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Perinatal SSRI Exposure Disrupts G Protein-coupled Receptor BAI3 in Developing Dentate Gyrus and Adult Emotional
Keaton A Unroe1, Matthew E Glover2, Elizabeth A Shupe3
1School of Neuroscience, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA; Graduate Program in Translational Biology, Medicine, and Health, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA.
Insights
Selective serotonin reuptake inhibitor (SSRI) antidepressants impact offspring neurodevelopment. This study reveals altered Brain Angiogenesis Inhibitor 3 (BAI3) signaling in SSRI-exposed offspring and psychiatric patients, suggesting a role in adverse outcomes.
Area of Science:
- Neuroscience
- Pharmacology
- Genetics
Background:
- Selective serotonin reuptake inhibitors (SSRIs) are commonly used during pregnancy for maternal depression.
- Long-term effects of perinatal SSRI exposure on offspring neurodevelopment and psychiatric risk are not fully understood.
- Rodent models indicate SSRI-induced behavioral changes are linked to serotonin system alterations, epigenetics, and transcriptomics in the hippocampus.
Purpose of the Study:
- To investigate the role of Brain Angiogenesis Inhibitor 3 (BAI3) in the neurodevelopmental effects of perinatal SSRI exposure.
- To explore the translational relevance of BAI3 alterations in psychiatric disorders.
Main Methods:
- Examined mRNA expression of BAI3 and its ligands in the postnatal dentate gyrus of rodent offspring exposed to citalopram.
- Utilized transient BAI3 mRNA knockdown to assess its impact on behavioral outcomes.
- Analyzed BAI3 and related molecule expression in human hippocampus and prefrontal cortex from patients with depression or schizophrenia.
Main Results:
- Perinatal citalopram exposure increased Bai3 mRNA expression in the offspring's dentate gyrus.
- BAI3 knockdown in SSRI-exposed offspring mitigated behavioral deficits, promoting active stress coping.
- Sex- and region-specific alterations in BAI3, C1QL2, and C1QL3 mRNA were observed in human psychiatric patients.
Conclusions:
- Abnormal BAI3 signaling may underlie adverse effects of perinatal SSRI exposure.
- Altered BAI3 signaling is implicated in the neurobiology of depression and schizophrenia.
Abstract:
Selective serotonin reuptake inhibitor (SSRI) antidepressants are widely prescribed to pregnant women suffering with depression, although the long-term impact of these medications on exposed offspring are poorly understood. Perinatal SSRI exposure alters human offspring's neurodevelopment and increases risk for psychiatric illness in later life. Rodent studies suggest that perinatal SSRI-induced behavioral abnormalities are driven by changes in the serotonin system as well as epigenetic and transcriptomic changes in the developing hippocampus. A major gene altered by perinatal SSRI exposure is the G-protein coupled receptor Brain Angiogenesis Inhibitor 3 (BAI3). Our present study shows that perinatal exposure to the SSRI citalopram increases mRNA expression of Bai3 and related molecules (including its C1ql ligands) in the early postnatal dentate gyrus of male and female offspring. Transient Bai3 mRNA knockdown in perinatal SSRI-exposed dentate gyrus lessened behavioral consequences of perinatal SSRI exposure, leading to increased active stress coping. To determine translational implications of this work, we examined expression of BAI3 and related molecules in hippocampus and prefrontal cortex from patients that suffered with depression or schizophrenia relative to healthy control subjects. We found sex- and region-specific changes in mRNA expression of BAI3 and its ligands C1QL2 and C1QL3 in men and women with a history of psychiatric disorders compared to healthy controls. Together these results suggest that abnormal BAI3 signaling may contribute to molecular mechanisms that drive adverse effects of perinatal SSRI exposure, and show evidence for alterations of BAI3 signaling in the hippocampus of patients that suffer depression and schizophrenia.
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