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Investigating Long-term Synaptic Plasticity in Interlamellar Hippocampus CA1 by Electrophysiological Field Recording
Published on: August 11, 2019
Functional Dysregulations in CA1 Hippocampal Networks of a 3-Hit Mouse Model of Schizophrenia
Solenn Percelay1, Jean-Marie Billard1, Thomas Freret1
1UNICAEN, INSERM, COMETE, CYCERON, CHU Caen, Normandie Université, 14000 Caen, France.
Abstract:
For a better translation from treatment designs of schizophrenia to clinical efficiency, there is a crucial need to refine preclinical animal models. In order to consider the multifactorial nature of the disorder, a new mouse model associating three factors (genetic susceptibility-partial deletion of the MAP6 gene, early-life stress-maternal separation, and pharmacological treatment-chronic Δ-9-tetrahydrocannabinol during adolescence) has recently been described. While this model depicts a schizophrenia-like phenotype, the neurobiological correlates remain unknown. Synaptic transmission and functional plasticity of the CA1 hippocampal region of male and female 3-hit mice were therefore investigated using electrophysiological recordings on the hippocampus slice. While basal excitatory transmission remained unaffected, NMDA receptor (NMDAr)-mediated long-term potentiation (LTP) triggered by theta-burst (TBS) but not by high-frequency (HFS) stimulation was impaired in 3-hit mice. Isolated NMDAr activation was not affected or even increased in female 3-hit mice, revealing a sexual dimorphism. Considering that the regulation of LTP is more prone to inhibitory tone if triggered by TBS than by HFS, the weaker potentiation in 3-hit mice suggests a deficiency of intrinsic GABA regulatory mechanisms. Indeed, NMDAr activation was increased by GABAA receptor blockade in wild-type but not in 3-hit mice. This electrophysiological study highlights dysregulations of functional properties and plasticity in hippocampal networks of 3-hit mice, one of the mechanisms suspected to contribute to the pathophysiology of schizophrenia. It also shows differences between males and females, supporting the sexual dimorphism observed in the disorder. Combined with the previously reported study, the present data reinforce the face validity of the 3-hit model that will help to consider new therapeutic strategies for psychosis.
Insights
A new 3-hit mouse model for schizophrenia shows impaired synaptic plasticity in the hippocampus, particularly concerning NMDA receptor function. This model reveals potential GABAergic deficits and highlights sex differences, aiding schizophrenia research.
Area of Science:
- Neuroscience
- Psychiatry
- Genetics
Background:
- Schizophrenia research needs better preclinical models to translate findings to clinical treatments.
- A novel 3-hit mouse model combines genetic susceptibility (MAP6 deletion), early-life stress, and adolescent drug exposure to mimic schizophrenia's complexity.
- The neurobiological underpinnings of this 3-hit model's phenotype are currently unknown.
Purpose of the Study:
- To investigate the neurobiological correlates of a novel 3-hit mouse model of schizophrenia.
- To examine synaptic transmission and plasticity in the CA1 hippocampal region of these mice.
- To identify potential sex-based differences in the observed neurobiological alterations.
Main Methods:
- Electrophysiological recordings were performed on hippocampus slices from male and female 3-hit mice.
- Basal excitatory transmission and NMDA receptor (NMDAr)-mediated long-term potentiation (LTP) were assessed.
- The role of GABAergic mechanisms in modulating NMDAr function and LTP was investigated.
Main Results:
- While basal synaptic transmission was unaffected, NMDAr-mediated LTP induced by theta-burst stimulation (TBS) was impaired in 3-hit mice.
- High-frequency stimulation (HFS)-induced LTP remained intact, suggesting specific plasticity deficits.
- A sexual dimorphism was observed, with isolated NMDAr activation unaffected or increased in female 3-hit mice.
- GABAergic regulation appeared deficient, as GABAA receptor blockade enhanced NMDAr activation in wild-type but not 3-hit mice.
Conclusions:
- The 3-hit mouse model exhibits dysregulated hippocampal network function and plasticity, potentially contributing to schizophrenia pathophysiology.
- Observed sex differences in plasticity mirror the sexual dimorphism seen in schizophrenia.
- These findings strengthen the face validity of the 3-hit model for studying psychosis and developing therapeutic strategies.

