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Effects of ApoE4 and ApoE2 genotypes on subcortical magnetic susceptibility and microstructure in 27,535 participants from the UK Biobank()

Disrupted iron homeostasis is associated with several neurodegenerative diseases, including Alzheimer’s disease (AD), and may be partially modulated by genetic risk factors. Here we evaluated whether subcortical iron deposition is associated with ApoE genotype, which substantially affects risk for l...

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Autores principales: Nir, Talia M., Zhu, Alyssa H., Gari, Iyad Ba, Dixon, Daniel, Islam, Tasfiya, Villalon-Reina, Julio E., Medland, Sarah E., Thompson, Paul M., Jahanshad, Neda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9009383/
https://www.ncbi.nlm.nih.gov/pubmed/34890142
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author Nir, Talia M.
Zhu, Alyssa H.
Gari, Iyad Ba
Dixon, Daniel
Islam, Tasfiya
Villalon-Reina, Julio E.
Medland, Sarah E.
Thompson, Paul M.
Jahanshad, Neda
author_facet Nir, Talia M.
Zhu, Alyssa H.
Gari, Iyad Ba
Dixon, Daniel
Islam, Tasfiya
Villalon-Reina, Julio E.
Medland, Sarah E.
Thompson, Paul M.
Jahanshad, Neda
author_sort Nir, Talia M.
collection PubMed
description Disrupted iron homeostasis is associated with several neurodegenerative diseases, including Alzheimer’s disease (AD), and may be partially modulated by genetic risk factors. Here we evaluated whether subcortical iron deposition is associated with ApoE genotype, which substantially affects risk for late-onset AD. We evaluated differences in subcortical quantitative susceptibility mapping (QSM), a type of MRI sensitive to cerebral iron deposition, between either ApoE4 (E3E4+E4E4) or ApoE2 (E2E3+E2E2) carriers and E3 homozygotes (E3E3) in 27,535 participants from the UK Biobank (age: 45–82 years). We found that ApoE4 carriers had higher hippocampal (d=0.036; p=0.012) and amygdalar (d=0.035; p=0.013) magnetic susceptibility, particularly individuals aged 65 years or older, while those carrying ApoE2 (which protects against AD) had higher QSM only in the hippocampus (d=0.05; p=0.006), particularly those under age 65. Secondary diffusion MRI microstructural associations in these regions revealed greater diffusivity and less diffusion restriction in E4 carriers, however no differences were detected in E2 carriers. Disease risk conferred by ApoE4 may be linked with higher subcortical iron burden in conjunction with inflammation or neuronal loss in aging individuals, while ApoE2 associations may not necessarily reflect unhealthy iron deposits earlier in life.
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spelling pubmed-90093832023-01-01 Effects of ApoE4 and ApoE2 genotypes on subcortical magnetic susceptibility and microstructure in 27,535 participants from the UK Biobank() Nir, Talia M. Zhu, Alyssa H. Gari, Iyad Ba Dixon, Daniel Islam, Tasfiya Villalon-Reina, Julio E. Medland, Sarah E. Thompson, Paul M. Jahanshad, Neda Pac Symp Biocomput Article Disrupted iron homeostasis is associated with several neurodegenerative diseases, including Alzheimer’s disease (AD), and may be partially modulated by genetic risk factors. Here we evaluated whether subcortical iron deposition is associated with ApoE genotype, which substantially affects risk for late-onset AD. We evaluated differences in subcortical quantitative susceptibility mapping (QSM), a type of MRI sensitive to cerebral iron deposition, between either ApoE4 (E3E4+E4E4) or ApoE2 (E2E3+E2E2) carriers and E3 homozygotes (E3E3) in 27,535 participants from the UK Biobank (age: 45–82 years). We found that ApoE4 carriers had higher hippocampal (d=0.036; p=0.012) and amygdalar (d=0.035; p=0.013) magnetic susceptibility, particularly individuals aged 65 years or older, while those carrying ApoE2 (which protects against AD) had higher QSM only in the hippocampus (d=0.05; p=0.006), particularly those under age 65. Secondary diffusion MRI microstructural associations in these regions revealed greater diffusivity and less diffusion restriction in E4 carriers, however no differences were detected in E2 carriers. Disease risk conferred by ApoE4 may be linked with higher subcortical iron burden in conjunction with inflammation or neuronal loss in aging individuals, while ApoE2 associations may not necessarily reflect unhealthy iron deposits earlier in life. 2022 /pmc/articles/PMC9009383/ /pubmed/34890142 Text en https://creativecommons.org/licenses/by-nc/4.0/Open Access chapter published by World Scientific Publishing Company and distributed under the terms of the Creative Commons Attribution Non-Commercial (CC BY-NC) 4.0 License.
spellingShingle Article
Nir, Talia M.
Zhu, Alyssa H.
Gari, Iyad Ba
Dixon, Daniel
Islam, Tasfiya
Villalon-Reina, Julio E.
Medland, Sarah E.
Thompson, Paul M.
Jahanshad, Neda
Effects of ApoE4 and ApoE2 genotypes on subcortical magnetic susceptibility and microstructure in 27,535 participants from the UK Biobank()
title Effects of ApoE4 and ApoE2 genotypes on subcortical magnetic susceptibility and microstructure in 27,535 participants from the UK Biobank()
title_full Effects of ApoE4 and ApoE2 genotypes on subcortical magnetic susceptibility and microstructure in 27,535 participants from the UK Biobank()
title_fullStr Effects of ApoE4 and ApoE2 genotypes on subcortical magnetic susceptibility and microstructure in 27,535 participants from the UK Biobank()
title_full_unstemmed Effects of ApoE4 and ApoE2 genotypes on subcortical magnetic susceptibility and microstructure in 27,535 participants from the UK Biobank()
title_short Effects of ApoE4 and ApoE2 genotypes on subcortical magnetic susceptibility and microstructure in 27,535 participants from the UK Biobank()
title_sort effects of apoe4 and apoe2 genotypes on subcortical magnetic susceptibility and microstructure in 27,535 participants from the uk biobank()
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9009383/
https://www.ncbi.nlm.nih.gov/pubmed/34890142
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