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.

Scientific Reports
|November 26, 2025
PubMed

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.