Cargando…

PET Imaging of Fructose Metabolism in a Rodent Model of Neuroinflammation with 6-[(18)F]fluoro-6-deoxy-D-fructose

Fluorine-18 labeled 6-fluoro-6-deoxy-D-fructose (6-[(18)F]FDF) targets the fructose-preferred facilitative hexose transporter GLUT5, which is expressed predominantly in brain microglia and activated in response to inflammatory stimuli. We hypothesize that 6-[(18)F]FDF will specifically image microgl...

Descripción completa

Detalles Bibliográficos
Autores principales: Boyle, Amanda J., Murrell, Emily, Tong, Junchao, Schifani, Christin, Narvaez, Andrea, Wuest, Melinda, West, Frederick, Wuest, Frank, Vasdev, Neil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9736258/
https://www.ncbi.nlm.nih.gov/pubmed/36500626
http://dx.doi.org/10.3390/molecules27238529
_version_ 1784846979442933760
author Boyle, Amanda J.
Murrell, Emily
Tong, Junchao
Schifani, Christin
Narvaez, Andrea
Wuest, Melinda
West, Frederick
Wuest, Frank
Vasdev, Neil
author_facet Boyle, Amanda J.
Murrell, Emily
Tong, Junchao
Schifani, Christin
Narvaez, Andrea
Wuest, Melinda
West, Frederick
Wuest, Frank
Vasdev, Neil
author_sort Boyle, Amanda J.
collection PubMed
description Fluorine-18 labeled 6-fluoro-6-deoxy-D-fructose (6-[(18)F]FDF) targets the fructose-preferred facilitative hexose transporter GLUT5, which is expressed predominantly in brain microglia and activated in response to inflammatory stimuli. We hypothesize that 6-[(18)F]FDF will specifically image microglia following neuroinflammatory insult. 6-[(18)F]FDF and, for comparison, [(18)F]FDG were evaluated in unilateral intra-striatal lipopolysaccharide (LPS)-injected male and female rats (50 µg/animal) by longitudinal dynamic PET imaging in vivo. In LPS-injected rats, increased accumulation of 6-[(18)F]FDF was observed at 48 h post-LPS injection, with plateaued uptake (60–120 min) that was significantly higher in the ipsilateral vs. contralateral striatum (0.985 ± 0.047 and 0.819 ± 0.033 SUV, respectively; p = 0.002, n = 4M/3F). The ipsilateral–contralateral difference in striatal 6-[(18)F]FDF uptake expressed as binding potential (BP(SRTM)) peaked at 48 h (0.19 ± 0.11) and was significantly decreased at one and two weeks. In contrast, increased [(18)F]FDG uptake in the ipsilateral striatum was highest at one week post-LPS injection (BP(SRTM) = 0.25 ± 0.06, n = 4M). Iba-1 and GFAP immunohistochemistry confirmed LPS-induced activation of microglia and astrocytes, respectively, in ipsilateral striatum. This proof-of-concept study revealed an early response of 6-[(18)F]FDF to neuroinflammatory stimuli in rat brain. 6-[(18)F]FDF represents a potential PET radiotracer for imaging microglial GLUT5 density in brain with applications in neuroinflammatory and neurodegenerative diseases.
format Online
Article
Text
id pubmed-9736258
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-97362582022-12-11 PET Imaging of Fructose Metabolism in a Rodent Model of Neuroinflammation with 6-[(18)F]fluoro-6-deoxy-D-fructose Boyle, Amanda J. Murrell, Emily Tong, Junchao Schifani, Christin Narvaez, Andrea Wuest, Melinda West, Frederick Wuest, Frank Vasdev, Neil Molecules Communication Fluorine-18 labeled 6-fluoro-6-deoxy-D-fructose (6-[(18)F]FDF) targets the fructose-preferred facilitative hexose transporter GLUT5, which is expressed predominantly in brain microglia and activated in response to inflammatory stimuli. We hypothesize that 6-[(18)F]FDF will specifically image microglia following neuroinflammatory insult. 