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February 21, 2026Molecular Psychiatry0 citationsOpen Access

Pharmacogenomics of antiepileptic drug mood stabilizer treatment response in bipolar disorder: A MoStGen Consortium study

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AHAda Man-Choi HoBCBrandon J. CoombesJHJune He

Key Points

  • The aim is to identify biological and clinical factors that influence treatment responses to mood stabilizers in bipolar disorder.
  • Conducted genome-wide association analyses in subcohorts of 917 individuals.
  • Performed meta-analyses of pharmacogenomic data related to antiepileptic mood stabilizers.
  • Measured AMS treatment response using the Alda scale, focused on valproic acid and lamotrigine.
  • Analyzed polygenic scores to determine genetic contributions to treatment response.
  • Identified significant SNP associations with lamotrigine response, notably ROBO2 and POLR1E genes.
  • No significant associations found for overall antiepileptic drug response or valproic acid treatment.
  • Polygenic score analysis showed a general genetic signal for mood stabilizer response and a connection with epilepsy genetic risk.

Abstract

Abstract Identifying biological and clinical factors associated with response to mood-stabilizing medications is critical for improving bipolar disorder (BD) treatment. The Mood Stabilizer Genomics (MoStGen) Consortium was established to investigate pharmacogenomic and clinical predictors of response to treatment of BD with antiepileptic drug mood stabilizers (AMS). Here we present the first pharmacogenomic analyses of AMS treatment outcomes based on MoStGen Consortium data, including 917 individuals across contributing sites. We performed genome-wide association analyses in subcohorts followed by meta-analyses, with AMS treatment response measured quantitatively using the Alda scale. Medication-stratified analyses were performed for valproic acid (VPA) and lamotrigine (LTG) treatment response. Additionally, polygenic score (PGS) analyses were used to evaluate the overall genetic contribution to AMS response across cohorts and to test whether genetic liability for various neuropsychiatric illnesses impacts AMS response. We detected genome-wide significant associations with LTG treatment response for SNPs in the gene ROBO2 (top SNP: rs985123, p = 1.9E-10) and for POLR1E at the gene-level ( p = 2.53E-06). No significant associations were found for overall AMS or VPA treatment response. Leave-one-out PGS analyses provided significant evidence for a polygenic signal for AMS treatment response. Furthermore, the epilepsy PGS was nominally significantly associated with AMS response ( p = 0.024), suggesting higher genetic liability to epilepsy predicts a better response to treatment with AMS. These findings provide insights into the genetic contribution to AMS treatment outcomes, and in particular LTG response, and may contribute to the development of more precise treatments for BD.

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Cite This Study

Ho et al. (2026) studied this question.

synapsesocial.com/papers/69994bef873532290d0200f3https://doi.org/10.1038/s41380-026-03478-7
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