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Differential Effect of APOE Alleles on Brain Glucose Metabolism in Targeted Replacement Mice: An [(18)F]FDG-μPET Study

BACKGROUND: The Apolipoprotein E (ApoE) alleles ɛ2, ɛ3, and ɛ4 are known to differentially modulate cerebral glucose metabolism and the risk for Alzheimer’s disease (AD) via both amyloid-β (Aβ)-dependent and independent mechanisms. OBJECTIVE: We investigated the influence of ApoE on cerebral glucose...

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Autores principales: Venzi, Marcello, Tóth, Miklós, Häggkvist, Jenny, Bogstedt, Anna, Rachalski, Adeline, Mattsson, Anna, Frumento, Paolo, Farde, Lars
Formato: Online Artículo Texto
Lenguaje:English
Publicado: IOS Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6159693/
https://www.ncbi.nlm.nih.gov/pubmed/30480236
http://dx.doi.org/10.3233/ADR-170006
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author Venzi, Marcello
Tóth, Miklós
Häggkvist, Jenny
Bogstedt, Anna
Rachalski, Adeline
Mattsson, Anna
Frumento, Paolo
Farde, Lars
author_facet Venzi, Marcello
Tóth, Miklós
Häggkvist, Jenny
Bogstedt, Anna
Rachalski, Adeline
Mattsson, Anna
Frumento, Paolo
Farde, Lars
author_sort Venzi, Marcello
collection PubMed
description BACKGROUND: The Apolipoprotein E (ApoE) alleles ɛ2, ɛ3, and ɛ4 are known to differentially modulate cerebral glucose metabolism and the risk for Alzheimer’s disease (AD) via both amyloid-β (Aβ)-dependent and independent mechanisms. OBJECTIVE: We investigated the influence of ApoE on cerebral glucose metabolism in humanized APOE Targeted Replacement (TR) mice at ages that precede the comparison of Aβ parenchymal deposits in APOE4-TR mice. METHODS: Fludeoxyglucose ([(18)F]FDG) positron emission tomography (PET) measures were performed longitudinally in homozygous APOE-TR mice (APOE2, APOE3, APOE4; n = 10 for each group) at 3, 5, 11, and 15 months. Results were quantified using standard uptake values and analyzed statistically using a linear mixed effects model. Levels of the Aβ(40) and Aβ(42) peptides were quantified ex vivo using enzyme-linked immunosorbent assay (ELISA) at 15 months in the same animals. RESULTS: APOE2 mice (versus APOE3) showed a significant increase in glucose metabolism starting at 6 months, peaking at 9 months. No evidence of hypometabolism was apparent in any region or time point for APOE4 mice, which instead displayed a hypermetabolism at 15 months. Whole brain soluble Aβ(40) and Aβ(42) levels were not significantly different between genotypes at 15 months. CONCLUSIONS: Introduction of human APOE alleles ɛ2 and ɛ4 is sufficient to produce alterations in brain glucose metabolism in comparison to the control allele ɛ3, without a concomitant alteration in Aβ(40) and Aβ(42) levels. These results suggest novel Aβ-independent metabolic phenotypes conferred by ɛ2 and ɛ4 alleles and have important implications for preclinical studies using TR-mice.
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spelling pubmed-61596932018-11-26 Differential Effect of APOE Alleles on Brain Glucose Metabolism in Targeted Replacement Mice: An [(18)F]FDG-μPET Study Venzi, Marcello Tóth, Miklós Häggkvist, Jenny Bogstedt, Anna Rachalski, Adeline Mattsson, Anna Frumento, Paolo Farde, Lars J Alzheimers Dis Rep Research Article BACKGROUND: The Apolipoprotein E (ApoE) alleles ɛ2, ɛ3, and ɛ4 are known to differentially modulate cerebral glucose metabolism and the risk for Alzheimer’s disease (AD) via both amyloid-β (Aβ)-dependent and independent mechanisms. OBJECTIVE: We investigated the influence of ApoE on cerebral glucose metabolism in humanized APOE Targeted Replacement (TR) mice at ages that precede the comparison of Aβ parenchymal deposits in APOE4-TR mice. METHODS: Fludeoxyglucose ([(18)F]FDG) positron emission tomography (PET) measures were performed longitudinally in homozygous APOE-TR mice (APOE2, APOE3, APOE4; n = 10 for each group) at 3, 5, 11, and 15 months. Results were quantified using standard uptake values and analyzed statistically using a linear mixed effects model. Levels of the Aβ(40) and Aβ(42) peptides were quantified ex vivo using enzyme-linked immunosorbent assay (ELISA) at 15 months in the same animals. RESULTS: APOE2 mice (versus APOE3) showed a significant increase in glucose metabolism starting at 6 months, peaking at 9 months. No evidence of hypometabolism was apparent in any region or time point for APOE4 mice, which instead displayed a hypermetabolism at 15 months. Whole brain soluble Aβ(40) and Aβ(42) levels were not significantly different between genotypes at 15 months. CONCLUSIONS: Introduction of human APOE alleles ɛ2 and ɛ4 is sufficient to produce alterations in brain glucose metabolism in comparison to the control allele ɛ3, without a concomitant alteration in Aβ(40) and Aβ(42) levels. These results suggest novel Aβ-independent metabolic phenotypes conferred by ɛ2 and ɛ4 alleles and have important implications for preclinical studies using TR-mice. IOS Press 2017-11-16 /pmc/articles/PMC6159693/ /pubmed/30480236 http://dx.doi.org/10.3233/ADR-170006 Text en © 2017 – IOS Press and the authors. All rights reserved https://creativecommons.org/licenses/by-nc/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution Non-Commercial (CC BY-NC 4.0) License (https://creativecommons.org/licenses/by-nc/4.0/) , which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Venzi, Marcello
Tóth, Miklós
Häggkvist, Jenny
Bogstedt, Anna
Rachalski, Adeline
Mattsson, Anna
Frumento, Paolo
Farde, Lars
Differential Effect of APOE Alleles on Brain Glucose Metabolism in Targeted Replacement Mice: An [(18)F]FDG-μPET Study
title Differential Effect of APOE Alleles on Brain Glucose Metabolism in Targeted Replacement Mice: An [(18)F]FDG-μPET Study
title_full Differential Effect of APOE Alleles on Brain Glucose Metabolism in Targeted Replacement Mice: An [(18)F]FDG-μPET Study
title_fullStr Differential Effect of APOE Alleles on Brain Glucose Metabolism in Targeted Replacement Mice: An [(18)F]FDG-μPET Study
title_full_unstemmed Differential Effect of APOE Alleles on Brain Glucose Metabolism in Targeted Replacement Mice: An [(18)F]FDG-μPET Study
title_short Differential Effect of APOE Alleles on Brain Glucose Metabolism in Targeted Replacement Mice: An [(18)F]FDG-μPET Study
title_sort differential effect of apoe alleles on brain glucose metabolism in targeted replacement mice: an [(18)f]fdg-μpet study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6159693/
https://www.ncbi.nlm.nih.gov/pubmed/30480236
http://dx.doi.org/10.3233/ADR-170006
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