6-[(18)F]FDF and, for comparison, [(18)F]FDG were evaluated in unilateral intra-striatal lipopolysaccharide (LPS)-injected male and female rats (50 µg/animal) by longitudinal dynamic PET imaging in vivo. In LPS-injected rats, increased accumulation of 6-[(18)F]FDF was observed at 48 h post-LPS injection, with plateaued uptake (60–120 min) that was significantly higher in the ipsilateral vs. contralateral striatum (0.985 ± 0.047 and 0.819 ± 0.033 SUV, respectively; p = 0.002, n = 4M/3F). The ipsilateral–contralateral difference in striatal 6-[(18)F]FDF uptake expressed as binding potential (BP(SRTM)) peaked at 48 h (0.19 ± 0.11) and was significantly decreased at one and two weeks. In contrast, increased [(18)F]FDG uptake in the ipsilateral striatum was highest at one week post-LPS injection (BP(SRTM) = 0.25 ± 0.06, n = 4M). Iba-1 and GFAP immunohistochemistry confirmed LPS-induced activation of microglia and astrocytes, respectively, in ipsilateral striatum. This proof-of-concept study revealed an early response of 6-[(18)F]FDF to neuroinflammatory stimuli in rat brain. 6-[(18)F]FDF represents a potential PET radiotracer for imaging microglial GLUT5 density in brain with applications in neuroinflammatory and neurodegenerative diseases. MDPI 2022-12-03 /pmc/articles/PMC9736258/ /pubmed/36500626 http://dx.doi.org/10.3390/molecules27238529 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Boyle, Amanda J.
Murrell, Emily
Tong, Junchao
Schifani, Christin
Narvaez, Andrea
Wuest, Melinda
West, Frederick
Wuest, Frank
Vasdev, Neil
PET Imaging of Fructose Metabolism in a Rodent Model of Neuroinflammation with 6-[(18)F]fluoro-6-deoxy-D-fructose
title PET Imaging of Fructose Metabolism in a Rodent Model of Neuroinflammation with 6-[(18)F]fluoro-6-deoxy-D-fructose
title_full PET Imaging of Fructose Metabolism in a Rodent Model of Neuroinflammation with 6-[(18)F]fluoro-6-deoxy-D-fructose
title_fullStr PET Imaging of Fructose Metabolism in a Rodent Model of Neuroinflammation with 6-[(18)F]fluoro-6-deoxy-D-fructose
title_full_unstemmed PET Imaging of Fructose Metabolism in a Rodent Model of Neuroinflammation with 6-[(18)F]fluoro-6-deoxy-D-fructose
title_short PET Imaging of Fructose Metabolism in a Rodent Model of Neuroinflammation with 6-[(18)F]fluoro-6-deoxy-D-fructose
title_sort pet imaging of fructose metabolism in a rodent model of neuroinflammation with 6-[(18)f]fluoro-6-deoxy-d-fructose
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9736258/
https://www.ncbi.nlm.nih.gov/pubmed/36500626
http://dx.doi.org/10.3390/molecules27238529
work_keys_str_mv AT boyleamandaj petimagingoffructosemetabolisminarodentmodelofneuroinflammationwith618ffluoro6deoxydfructose
AT murrellemily petimagingoffructosemetabolisminarodentmodelofneuroinflammationwith618ffluoro6deoxydfructose
AT tongjunchao petimagingoffructosemetabolisminarodentmodelofneuroinflammationwith618ffluoro6deoxydfructose
AT schifanichristin petimagingoffructosemetabolisminarodentmodelofneuroinflammationwith618ffluoro6deoxydfructose
AT narvaezandrea petimagingoffructosemetabolisminarodentmodelofneuroinflammationwith618ffluoro6deoxydfructose
AT wuestmelinda petimagingoffructosemetabolisminarodentmodelofneuroinflammationwith618ffluoro6deoxydfructose
AT westfrederick petimagingoffructosemetabolisminarodentmodelofneuroinflammationwith618ffluoro6deoxydfructose
AT wuestfrank petimagingoffructosemetabolisminarodentmodelofneuroinflammationwith618ffluoro6deoxydfructose
AT vasdevneil petimagingoffructosemetabolisminarodentmodelofneuroinflammationwith618ffluoro6deoxydfructose