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Updated: Mar 11, 2026

Author Spotlight: Investigating Anesthesia-Induced Sleep Pathways and Neuronal Excitability in Mice
Published on: October 11, 2024
Effect of sevoflurane anesthesia on the comprehensive mRNA expression profile of the mouse hippocampus
Tomo Hayase1, Shunsuke Tachibana1, Michiaki Yamakage1
1Department of Anesthesiology, Sapporo Medical University School of Medicine, Sapporo, Japan.
Abstract:
Postoperative nausea and vomiting (PONV) is a common complication after general anesthesia. Recent studies suggested that the hippocampus is involved in PONV. Hypothesising that hippocampal dopaminergic neurons are related to PONV, we examined the comprehensive mRNA profile of the hippocampus, using a sevoflurane-treated mouse model to confirm this. This study was conducted after approval from our institutional animal ethics committee, the Animal Research Center of Sapporo Medical University School of Medicine (project number: 12-033). Eight mice were assigned to two groups: a naïve group and a sevoflurane group (Sev group). In the Sev group, four mice were anesthetised with 3.5% sevoflurane for 1 hour. Subsequently, mRNA was isolated from their hippocampal cells and RNA sequencing was performed on an Illumina HiSeq 2500 platform. Mapping of the quality-controlled, filtered paired-end reads to mouse genomes and quantification of the expression levels of each gene were performed using R software. The Rtn4rl2 gene that encodes the Nogo receptor was the most up-regulated gene in the present study. The expression levels of dopamine receptor genes and the tachykinin gene were increased by sevoflurane exposure, while the genes related to serotonin receptors were not altered by sevoflurane exposure. The expression levels of LIM-homeodomain-related genes were highly down-regulated by sevoflurane. These findings suggest that sevoflurane exposure induces dopaminergic stimulation of hippocampal neurons and triggers PONV, while neuronal inflammation caused by LIM-homeodomain-related genes is down-regulated by sevoflurane.
Insights
Sevoflurane anesthesia may trigger postoperative nausea and vomiting (PONV) by stimulating hippocampal dopaminergic neurons. This study investigated gene expression changes in the hippocampus following sevoflurane exposure in mice.
Area of Science:
- Neuroscience
- Anesthesiology
- Molecular Biology
Background:
- Postoperative nausea and vomiting (PONV) is a frequent complication following general anesthesia.
- Emerging evidence implicates the hippocampus in the pathophysiology of PONV.
Purpose of the Study:
- To investigate the hypothesis that hippocampal dopaminergic neurons are involved in PONV.
- To analyze the comprehensive mRNA profile of the hippocampus in a mouse model exposed to sevoflurane.
Main Methods:
- A mouse model was used with two groups: a control (naïve) group and a sevoflurane-exposed group.
- Mice were anesthetized with sevoflurane, and hippocampal mRNA was isolated for RNA sequencing.
- Gene expression levels were quantified using R software and mapped to the mouse genome.
Main Results:
- Sevoflurane exposure significantly upregulated the Rtn4rl2 gene (Nogo receptor).
- Dopamine receptor and tachykinin gene expression increased, while serotonin receptor genes remained unchanged.
- LIM-homeodomain-related genes, associated with neuronal inflammation, were significantly downregulated.
Conclusions:
- Sevoflurane exposure appears to induce dopaminergic stimulation in hippocampal neurons, potentially triggering PONV.
- The downregulation of LIM-homeodomain-related genes suggests a suppression of neuronal inflammation by sevoflurane.
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