miR-155 deletion modulates lipopolysaccharide-induced sleep in female mice

Surbhi1, Jeremy C Borniger1, Kathryn L G Russart1

  • 1a Department of Neuroscience , The Ohio State University Wexner Medical Center , Columbus , OH USA.

Insights

MicroRNA-155 (miR-155) knockout mice show altered sleep patterns and reduced responses to lipopolysaccharide (LPS), suggesting miR-155 influences immune-mediated sleep regulation.

Area of Science:

  • Neuroscience
  • Immunology
  • Sleep Science

Background:

  • Immune signaling pathways are increasingly recognized for their role in regulating sleep-wake cycles.
  • MicroRNAs (miRNAs), such as miR-155, are critical regulators of immune responses.
  • The specific impact of miR-155 on sleep regulation remains largely unexplored.

Purpose of the Study:

  • To investigate the role of miR-155 in sleep regulation.
  • To examine the effects of miR-155 deletion on sleep-wake behavior.
  • To determine if miR-155 influences the somnogenic effects of lipopolysaccharide (LPS).

Main Methods:

  • Utilized adult female homozygous miR-155 knockout (miR-155KO) mice and wild-type (WT) littermate controls.
  • Implanted biotelemetry units for continuous electroencephalogram (EEG) and electromyogram (EMG) recordings.
  • Assessed sleep-wake behavior, sleep rebound after deprivation, and responses to LPS challenge.

Main Results:

  • miR-155KO mice exhibited decreased non-rapid eye movement (NREM) and rapid eye movement (REM) sleep bouts compared to WT mice.
  • No significant differences in total sleep time, sleep bout duration, locomotor activity, or body temperature were observed at baseline.
  • Following LPS administration, miR-155KO mice showed increased wakefulness and reduced NREM sleep, along with diminished EEG delta responses during the active phase.

Conclusions:

  • miR-155 deletion alters sleep bout architecture but not overall sleep duration.
  • miR-155 is crucial for mediating the somnogenic and EEG delta-enhancing effects of LPS.
  • These findings highlight miR-155's role in immune-driven sleep modulation.

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