Related Experiment Video
Updated: Dec 20, 2025

Assessment of Memory Function in Pilocarpine-induced Epileptic Mice
Published on: June 4, 2020
Antagomirs targeting miR-142-5p attenuate pilocarpine-induced status epilepticus in mice
Haifeng Zhang1, Yajun Lian1, Nanchang Xie1
1Department of Neurology, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, Henan, 450052, PR China.
Abstract:
MicroRNAs (miRNAs) are reported to involve in pathogenesis of temporal lobe epilepsy (TLE). miR-142-5p is found increased in TLE, but its role remains unknown. In the study, we established a mouse model of status epilepticus (SE) with pilocarpine and a cell model of TLE. Quantitative real-time PCR revealed an up-regulation of miR-142-5p and down-regulation of mitochondrial Rho 1 (Miro1) in the mouse mode of SE. Administration of miR-142-5p antagomirs via intracerebroventricular injection attenuated pilocarpine-induced SE and hippocampal damage, and alleviated mitochondrial dysfunction along with increased mitochondrial membrane potential and intracellular ATP and Ca (2+) levels. The expression of mitochondrial trafficking kinesin protein (Trak) 1 and Trak2 was up-regulated by inhibiting miR-142-5p. Antagomirs targeting miR-142-5p suppressed pilocarpine-induced oxidative stress as evidenced by decreased ROS generation and MPO activity, and increased SOD activity. Silencing miR-142-5p reduced neuronal death in pilocarpine-treated hippocampus and magnesium-free (MGF)-treated neurons. Inhibition of miR-142-5p decreased cytoplasmic Cytochrome C and increased mitochondrial Cytochrome C, reduced cleaved-caspase3 and Bax levels, and elevated Bcl2 in vivo and in vitro. Further, dual-luciferase assay verified Miro1 as a target of miR-142-5p, suggesting that miR-142-5p might function via targeting Mrio1. Depletion of Miro1 inhibited the protective effect of silencing miR-142-5p on hippocampal neurons in vitro. Taken together, down-regulation of miR-142-5p via targeting Miro1 inhibits neuronal death and mitochondrial dysfunction, and thus attenuates pilocarpine-induced SE, suggesting the potential involvement of miR-142-5p in the pathogenesis of TLE.
Insights
Inhibition of microRNA-142-5p (miR-142-5p) protects against temporal lobe epilepsy (TLE) by targeting Miro1, reducing neuronal death and mitochondrial dysfunction.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- MicroRNAs (miRNAs) play a role in the pathogenesis of temporal lobe epilepsy (TLE).
- miR-142-5p is upregulated in TLE, but its specific function is unclear.
- Mitochondrial dysfunction and oxidative stress are key features of TLE.
Purpose of the Study:
- To investigate the role of miR-142-5p in TLE pathogenesis.
- To determine if miR-142-5p targets mitochondrial Rho 1 (Miro1).
- To evaluate the therapeutic potential of inhibiting miR-142-5p in TLE.
Main Methods:
- Established pilocarpine-induced status epilepticus (SE) mouse and cell models.
- Administered miR-142-5p antagomirs via intracerebroventricular injection.
- Performed quantitative real-time PCR, dual-luciferase assays, and assessed mitochondrial function, oxidative stress markers, and apoptosis.
Main Results:
- miR-142-5p was upregulated, and Miro1 was downregulated in SE mice.
- miR-142-5p inhibition attenuated SE, hippocampal damage, mitochondrial dysfunction, and oxidative stress.
- miR-142-5p directly targets Miro1, and its inhibition reduced neuronal death by restoring mitochondrial function and apoptosis-related protein levels.
Conclusions:
- Downregulation of miR-142-5p, by targeting Miro1, ameliorates neuronal death and mitochondrial dysfunction in TLE.
- miR-142-5p inhibition shows therapeutic potential for TLE.
- This study elucidates a novel mechanism involving miR-142-5p and Miro1 in TLE pathogenesis.

