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Published on: November 20, 2015
Effects of pre- and postnatal corticosterone exposure on the rat hippocampal GABA system
D J Stone1, J P Walsh, R Sebro
1Department of Psychiatry, Harvard Medical School, Boston, Massachusetts, USA.
Insights
Prenatal stress, modeled by corticosterone (CORT) in rats, alters the hippocampal GABA system. This study shows CORT affects GABA synthesis and receptor mRNA, potentially influencing schizophrenia risk.
Area of Science:
- Neuroscience
- Psychiatry
- Molecular Biology
Background:
- Prenatal stress is linked to schizophrenia pathophysiology.
- The hippocampal GABA system is implicated in schizophrenia.
- Altered neurotransmitter systems may mediate schizophrenia risk from prenatal stress.
Purpose of the Study:
- To investigate the effects of prenatal and postnatal corticosterone (CORT) exposure on the hippocampal GABA system in male rats.
- To determine if prenatal CORT exposure sensitizes the hippocampus to later CORT administration.
- To examine the impact on GABA synthesis enzymes (GAD65, GAD67) and GABA(A) receptor subunits (alpha2, gamma2).
Main Methods:
- Male rats were administered CORT or vehicle prenatally and/or postnatally.
- mRNA levels of GAD65, GAD67, and GABA(A) receptor subunits alpha2 and gamma2 were measured at 24 hours and 5 days post-injection.
- Benzodiazepine (BZ) receptor binding activity was assessed.
Main Results:
- CORT treatment altered GAD65 and GAD67 mRNA levels in a time- and region-dependent manner.
- Gamma2 subunit mRNA and BZ receptor binding were decreased in CA2 following CORT treatment.
- Prenatal CORT exposure showed some evidence of sensitizing effects on GAD67 mRNA expression.
Conclusions:
- Corticosterone administration leads to complex regulation of the hippocampal GABA system.
- Prenatal CORT exposure can sensitize certain GABA system responses but does not fundamentally alter the overall response pattern.
- These findings contribute to understanding the neurobiological mechanisms linking prenatal stress to schizophrenia risk.
Abstract:
Several lines of evidence have implicated prenatal stress and the hippocampal GABA system in the pathophysiology of schizophrenia, and prenatal stress is believed to increase the risk for schizophrenia through alterations of this neurotransmitter. To explore this hypothesis, we treated male rats pre- and/or postnatally (P48 and P60) with either corticosterone (CORT) or vehicle to establish three study groups: VVV, receiving vehicle at all three time points; VCC, receiving vehicle prenatally and CORT at both postnatal timepoints; and CCC, receiving CORT at all three timepoints. Animals were sacrificed at either 24 h or 5 days after final injection and examined for mRNA levels of GAD65, GAD67, and the GABA(A) receptor subunits alpha2 and gamma2. At 24 h, GAD65 mRNA was decreased in CA1, CA2, CA4, and dentate gyrus (DG) of VCC rats; this effect was either decreased or reversed in CCC-treated animals. No effect was detected in GAD67 mRNA at 24 h. At 5 days, CORT treatment increased GAD67 mRNA levels in CA1, CA3, and DG. Prenatal treatment with CORT was associated with increased responsiveness only in CA3 and DG. For the GABAA receptor, alpha2 subunit mRNA did not show any change in response to CORT treatment, while that for the gamma2 subunit was decreased in CA2 of both VCC- and CCC-treated animals. Consistent with gamma2 subunit mRNA decreases, benzodiazepine (BZ) receptor binding activity was decreased in CA2 with CORT treatment. Prenatal CORT exposure neither increased nor decreased this effect. These results demonstrate that CORT administration is associated with a complex regulation of mRNA expression for pre- and postnatal aspects of the hippocampal GABA system. Under these conditions, prenatal exposure to CORT may sensitize some of these effects, but does not fundamentally alter the nature of this response.
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