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How Can Static and Oscillating Electric Fields Serve in Decomposing Alzheimer’s and Other Senile Plaques?

[Image: see text] Alzheimer’s disease is one of the most common neurodegenerative conditions, which are ascribed to extracellular accumulation of β-amyloid peptides into plaques. This phenomenon seems to typify other related neurodegenerative diseases. The present study uses classical molecular-dyna...

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Autores principales: Kalita, Surajit, Bergman, Hagai, Dubey, Kshatresh Dutta, Shaik, Sason
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9936589/
https://www.ncbi.nlm.nih.gov/pubmed/36735972
http://dx.doi.org/10.1021/jacs.2c12305
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author Kalita, Surajit
Bergman, Hagai
Dubey, Kshatresh Dutta
Shaik, Sason
author_facet Kalita, Surajit
Bergman, Hagai
Dubey, Kshatresh Dutta
Shaik, Sason
author_sort Kalita, Surajit
collection PubMed
description [Image: see text] Alzheimer’s disease is one of the most common neurodegenerative conditions, which are ascribed to extracellular accumulation of β-amyloid peptides into plaques. This phenomenon seems to typify other related neurodegenerative diseases. The present study uses classical molecular-dynamics simulations to decipher the aggregation–disintegration behavior of β-amyloid peptide plaques in the presence of static and oscillating oriented external electric fields (OEEFs). A long-term disintegration of such plaques is highly desirable since this may improve the prospects of therapeutic treatments of Alzheimer’s disease and of other neurodegenerative diseases typified by senile plaques. Our study illustrates the spontaneous aggregation of the β-amyloid, its prevention and breakdown when OEEF is applied, and the fate of the broken aggregate when the OEEF is removed. Notably, we demonstrate that the usage of an oscillating OEEF on β-amyloid aggregates appears to lead to an irreversible disintegration. Insight is provided into the root causes of the various modes of aggregation, as well as into the different fates of OEEF-induced disintegration in oscillating vs static fields. Finally, our simulation results are compared to the well-established TTFields and the Deep Brain Stimulation (DBS) therapies, which are currently used options for treatments of Alzheimer’s disease and other related neurodegenerative diseases.
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spelling pubmed-99365892023-02-18 How Can Static and Oscillating Electric Fields Serve in Decomposing Alzheimer’s and Other Senile Plaques? Kalita, Surajit Bergman, Hagai Dubey, Kshatresh Dutta Shaik, Sason J Am Chem Soc [Image: see text] Alzheimer’s disease is one of the most common neurodegenerative conditions, which are ascribed to extracellular accumulation of β-amyloid peptides into plaques. This phenomenon seems to typify other related neurodegenerative diseases. The present study uses classical molecular-dynamics simulations to decipher the aggregation–disintegration behavior of β-amyloid peptide plaques in the presence of static and oscillating oriented external electric fields (OEEFs). A long-term disintegration of such plaques is highly desirable since this may improve the prospects of therapeutic treatments of Alzheimer’s disease and of other neurodegenerative diseases typified by senile plaques. Our study illustrates the spontaneous aggregation of the β-amyloid, its prevention and breakdown when OEEF is applied, and the fate of the broken aggregate when the OEEF is removed. Notably, we demonstrate that the usage of an oscillating OEEF on β-amyloid aggregates appears to lead to an irreversible disintegration. Insight is provided into the root causes of the various modes of aggregation, as well as into the different fates of OEEF-induced disintegration in oscillating vs static fields. Finally, our simulation results are compared to the well-established TTFields and the Deep Brain Stimulation (DBS) therapies, which are currently used options for treatments of Alzheimer’s disease and other related neurodegenerative diseases. American Chemical Society 2023-02-03 /pmc/articles/PMC9936589/ /pubmed/36735972 http://dx.doi.org/10.1021/jacs.2c12305 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Kalita, Surajit
Bergman, Hagai
Dubey, Kshatresh Dutta
Shaik, Sason
How Can Static and Oscillating Electric Fields Serve in Decomposing Alzheimer’s and Other Senile Plaques?
title How Can Static and Oscillating Electric Fields Serve in Decomposing Alzheimer’s and Other Senile Plaques?
title_full How Can Static and Oscillating Electric Fields Serve in Decomposing Alzheimer’s and Other Senile Plaques?
title_fullStr How Can Static and Oscillating Electric Fields Serve in Decomposing Alzheimer’s and Other Senile Plaques?
title_full_unstemmed How Can Static and Oscillating Electric Fields Serve in Decomposing Alzheimer’s and Other Senile Plaques?
title_short How Can Static and Oscillating Electric Fields Serve in Decomposing Alzheimer’s and Other Senile Plaques?
title_sort how can static and oscillating electric fields serve in decomposing alzheimer’s and other senile plaques?
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9936589/
https://www.ncbi.nlm.nih.gov/pubmed/36735972
http://dx.doi.org/10.1021/jacs.2c12305
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