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Published on: January 25, 2016
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.
Abstract:
Immune signaling is known to regulate sleep. miR-155 is a microRNA that regulates immune responses. We hypothesized that miR-155 would alter sleep regulation. Thus, we investigated the potential effects of miR-155 deletion on sleep-wake behavior in adult female homozygous miR-155 knockout (miR-155KO) mice and littermate controls (WT). Mice were implanted with biotelemetry units and EEG/EMG biopotentials were recorded continuously for three baseline days. miR-155KO mice had decreased bouts of NREM and REM sleep compared with WT mice, but no differences were observed in the length of sleep bouts or total time spent in sleep-wake states. Locomotor activity and subcutaneous temperature did not differ between WT and miR-155KO mice. Following baseline recordings, mice were sleep-deprived during the first six hours of the rest phase (light phase; ZT 0-6) followed by an 18 h recovery period. There were no differences between groups in sleep rebound (% sleep and NREM δ power) after sleep deprivation. Following recovery from sleep deprivation, mice were challenged with a somnogen (viz., lipopolysaccharide (LPS)) one hour prior to the initiation of the dark (active) phase. Biopotentials were continuously recorded for the following 24 h, and miR-155KO mice displayed increased wakefulness and decreased NREM sleep during the dark phase following LPS injection. Additionally, miR-155KO mice had reduced EEG slow-wave responses (0.5-4 Hz) compared to WT mice. Together, our findings indicate that miR-155 deletion attenuates the somnogenic and EEG delta-enhancing effects of LPS. Abbreviations: ANOVA: analysis of variance; EEG: electroencephalogram; EMG: electromyogram; h: hour; IL-1: interleukin-1; IL-6: interleukin-6; IP: intra-peritoneal; LPS: lipopolysaccharide; miR/miRNA: microRNA; miR-155KO: miR-155 knockout; NREM: non-rapid eye movement; REM: rapid eye movement; TNF: tumor necrosis factor; SWS: slow-wave sleep; WT: wild-type.
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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