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Systematic Assessment of Well-Being in Mice for Procedures Using General Anesthesia
Published on: March 20, 2018
Remimazolam-induced anesthesia does not affect circadian rhythms significantly in mice
Yasuhito Suzuki1, Ryo Imai2, Yoshitaka Aoki1
1Department of Anesthesiology and Intensive Care, Hamamatsu University School of Medicine, 1-20-1 Handayama, Hamamatsu, Shizuoka, 431-3192, Japan.
Abstract:
Although inhalational general anesthesia affects mammalian circadian rhythms, which are generated through oscillations in expression of clock genes in the suprachiasmatic nucleus (SCN), the impact of intravenous benzodiazepine (BDZ)-induced general anesthesia is not well understood. We investigated the effects of remimazolam (RMZ), an ultra-short-acting BDZ that has recently gained widespread use in clinical anesthesia, on circadian rhythms and clock gene expression in the SCN in male C57BL/6J mice. Phase shifts in behavioral rest-activity circadian rhythms were quantitatively measured under constant dark conditions. No significant differences were detected among the interventions tested: continuous RMZ injection, bolus RMZ injection, and saline injection at different circadian times. Analyses of day/night activity distribution and the percentage of mice in inactivity bouts showed no significant differences among these groups. To assess the effects of RMZ on clock gene expression, we used continuous RMZ injection, which better reflects clinical anesthesia conditions. Quantitative real-time polymerase chain reaction revealed that the mRNA expression levels of major clock genes Per2, Bmal1, Cry1, and Npas2 in the SCN were decreased, whereas the neuronal activity marker Egr1 was increased. The period of circadian oscillations in clock gene Per2 expression-analyzed by bioluminescence rhythms of cultured SCN tissue from PER2::LUC mice-did not change with any concentration of RMZ administration. Our findings show that RMZ has minimal effects on circadian rhythms under our experimental protocols, suggesting that RMZ has the potential to reduce complications related to circadian rhythm disruption by general anesthesia.
Insights
Remimazolam (RMZ), an ultra-short-acting benzodiazepine, minimally impacts mouse circadian rhythms and clock gene expression in the suprachiasmatic nucleus (SCN). This suggests RMZ may reduce anesthesia-related circadian disruption complications.
Area of Science:
- Neuroscience
- Anesthesiology
- Chronobiology
Background:
- Mammalian circadian rhythms are regulated by clock genes in the suprachiasmatic nucleus (SCN).
- Inhalational anesthesia disrupts circadian rhythms, but the effects of intravenous benzodiazepine (BDZ)-induced anesthesia are less understood.
- Remimazolam (RMZ) is an ultra-short-acting BDZ increasingly used in clinical anesthesia.
Purpose of the Study:
- To investigate the impact of remimazolam (RMZ) on circadian rhythms and clock gene expression in the SCN.
- To evaluate behavioral rest-activity patterns and clock gene mRNA levels following RMZ administration in mice.
Main Methods:
- Male C57BL/6J mice were subjected to continuous or bolus RMZ injections, or saline control, under constant dark conditions.
- Behavioral circadian rhythms were assessed by measuring phase shifts and activity distribution.
- Quantitative real-time PCR and PER2::LUC bioluminescence assays were used to analyze clock gene expression in the SCN.
Main Results:
- RMZ administration did not cause significant phase shifts in behavioral circadian rhythms.
- No significant differences in activity distribution or inactivity bouts were observed among groups.
- While RMZ decreased mRNA levels of Per2, Bmal1, Cry1, and Npas2, and increased Egr1 in the SCN, it did not alter the period of Per2 circadian oscillations.
Conclusions:
- Remimazolam exhibits minimal disruption to circadian rhythms and clock gene expression under the tested experimental conditions.
- RMZ shows potential for mitigating complications associated with general anesthesia-induced circadian rhythm disruption.
- Further research is warranted to fully elucidate the clinical implications of RMZ on circadian physiology.

