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Afferent drive of medial prefrontal cortex by hippocampus and amygdala is altered in MAM-treated rats: evidence for
Behnaz Esmaeili1, Anthony A Grace
1Department of Neuroscience, University of Pittsburgh, Pittsburgh, PA 15260, USA. behnaz.esmaeili@gmail.com
Abstract:
Evidence indicates that the prefrontal cortex and its regulation by afferent inputs are disrupted in schizophrenia. Using a validated rat model of schizophrenia based on prenatal administration of the mitotoxin methyl azoxymethanol acetate (MAM), we examined the convergent projections from the ventral hippocampus (vHipp) and the basolateral amygdala (BLA) in the medial prefrontal cortex (mPFC). In vivo extracellular recordings were done in anesthetized rats to assess how prior stimulation of the BLA or vHipp input to the mPFC affected mPFC responses to subsequent stimulation of these regions. The interstimulus interval (ISI) of the BLA and vHipp pulse stimulation was varied randomly between 0 and 130 ms, and the probability of evoked spike response in the mPFC measured. We found that BLA input increased vHipp-evoked spike probability at ISIs 40-130 ms, but decreased spike probability at ISIs 10-20 ms. This would be consistent with activation of inhibitory interneurons at shorter ISIs by BLA stimulation. In contrast, in MAM-treated rats BLA stimulation increased vHipp-evoked spike probability in mPFC at all ISIs tested. Given that interneurons are driven primarily by N-methyl-D-aspartate (NMDA) channel activation, the effects of the NMDA channel blocker, phencyclidine (PCP), were tested. PCP was found to completely attenuate the inhibitory effect of BLA input on vHipp-evoked responses in mPFC at shorter ISIs, causing the response in control rats treated with PCP to resemble that observed in the MAM rat. In contrast to the effects of BLA stimulation on vHipp-mPFC-evoked responses, there was no inhibitory period when examining the effects of vHipp stimulation on BLA-mPFC-evoked responses in control rats, but in MAM-treated rats there was a significant inhibition at short intervals. Thus, both affective input arising from the BLA and context-dependent input from the vHipp exert a modulatory effect on mPFC neural activity in response to these inputs. Whereas the BLA potentiated vHipp input to the mPFC at long intervals, there was a short-interval inhibitory period that appeared to be mediated by an NMDA-dependent drive of interneurons. This inhibitory modulation was absent in the model of schizophrenia and following PCP, which is consistent with an interneuron disruption in this disorder.
Insights
Schizophrenia disrupts prefrontal cortex regulation. In a rat model, amygdala stimulation normally inhibits hippocampus input, but this inhibition is lost in schizophrenia, suggesting interneuron dysfunction.
Area of Science:
- Neuroscience
- Psychiatry
Background:
- Schizophrenia is associated with disruptions in prefrontal cortex (mPFC) connectivity.
- The mPFC receives convergent inputs from the ventral hippocampus (vHipp) and basolateral amygdala (BLA), crucial for cognitive and emotional processing.
Purpose of the Study:
- To investigate how vHipp and BLA inputs modulate mPFC activity in a rat model of schizophrenia.
- To explore the role of N-methyl-D-aspartate (NMDA) receptors and interneurons in these modulatory effects.
Main Methods:
- Utilized a rat model of schizophrenia induced by prenatal methyl azoxymethanol acetate (MAM) exposure.
- Performed in vivo extracellular recordings in the mPFC to assess responses to vHipp and BLA stimulation.
- Varied interstimulus intervals (ISIs) between BLA and vHipp stimulation to examine temporal dynamics of input modulation.
- Administered phencyclidine (PCP), an NMDA receptor antagonist, to assess its effects on neural responses.
Main Results:
- In control rats, BLA stimulation induced short-interval inhibition (10-20 ms) and long-interval potentiation (40-130 ms) of vHipp-evoked mPFC responses, suggesting NMDA-dependent interneuron activation.
- In MAM-treated rats, the short-interval inhibition was absent, with BLA stimulation consistently increasing vHipp-evoked responses.
- PCP administration in control rats mimicked the MAM-treated rats' response pattern, abolishing the short-interval inhibition.
- vHipp stimulation showed altered modulatory effects on BLA-evoked responses in MAM-treated rats compared to controls.
Conclusions:
- The study demonstrates that affective (BLA) and contextual (vHipp) inputs differentially modulate mPFC activity.
- A key finding is the loss of NMDA-dependent inhibitory interneuron function in the MAM rat model of schizophrenia.
- This disruption of inhibitory modulation in the mPFC may underlie cognitive and emotional deficits observed in schizophrenia.
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