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High-resolution analytical imaging and electron holography of magnetite particles in amyloid cores of Alzheimer’s disease

Abnormal accumulation of brain metals is a key feature of Alzheimer’s disease (AD). Formation of amyloid-β plaque cores (APC) is related to interactions with biometals, especially Fe, Cu and Zn, but their particular structural associations and roles remain unclear. Using an integrative set of advanc...

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Autores principales: Plascencia-Villa, Germán, Ponce, Arturo, Collingwood, Joanna F., Arellano-Jiménez, M. Josefina, Zhu, Xiongwei, Rogers, Jack T., Betancourt, Israel, José-Yacamán, Miguel, Perry, George
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4848473/
https://www.ncbi.nlm.nih.gov/pubmed/27121137
http://dx.doi.org/10.1038/srep24873
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author Plascencia-Villa, Germán
Ponce, Arturo
Collingwood, Joanna F.
Arellano-Jiménez, M. Josefina
Zhu, Xiongwei
Rogers, Jack T.
Betancourt, Israel
José-Yacamán, Miguel
Perry, George
author_facet Plascencia-Villa, Germán
Ponce, Arturo
Collingwood, Joanna F.
Arellano-Jiménez, M. Josefina
Zhu, Xiongwei
Rogers, Jack T.
Betancourt, Israel
José-Yacamán, Miguel
Perry, George
author_sort Plascencia-Villa, Germán
collection PubMed
description Abnormal accumulation of brain metals is a key feature of Alzheimer’s disease (AD). Formation of amyloid-β plaque cores (APC) is related to interactions with biometals, especially Fe, Cu and Zn, but their particular structural associations and roles remain unclear. Using an integrative set of advanced transmission electron microscopy (TEM) techniques, including spherical aberration-corrected scanning transmission electron microscopy (Cs-STEM), nano-beam electron diffraction, electron holography and analytical spectroscopy techniques (EDX and EELS), we demonstrate that Fe in APC is present as iron oxide (Fe(3)O(4)) magnetite nanoparticles. Here we show that Fe was accumulated primarily as nanostructured particles within APC, whereas Cu and Zn were distributed through the amyloid fibers. Remarkably, these highly organized crystalline magnetite nanostructures directly bound into fibrillar Aβ showed characteristic superparamagnetic responses with saturated magnetization with circular contours, as observed for the first time by off-axis electron holography of nanometer scale particles.
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spelling pubmed-48484732016-05-04 High-resolution analytical imaging and electron holography of magnetite particles in amyloid cores of Alzheimer’s disease Plascencia-Villa, Germán Ponce, Arturo Collingwood, Joanna F. Arellano-Jiménez, M. Josefina Zhu, Xiongwei Rogers, Jack T. Betancourt, Israel José-Yacamán, Miguel Perry, George Sci Rep Article Abnormal accumulation of brain metals is a key feature of Alzheimer’s disease (AD). Formation of amyloid-β plaque cores (APC) is related to interactions with biometals, especially Fe, Cu and Zn, but their particular structural associations and roles remain unclear. Using an integrative set of advanced transmission electron microscopy (TEM) techniques, including spherical aberration-corrected scanning transmission electron microscopy (Cs-STEM), nano-beam electron diffraction, electron holography and analytical spectroscopy techniques (EDX and EELS), we demonstrate that Fe in APC is present as iron oxide (Fe(3)O(4)) magnetite nanoparticles. Here we show that Fe was accumulated primarily as nanostructured particles within APC, whereas Cu and Zn were distributed through the amyloid fibers. Remarkably, these highly organized crystalline magnetite nanostructures directly bound into fibrillar Aβ showed characteristic superparamagnetic responses with saturated magnetization with circular contours, as observed for the first time by off-axis electron holography of nanometer scale particles. Nature Publishing Group 2016-04-28 /pmc/articles/PMC4848473/ /pubmed/27121137 http://dx.doi.org/10.1038/srep24873 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Plascencia-Villa, Germán
Ponce, Arturo
Collingwood, Joanna F.
Arellano-Jiménez, M. Josefina
Zhu, Xiongwei
Rogers, Jack T.
Betancourt, Israel
José-Yacamán, Miguel
Perry, George
High-resolution analytical imaging and electron holography of magnetite particles in amyloid cores of Alzheimer’s disease
title High-resolution analytical imaging and electron holography of magnetite particles in amyloid cores of Alzheimer’s disease
title_full High-resolution analytical imaging and electron holography of magnetite particles in amyloid cores of Alzheimer’s disease
title_fullStr High-resolution analytical imaging and electron holography of magnetite particles in amyloid cores of Alzheimer’s disease
title_full_unstemmed High-resolution analytical imaging and electron holography of magnetite particles in amyloid cores of Alzheimer’s disease
title_short High-resolution analytical imaging and electron holography of magnetite particles in amyloid cores of Alzheimer’s disease
title_sort high-resolution analytical imaging and electron holography of magnetite particles in amyloid cores of alzheimer’s disease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4848473/
https://www.ncbi.nlm.nih.gov/pubmed/27121137
http://dx.doi.org/10.1038/srep24873
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