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  4. PET CMRglc mapping and H-1-MRS show altered glucose uptake and neurometabolic profiles in BDL rats
 
research article

PET CMRglc mapping and H-1-MRS show altered glucose uptake and neurometabolic profiles in BDL rats

Mosso, Jessie  
•
Yin, Ting  
•
Poitry-Yamate, Carole  
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June 15, 2022
Analytical Biochemistry

Type C hepatic encephalopathy (HE) is a complex neuropsychiatric disorder occurring as a consequence of chronic liver disease. Alterations in energy metabolism have been suggested in type C HE, but in vivo studies on this matter remain sparse and have reported conflicting results. Here, we propose a novel preclinical F-18-FDG PET methodology to compute quantitative 3D maps of the regional cerebral metabolic rate of glucose (CMRglc) from a labelling steady-state PET image of the brain and an image-derived input function. This quantitative approach shows its strength when comparing groups of animals with divergent physiology, such as HE animals. PET CMRglc maps were registered to an atlas and the mean CMRglc from the hippocampus and the cerebellum were associated to the corresponding localized H-1 MR spectroscopy acquisitions. This study provides for the first time local and quantitative information on both brain glucose uptake and neurometabolic profile alterations in a rat model of type C HE. A 2-fold lower brain glucose uptake, concomitant with an increase in brain glutamine and a decrease in the main osmolytes, was observed in the hippocampus and in the cerebellum. These novel findings are an important step towards new insights into energy metabolism in the pathophysiology of HE.

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Type
research article
DOI
10.1016/j.ab.2022.114606
Web of Science ID

WOS:000830644500002

Author(s)
Mosso, Jessie  
•
Yin, Ting  
•
Poitry-Yamate, Carole  
•
Simicic, Dunja  
•
Lepore, Mario  
•
McLin, Valerie A.
•
Braissant, Olivier
•
Cudalbu, Cristina  
•
Lanz, Bernard  
Date Issued

2022-06-15

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE

Published in
Analytical Biochemistry
Volume

647

Article Number

114606

Subjects

Biochemical Research Methods

•

Biochemistry & Molecular Biology

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Chemistry, Analytical

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Biochemistry & Molecular Biology

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Chemistry

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h-1 mrs

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f-18-fdg pet

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cerebral metabolic rate of glucose

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rat brain

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bile duct ligation

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type c hepatic encephalopathy

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hepatic-encephalopathy

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brain edema

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metabolism

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quantification

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spectroscopy

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pathogenesis

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quantitation

•

performance

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cerebellum

•

transport

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LIFMET  
CIBM  
Available on Infoscience
August 15, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/190089
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