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research article

Alteration of brain glycogen turnover in the conscious rat after 5h of prolonged wakefulness

Morgenthaler, Florence D.
•
Lanz, Bernard R.  
•
Petit, Jean-Marie
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2009
Neurochemistry international

Although glycogen (Glyc) is the main carbohydrate storage component, the role of Glyc in the brain during prolonged wakefulness is not clear. The aim of this study was to determine brain Glyc concentration ([]) and turnover time (tau) in euglycemic conscious and undisturbed rats, compared to rats maintained awake for 5h. To measure the metabolism of [1-(13)C]-labeled Glc into Glyc, 23 rats received a [1-(13)C]-labeled Glc solution as drink (10% weight per volume in tap water) ad libitum as their sole source of exogenous carbon for a "labeling period" of either 5h (n=13), 24h (n=5) or 48 h (n=5). Six of the rats labeled for 5h were continuously maintained awake by acoustic, tactile and olfactory stimuli during the labeling period, which resulted in slightly elevated corticosterone levels. Brain [Glyc] measured biochemically after focused microwave fixation in the rats maintained awake (3.9+/-0.2 micromol/g, n=6) was not significantly different from that of the control group (4.0+/-0.1 micromol/g, n=7; t-test, P>0.5). To account for potential variations in plasma Glc isotopic enrichment (IE), Glyc IE was normalized by N-acetyl-aspartate (NAA) IE. A simple mathematical model was developed to derive brain Glyc turnover time as 5.3h with a fit error of 3.2h and NAA turnover time as 15.6h with a fit error of 6.5h, in the control rats. A faster tau(Glyc) (2.9h with a fit error of 1.2h) was estimated in the rats maintained awake for 5h. In conclusion, 5h of prolonged wakefulness mainly activates glycogen metabolism, but has minimal effect on brain [Glyc].

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Type
research article
DOI
10.1016/j.neuint.2009.02.023
Web of Science ID

WOS:000266283000009

PubMed ID

19428806

Author(s)
Morgenthaler, Florence D.
•
Lanz, Bernard R.  
•
Petit, Jean-Marie
•
Frenkel, Hanne
•
Magistretti, Pierre J.  
•
Gruetter, Rolf  
Date Issued

2009

Published in
Neurochemistry international
Volume

55

Issue

1-3

Start page

45

End page

51

Subjects

CIBM-AIT

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
CIBM  
LIFMET  
LNDC  
Available on Infoscience
May 26, 2012
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/80834
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