Adenosine, increasing after sleep deprivation and acting via the A(1) adenosine receptor (A(1)AR), is likely a key factor in the homeostatic control of sleep. This study examines the impact of sleep deprivation on A(1)AR density in different parts of the rat brain with [(3)H]CPFPX autoradiography. Binding of [(3)H]CPFPX was significantly increased in parietal cortex (PAR) (7%), thalamus (11%) and caudate-putamen (9%) after 24 h of sleep deprivation compared to a control group with an undisturbed circadian sleep-wake rhythm. Sleep deprivation of 12 h changed receptor density regionally between -5% and +9% (motor cortex (M1), statistically significant) compared to the circadian control group. These results suggest cerebral A(1)ARs are involve...
The neuroregulator adenosine is involved in sleep-wake control. Basal forebrain (BF) adenosine level...
Adenosine acting in the basal forebrain is a key mediator of sleep homeostasis. Extracellular adenos...
Extended sleep improves sustained attention and reduces sleep pressure in humans. Downregulation of ...
Although chronic sleep restriction frequently produces long-lasting behavioural and physiological im...
Sleep deprivation increases the levels of extracellular adenosine and A1 receptor (A1R)mRNA in the c...
It is currently hypothesized that adenosine is involved in the induction of sleep after prolonged wa...
The neuroregulator adenosine is involved in sleep-wake control. Basal forebrain (BF) adenosine level...
<p>Adenosine release evoked by AMPA in slices from 2 h SD rats was compared to control rats sacrific...
Adenosine and functional A1 adenosine receptor (A1AR) availability are supposed to mediate sleep–wak...
Adenosine and functional A1 adenosine receptor (A1AR) availability are supposed to mediate sleep-wak...
<p>Photomicrographs show the distribution of A<sub>2A</sub> adenosine receptor in the cortex, hippoc...
<p>Adenosine release was compared between 6 h sleep deprived and non-sleep deprived rats sacrificed ...
<p>At the top, representative western blot of the expression for A<sub>2A</sub> adenosine receptor i...
Chronic sleep restriction induces blood-brain barrier disruption and increases pro-inflammatory medi...
Adenosine acting in the basal forebrain is a key mediator of sleep homeostasis. Extracellular adenos...
The neuroregulator adenosine is involved in sleep-wake control. Basal forebrain (BF) adenosine level...
Adenosine acting in the basal forebrain is a key mediator of sleep homeostasis. Extracellular adenos...
Extended sleep improves sustained attention and reduces sleep pressure in humans. Downregulation of ...
Although chronic sleep restriction frequently produces long-lasting behavioural and physiological im...
Sleep deprivation increases the levels of extracellular adenosine and A1 receptor (A1R)mRNA in the c...
It is currently hypothesized that adenosine is involved in the induction of sleep after prolonged wa...
The neuroregulator adenosine is involved in sleep-wake control. Basal forebrain (BF) adenosine level...
<p>Adenosine release evoked by AMPA in slices from 2 h SD rats was compared to control rats sacrific...
Adenosine and functional A1 adenosine receptor (A1AR) availability are supposed to mediate sleep–wak...
Adenosine and functional A1 adenosine receptor (A1AR) availability are supposed to mediate sleep-wak...
<p>Photomicrographs show the distribution of A<sub>2A</sub> adenosine receptor in the cortex, hippoc...
<p>Adenosine release was compared between 6 h sleep deprived and non-sleep deprived rats sacrificed ...
<p>At the top, representative western blot of the expression for A<sub>2A</sub> adenosine receptor i...
Chronic sleep restriction induces blood-brain barrier disruption and increases pro-inflammatory medi...
Adenosine acting in the basal forebrain is a key mediator of sleep homeostasis. Extracellular adenos...
The neuroregulator adenosine is involved in sleep-wake control. Basal forebrain (BF) adenosine level...
Adenosine acting in the basal forebrain is a key mediator of sleep homeostasis. Extracellular adenos...
Extended sleep improves sustained attention and reduces sleep pressure in humans. Downregulation of ...