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Stereotactic Injection of MicroRNA-expressing Lentiviruses to the Mouse Hippocampus CA1 Region and Assessment of the Behavioral Outcome
Published on: June 10, 2013
miR-96 Inhibits SV2C to Promote Depression-Like Behavior and Memory Disorders in Mice
Lidong Sun1, Donghao Bai1, Maoguang Lin1
1Outpatient Department, Ordos Fourth People's Hospital, Ordos, China.
Abstract:
Accumulating evidence continues to emphasize the role of microRNAs as significant contributors to depression-like behavior and memory disorders. The current study aimed to investigate the mechanism by which miR-96 influences depression-like behavior and memory deficit in mice. A depression-like behavior and memory disorder mouse model was initially established by means of intraperitoneal injection with lipopolysaccharide. Memory deficits in the mice were evaluated using the Novel Object Recognition Test and Morris water maze experiments, whereas the Sucrose Preference Experiment and forced swimming experiments were performed to identify depression-like behavior in mice. The levels of tumor necrosis factor-α, malondialdehyde, superoxide dismutase, glutathione, and the monoamine transmitters 5-hydroxytryptamine and dopamine were subsequently detected in the serum. Reverse transcription-quantitative polymerase chain reaction and Western blot analysis evaluated the expression of miR-96 and SV2C expression in the CA1 hippocampal region of the mice. Finally, the relationship of miR-96 and SV2C was verified by dual-luciferase reporter gene assay. Our data indicated that the expression of miR-96 was increased, whereas that of SV2C was decreased in the CA1 region of mice exhibiting depression-like behavior and memory impairment. When miR-96 was downregulated or SV2C was overexpressed via intra-cerebroventricular injection with a miR-96 antagonist (miR-96 antagomir) or overexpression of SV2C vector, the Novel Object Recognition Test and sucrose preference index were increased, whereas the escape latency, the number of water maze platform crossings, and the immobility time of the mice were decreased. The serum levels of tumor necrosis factor-α, interleukin-1β, and malondialdehyde in the mouse CA1 region of mice were reduced, whereas the levels of superoxide dismutase and glutathione were elevated after the downregulation of miR-96 or overexpression of SV2C. Collectively, our study demonstrates that miR-96 negatively regulates the expression of SV2C, which consequently leads to depression-like behavior and memory impairment in mice. Our findings highlight the potential of miR-96-targeted therapeutics.
Insights
MicroRNA-96 (miR-96) exacerbates depression and memory loss by reducing SV2C levels. Targeting miR-96 offers a potential therapeutic strategy for these conditions.
Area of Science:
- Neuroscience
- Molecular Biology
- Pharmacology
Background:
- MicroRNAs (miRNAs) are increasingly recognized for their roles in depression-like behavior and memory deficits.
- Understanding the specific mechanisms involving miRNAs in neurological disorders is crucial for developing targeted therapies.
Purpose of the Study:
- To investigate the precise mechanism by which microRNA-96 (miR-96) influences depression-like behavior and memory impairment in a mouse model.
- To explore the regulatory relationship between miR-96 and Synaptic Vesicle Glycoprotein 2C (SV2C) in the context of neurological dysfunction.
Main Methods:
- Establishment of a depression-like behavior and memory disorder mouse model using lipopolysaccharide (LPS) injection.
- Behavioral assessments including the Novel Object Recognition Test, Morris water maze, Sucrose Preference Experiment, and forced swimming tests.
- Molecular analyses involving quantitative polymerase chain reaction (qPCR), Western blot, and dual-luciferase reporter gene assay to assess miR-96 and SV2C expression and their interaction.
Main Results:
- Increased miR-96 expression and decreased SV2C expression were observed in the CA1 hippocampal region of mice with depression-like behavior and memory impairment.
- Downregulation of miR-96 or overexpression of SV2C ameliorated depression-like behaviors and improved memory function, alongside restoring neurochemical balance (reduced TNF-α, IL-1β, MDA; elevated SOD, GSH).
- A direct negative regulatory relationship between miR-96 and SV2C was confirmed.
Conclusions:
- miR-96 negatively regulates SV2C expression, and this interaction contributes to the development of depression-like behavior and memory deficits in mice.
- Targeting miR-96 presents a promising therapeutic avenue for treating depression and associated memory disorders.

