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  4. Increase of arginase activity in old apolipoprotein-E deficient mice under Western diet associated with changes in neurovascular unit
 
research article

Increase of arginase activity in old apolipoprotein-E deficient mice under Western diet associated with changes in neurovascular unit

Badaut, Jerome
•
Copin, Jean-Christophe
•
Fukuda, Andrew M.
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2012
Journal Of Neuroinflammation

Aging and atherosclerosis are well-recognized risk factors for cardiac and neurovascular diseases. The Apolipoprotein E deficient (ApoE-/-) mouse on a high-fat diet is a classical model of atherosclerosis, characterized by the presence of atherosclerotic plaques in extracranial vessels but not in cerebral arteries. Increase in arginase activity was shown to participate in vascular dysfunction in the peripheral arteries of atherosclerotic mice by changing the level of nitric oxide (NO). NO plays a key role in the physiological functions of the neurovascular unit (NVU). However, the regulation of arginase expression and activity in the brain was never investigated in association with changes in the NVU, ApoE deficiency and high fat diet. Fourteen-month-old ApoE-/- mice on high-fat diet exhibited deposition of lipids in the NVU, impairment of blood-brain barrier properties, astrogliosis and an increase of aquaporin 4 staining. In association with these changes, brain arginase activity was significantly increased in the old ApoE-/- mice as compared to old wild type mice, with an increase in the level of arginase type I in the blood vessels. In conclusion, aging in this classical mouse model of atherosclerosis induces an increase in the level and activity of arginase I that may impair NO synthesis and contribute to changes in the NVU leading to blood-brain barrier leakage and inflammation.

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Type
research article
DOI
10.1186/1742-2094-9-132
Web of Science ID

WOS:000307856100002

Author(s)
Badaut, Jerome
Copin, Jean-Christophe
Fukuda, Andrew M.
Gasche, Yvan
Schaller, Karl
Da Silva, Rafaela F.
Date Issued

2012

Publisher

Biomed Central Ltd

Published in
Journal Of Neuroinflammation
Volume

9

Start page

132

Subjects

Neurovascular unit

•

Nitric oxide

•

Arginase

•

Blood brain barrier

•

Water channel

•

Brain aging

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
IBI  
Available on Infoscience
February 27, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/89782
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