Sleep homeostasis reflects a centrally mediated drive for sleep, which increases during waking and resolves during subsequent sleep. Here we demonstrate that mice deficient for glial adenosine kinase (AdK), the primary metabolizing enzyme for adenosine (Ado), exhibit enhanced expression of this homeostatic drive by three independent measures: (1) increased rebound of slow-wave activity; (2) increased consolidation of slow-wave sleep; and (3) increased time constant of slow-wave activity decay during an average slow-wave sleep episode, proposed and validated here as a new index for homeostatic sleep drive. Conversely, mice deficient for the neuronal adenosine A1 receptor exhibit significantly decreased sleep drive as judged by these same ind...
Astrocytes modulate neuronal activity by releasing chemical transmitters via a process termed gliotr...
Adenosine acting in the basal forebrain is a key mediator of sleep homeostasis. Extracellular adenos...
Adenosine acting in the basal forebrain is a key mediator of sleep homeostasis. Extracellular adenos...
Loss of sleep causes an increase in sleep drive and deficits in hippocampal-dependent memory. Both o...
Sleep is regulated by a homeostatic process that has long been thought to involve adenosine (AD) ori...
Loss of sleep causes an increase in sleep drive and deficits in hippocampal-dependent memory. Both o...
International audienceExtracellular adenosine, a key regulator of neuronal excitability, is metaboli...
Sleep deprivation (SD) can have a negative impact on cognitive function, but the mechanism(s) by whi...
Extracellular adenosine, a key regulator of neuronal excitability, is metabolized by astrocyte-based...
Objective: Adenosine participates in maintaining the excitatory/inhibitory balance in neuronal circu...
The sleep-wake cycle is regulated by a fine-tuned interplay between sleep-homeostatic and circadian ...
SummaryAstrocytes modulate neuronal activity by releasing chemical transmitters via a process termed...
International audienceSleep has been hypothesised to maintain a close relationship with metabolism. ...
Sleep control is ascribed to a two-process model, a widely accepted concept that posits homoeostatic...
Sleep deprivation increases the levels of extracellular adenosine and A1 receptor (A1R)mRNA in the c...
Astrocytes modulate neuronal activity by releasing chemical transmitters via a process termed gliotr...
Adenosine acting in the basal forebrain is a key mediator of sleep homeostasis. Extracellular adenos...
Adenosine acting in the basal forebrain is a key mediator of sleep homeostasis. Extracellular adenos...
Loss of sleep causes an increase in sleep drive and deficits in hippocampal-dependent memory. Both o...
Sleep is regulated by a homeostatic process that has long been thought to involve adenosine (AD) ori...
Loss of sleep causes an increase in sleep drive and deficits in hippocampal-dependent memory. Both o...
International audienceExtracellular adenosine, a key regulator of neuronal excitability, is metaboli...
Sleep deprivation (SD) can have a negative impact on cognitive function, but the mechanism(s) by whi...
Extracellular adenosine, a key regulator of neuronal excitability, is metabolized by astrocyte-based...
Objective: Adenosine participates in maintaining the excitatory/inhibitory balance in neuronal circu...
The sleep-wake cycle is regulated by a fine-tuned interplay between sleep-homeostatic and circadian ...
SummaryAstrocytes modulate neuronal activity by releasing chemical transmitters via a process termed...
International audienceSleep has been hypothesised to maintain a close relationship with metabolism. ...
Sleep control is ascribed to a two-process model, a widely accepted concept that posits homoeostatic...
Sleep deprivation increases the levels of extracellular adenosine and A1 receptor (A1R)mRNA in the c...
Astrocytes modulate neuronal activity by releasing chemical transmitters via a process termed gliotr...
Adenosine acting in the basal forebrain is a key mediator of sleep homeostasis. Extracellular adenos...
Adenosine acting in the basal forebrain is a key mediator of sleep homeostasis. Extracellular adenos...