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Updated: Mar 24, 2026

Preparation and Implantation of Electrodes for Electrically Kindling VGAT-Cre Mice to Generate a Model for Temporal Lobe Epilepsy
Published on: August 17, 2021
The microRNA miR-124 suppresses seizure activity and regulates CREB1 activity
Wei Wang1, Xuefeng Wang1, Lang Chen1
1Department of Neurology,Chongqing Key Laboratory of Neurology,The First Affiliated Hospital of Chongqing Medical University,1 Youyi Road,Chongqing 400016,China.
Abstract:
miR-124, a brain-specific microRNA, was originally considered as a key regulator in neuronal differentiation and the development of the nervous system. Here we showed that miR-124 expression was suppressed in patients with epilepsy and rats after drug induced-seizures. Intrahippocampal administration of a miR-124 duplex led to alleviated seizure severity and prolonged onset latency in two rat models (pentylenetetrazole- and pilocarpine-induced seizures), while miR-124 inhibitor led to shortened onset latency in pilocarpine-induced seizure rat models. Moreover, the result of local field potentials (LFPs) records further demonstrated miR-124 may have anti-epilepsy function. Inhibition of neuronal firing by miR-124 was associated with the suppression of mEPSC, AMPAR- and NMDAR-mediated currents, which were accompanied by decreased surface expression of NMDAR. In addition, miR-124 injection resulted in decreased activity and expression of cAMP-response element-binding protein1 (CREB1). a key regulator in epileptogenesis. A dual-luciferase reporter assay was used to confirm that miR-124 targeted directly the 3'UTR of CREB1 gene and repressed the CREB1 expression in HEK293T cells. Immunoprecipitation studies confirmed that the CREB1 antibody effectively precipitated CREB1 and NMDAR1 but not GLUR1 from rat brain hippocampus. These results revealed a previously unknown function of miR-124 in neuronal excitability and provided a new insight into molecular mechanisms underlying epilepsy.
Insights
MicroRNA-124 (miR-124) suppresses neuronal excitability and has anti-epilepsy functions. This study demonstrates miR-124
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- MicroRNA-124 (miR-124) is a brain-specific microRNA regulating neuronal differentiation.
- Epilepsy is characterized by recurrent seizures, and its underlying molecular mechanisms are not fully understood.
Purpose of the Study:
- To investigate the role of miR-124 in epilepsy.
- To explore the potential of miR-124 as an anti-epilepsy therapeutic target.
Main Methods:
- Assessed miR-124 expression in epilepsy patients and seizure models.
- Administered miR-124 duplex and inhibitor in rat epilepsy models.
- Recorded local field potentials (LFPs) and measured neuronal currents (mEPSC, AMPAR, NMDAR).
- Utilized dual-luciferase reporter and immunoprecipitation assays to confirm target interaction.
Main Results:
- miR-124 expression was suppressed in epilepsy.
- miR-124 administration alleviated seizure severity and prolonged onset latency.
- miR-124 inhibited neuronal firing by suppressing AMPA and NMDA receptor currents and NMDAR surface expression.
- miR-124 directly targeted and repressed cAMP-response element-binding protein 1 (CREB1) expression.
Conclusions:
- miR-124 exhibits anti-epilepsy functions by reducing neuronal excitability.
- miR-124 acts by downregulating CREB1, a key regulator in epileptogenesis.
- miR-124 represents a novel therapeutic target for epilepsy.
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