting nerve signals in the central nervous system. These channels allow the passage of calcium ions, which are vital for neuronal communication. By inhibiting T-type calcium channels, calcium channel blockers effectively reduce the release of neurotransmitters and...
Epilepsy and Seizures: Overview
Various factors can trigger epilepsy, including genetic factors, brain damage, metabolic causes, and unknown etiology. Diagnosis of epilepsy involves electroencephalography (EEG), which...


