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Optogenetic Manipulation of Neuronal Activity to Modulate Behavior in Freely Moving Mice
Published on: October 27, 2020
Contribution of prefrontal cortex and ventral hippocampus to anxiety in young epileptic mice
Zeyi Wang1, Xiaoye Zheng2, Tsz Hei Fong1
1State Key Laboratory of Chemical Oncogenomics, Shenzhen Key Laboratory of Chemical Genomics, Peking University Shenzhen Graduate School, Shenzhen, 518055, China.
Insights
Children with epilepsy experience high rates of anxiety. This study found altered brain activity in the medial prefrontal cortex and ventral hippocampus contributes to anxiety in young epileptic mice.
Area of Science:
- Neuroscience
- Epilepsy Research
- Child Psychology
Background:
- Children with epilepsy have a high risk of anxiety disorders, often unrecognized and untreated.
- The neurobiological basis of anxiety comorbid with epilepsy remains unclear.
- The medial prefrontal cortex (mPFC) and ventral hippocampus (vHPC) are crucial for anxiety regulation.
Purpose of the Study:
- To investigate the neurobiological mechanisms of anxiety in a pediatric epilepsy model.
- To examine the role of the mPFC-vHPC circuit in anxiety-like behaviors in young epileptic mice.
Main Methods:
- Used a pilocarpine-induced epilepsy model in young mice.
- Assessed anxiety-like behaviors via open field, light/dark box, and elevated plus maze tests.
- Recorded local field potentials (LFPs) to analyze theta power and coherence between mPFC and vHPC.
- Utilized chemogenetics to inhibit neuronal activity in the mPFC and vHPC.
Main Results:
- Epileptic mice exhibited altered theta power in the mPFC and vHPC during anxiety-provoking situations.
- Theta-frequency synchrony between mPFC and vHPC was not significantly different.
- Inhibiting excitatory neurons in the mPFC and vHPC reduced anxiety levels in epileptic mice.
Conclusions:
- Altered theta power in the mPFC and vHPC, not inter-regional synchrony, is linked to anxiety in young epileptic mice.
- The mPFC and vHPC are critical in the development of comorbid anxiety in epilepsy.
- Modulating activity in the mPFC and vHPC may offer therapeutic benefits for anxiety in youth with epilepsy.
Abstract:
Children with epilepsy are particularly vulnerable to anxiety disorders, where these disorders are frequently underdiagnosed and untreated. Despite the high prevalence of anxiety in epilepsy, the underlying neurobiological mechanisms are not fully understood. The medial prefrontal cortex (mPFC) and ventral hippocampus (vHPC) are key brain regions implicated in the genesis and modulation of anxiety, and their interactions play a crucial role in emotional processing including anxiety. We utilized a pilocarpine-induced epilepsy model in young mice (7 weeks old) to assess anxiety-like behaviors using the open field test (OFT), light/dark box, and elevated plus maze (EPM). Local field potential (LFP) recordings were conducted to examine theta power and coherence between the mPFC and vHPC. LFP recordings revealed significantly altered theta power variation in both the mPFC and vHPC during exposure to anxiogenic contexts, suggesting the involvement of these regions in anxiety in the young epileptic mice. Notably, theta-frequency synchrony between the mPFC and vHPC was not significantly altered in the young epileptic mice, indicating that altered theta power rather than inter-regional synchrony may underlie anxiety behaviors in young epileptic mice. Furthermore, we demonstrated that chemogenetic inhibition of excitatory neurons in the mPFC and vHPC reduced anxiety levels in young epileptic mice. Altogether, our findings highlight the critical contributions of mPFC and vHPC to the pathogenesis of comorbid anxiety in epilepsy. These findings underscore the potential therapeutic significance of modulating the activity in these two regions as means to alleviate anxiety in a youth epilepsy population.

