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Updated: Sep 28, 2025

Developing a Rat Model for Bipolar Disorder
Published on: May 2, 2025
Common effects of bipolar disorder medications on expression quantitative trait loci genes
Trang Tt Truong1, Chiara C Bortolasci1, Srisaiyini Kidnapillai1
1Deakin University, IMPACT, The Institute for Mental and Physical Health and Clinical Translation, School of Medicine, Geelong, Australia.
Abstract:
The molecular mechanism(s) underpinning the clinical efficacy of the current drugs for bipolar disorder (BD) are largely unknown. This study evaluated the transcriptional perturbations potentially playing roles in the therapeutic efficacy of four commonly prescribed psychotropic drugs used to treat BD. NT2-N cells were treated with lamotrigine, lithium, quetiapine, valproate or vehicle control for 24 h. Genome-wide mRNA expression was quantified by RNA-sequencing. Incorporating drug-induced gene expression profiles with BD-associated transcriptional changes from post-mortem brains, we identified potential therapeutic-relevant genes associated with both drug treatments and BD pathophysiology and focused on expression quantitative trait loci (eQTL) genes with genome-wide association with BD. Each eQTL gene was ranked based on its potential role in the therapeutic effect across multiple drugs. The expression of highest-ranked eQTL genes were measured by RT-qPCR to confirm their transcriptional changes observed in RNA-seq. We found 775 genes for which at least 2 drugs reversed expression levels relative to the differential expression in post-mortem brains. Pathway analysis identified enriched biological processes highlighting mitochondrial and endoplasmic reticulum function. Differential expression of SRPK2 and CHDH was confirmed by RT-qPCR following multiple-dose treatments. We pinpointed potential genes involved in the beneficial effects of drugs used for BD and their main associated biological pathways. CHDH, which encodes a mitochondrial protein, had a significant dose-responsive downregulation following treatment with increasing doses of quetiapine and lamotrigine, which in combination with the enriched mitochondrial pathways suggests potential therapeutic roles and demand more studies on mitochondrial involvement in BD to identify novel treatment targets.
Insights
This study investigated how common bipolar disorder (BD) drugs affect gene expression, identifying key genes and pathways, particularly involving mitochondria, that may explain their therapeutic benefits.
Area of Science:
- Neuroscience
- Genetics
- Pharmacology
Background:
- The molecular mechanisms of bipolar disorder (BD) drugs are not fully understood.
- Identifying therapeutic targets requires understanding drug effects on gene expression in BD.
Purpose of the Study:
- To evaluate transcriptional changes from commonly used BD psychotropic drugs.
- To identify genes linking drug efficacy with BD pathophysiology.
- To explore the role of mitochondrial function in BD treatment.
Main Methods:
- Genome-wide mRNA expression profiling (RNA-sequencing) of NT2-N cells treated with lamotrigine, lithium, quetiapine, or valproate.
- Integration of drug-induced gene expression with BD-associated transcriptional data from post-mortem brains.
- Focus on expression quantitative trait loci (eQTL) genes associated with BD.
- Validation of top-ranked eQTL gene expression using RT-qPCR.
Main Results:
- 775 genes showed reversed expression by at least two drugs compared to BD brain data.
- Pathway analysis revealed enrichment in mitochondrial and endoplasmic reticulum functions.
- SRPK2 and CHDH differential expression was confirmed via RT-qPCR.
- CHDH exhibited dose-dependent downregulation with quetiapine and lamotrigine.
Conclusions:
- Identified potential therapeutic genes and biological pathways for BD drug efficacy.
- Mitochondrial dysfunction and CHDH may play significant roles in BD treatment.
- Further research into mitochondrial involvement could reveal novel therapeutic targets for BD.
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