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  4. Metabolic response of the cerebral cortex following gentle sleep deprivation and modafinil administration
 
research article

Metabolic response of the cerebral cortex following gentle sleep deprivation and modafinil administration

Petit, J.-M.
•
Tobler, I.
•
Kopp, C.
Show more
2010
Sleep

Objectives: The main energy reserve of the brain is glycogen, which is almost exclusively localized in astrocytes. We previously reported that cerebral expression of certain genes related to glycogen metabolism changed following instrumental sleep deprivation in mice. Here, we extended our investigations to another set of genes related to glycogen and glucose metabolism. We also compared the effect of instrumentally and pharmacologically induced prolonged wakefulness, followed (or not) by 3 hours of sleep recovery, on the expression of genes related to brain energy metabolism. Design: Sleep deprivation for 6-7 hours. Setting: Animal sleep research laboratory. Participants: Adults OF1 mice. Interventions: Wakefulness was maintained by “gentle sleep deprivation” method (GSD) or by administration of the wakefulness-promoting drug modafinil (MOD) (200 mg/kg i.p.). Measurements and Results: Levels of mRNAs encoding proteins related to energy metabolism were measured by quantitative real-time PCR in the cerebral cortex. The mRNAs encoding protein targeting to glycogen (PTG) and the glial glucose transporter were significantly increased following both procedures used to prolong wakefulness. Glycogenin mRNA levels were increased only after GSD, while neuronal glucose transporter mRNA only after MOD. These effects were reversed after sleep recovery. A significant enhancement of glycogen synthase activity without any changes in glycogen levels was observed in both conditions. Conclusions: These results indicate the existence of a metabolic adaptation of astrocytes aimed at maintaining brain energy homeostasis during the sleep-wake cycle.

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Type
research article
DOI
10.1093/sleep/33.7.901
Web of Science ID

WOS:000279365600010

Author(s)
Petit, J.-M.
Tobler, I.
Kopp, C.
Morgenthaler, F.
Borbély, A. A.
Magistretti, P. J.  
Date Issued

2010

Published in
Sleep
Volume

33

Issue

7

Start page

901

End page

908

Subjects

Energy metabolism

•

astrocytes

•

glycogen

•

glucose

•

psychostimulant

•

wakefulness

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LNDC  
Available on Infoscience
March 8, 2011
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/65195
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