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Updated: Apr 1, 2026

Establishing a Device for Sleep Deprivation in Mice
Published on: September 22, 2023
Altered microbiota drive prelimbic cortex suppression and lower pain thresholds after sleep deprivation
Yan Wu1, Na Li1, Yunfeng Bai1
1Department of Anesthesiology and Perioperative Medicine, General Hospital of Ningxia Medical University, Yinchuan, China.
Abstract:
Sleep disturbances are increasingly recognized as a lifestyle factor for abnormal pain perception. Recent studies highlight the critical role of gut microbiota in maintaining physiological balance and reveal a bidirectional relationship between microbiota alterations, sleep disorders, and pathological pain. This study investigates the potential role of microbiota in linking sleep deprivation to abnormal pain. Using a chronic sleep deprivation (CSD) model in mice, we observed significantly lower pain thresholds compared to controls. Brain-wide functional ultrasound imaging revealed reduced cerebral blood volume responses to pinprick stimulation in the prelimbic cortex (PrL) of CSD mice, indicating decreased neuronal activity during pain processing. This finding was confirmed by fiber photometry of calcium influx and c-Fos staining in the PrL. Importantly, chemogenetic activation of PrL neurons effectively reversed CSD-induced pain hypersensitivity. CSD also caused significant microbiota alterations, including increased diversity and changes in specific genera associated with brain function-related metabolic pathways. Fecal microbiota transplantation (FMT) demonstrated a causal relationship, as control mice that received microbiota from CSD mice developed pain hypersensitivity, whereas CSD mice that received control microbiota exhibited restored pain thresholds Notably, FMT-induced pain behavior changes correlated with PrL activity alterations. Our study indicates that CSD suppresses PrL activity and causes pain hypersensitivity through alterations in gut microbiota. This study emphasizes the gut-brain axis as a critical pathway in the interplay between sleep deprivation and pain regulation.
Insights
Chronic sleep deprivation (CSD) in mice lowers pain thresholds by altering gut microbiota, which suppresses prelimbic cortex (PrL) activity. Restoring microbiota can reverse these pain changes, highlighting the gut-brain axis in sleep-pain regulation.
Area of Science:
- Neuroscience
- Microbiology
- Physiology
Background:
- Sleep disturbances are linked to abnormal pain perception.
- Gut microbiota plays a key role in physiological balance and interacts with sleep and pain.
- The gut-brain axis is crucial for regulating pain and sleep.
Purpose of the Study:
- To investigate how gut microbiota alterations link sleep deprivation to abnormal pain.
- To explore the role of the prelimbic cortex (PrL) in sleep deprivation-induced pain hypersensitivity.
- To elucidate the causal relationship between gut microbiota and pain regulation following sleep deprivation.
Main Methods:
- A chronic sleep deprivation (CSD) mouse model was used.
- Brain-wide functional ultrasound imaging, fiber photometry, and c-Fos staining assessed PrL activity.
- Chemogenetics modulated PrL neuron activity, and fecal microbiota transplantation (FMT) established causality.
Main Results:
- CSD mice exhibited significantly lower pain thresholds and reduced PrL neuronal activity.
- Activating PrL neurons reversed CSD-induced pain hypersensitivity.
- CSD altered gut microbiota composition, and FMT demonstrated its causal role in pain hypersensitivity and PrL activity changes.
Conclusions:
- Chronic sleep deprivation suppresses PrL activity and induces pain hypersensitivity via gut microbiota alterations.
- The gut-brain axis is a critical pathway mediating the effects of sleep deprivation on pain.
- Targeting the gut microbiota may offer therapeutic strategies for sleep-related pain disorders.
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