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Dielectrophoresis of Amyloid-Beta Proteins as a Microfluidic Template for Alzheimer’s Research

We employed dielectrophoresis to a yeast cell suspension containing amyloid-beta proteins (Aβ) in a microfluidic environment. The Aβ was separated from the cells and characterized using the gradual dissolution of Aβ as a function of the applied dielectrophoretic parameters. We established the gradua...

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Autores principales: Al-Ahdal, Salman Ali, Ahmad Kayani, Aminuddin Bin, Md Ali, Mohd Anuar, Chan, Jun Yuan, Ali, Talal, Adnan, Norah, Buyong, Muhamad Ramdzan, Mhd Noor, Ervina Efzan, Majlis, Burhanuddin Yeop, Sriram, Sharath
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6678832/
https://www.ncbi.nlm.nih.gov/pubmed/31340481
http://dx.doi.org/10.3390/ijms20143595
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author Al-Ahdal, Salman Ali
Ahmad Kayani, Aminuddin Bin
Md Ali, Mohd Anuar
Chan, Jun Yuan
Ali, Talal
Adnan, Norah
Buyong, Muhamad Ramdzan
Mhd Noor, Ervina Efzan
Majlis, Burhanuddin Yeop
Sriram, Sharath
author_facet Al-Ahdal, Salman Ali
Ahmad Kayani, Aminuddin Bin
Md Ali, Mohd Anuar
Chan, Jun Yuan
Ali, Talal
Adnan, Norah
Buyong, Muhamad Ramdzan
Mhd Noor, Ervina Efzan
Majlis, Burhanuddin Yeop
Sriram, Sharath
author_sort Al-Ahdal, Salman Ali
collection PubMed
description We employed dielectrophoresis to a yeast cell suspension containing amyloid-beta proteins (Aβ) in a microfluidic environment. The Aβ was separated from the cells and characterized using the gradual dissolution of Aβ as a function of the applied dielectrophoretic parameters. We established the gradual dissolution of Aβ under specific dielectrophoretic parameters. Further, Aβ in the fibril form at the tip of the electrode dissolved at high frequency. This was perhaps due to the conductivity of the suspending medium changing according to the frequency, which resulted in a higher temperature at the tips of the electrodes, and consequently in the breakdown of the hydrogen bonds. However, those shaped as spheroidal monomers experienced a delay in the Aβ fibril transformation process. Yeast cells exposed to relatively low temperatures at the base of the electrode did not experience a positive or negative change in viability. The DEP microfluidic platform incorporating the integrated microtip electrode array was able to selectively manipulate the yeast cells and dissolve the Aβ to a controlled extent. We demonstrate suitable dielectrophoretic parameters to induce such manipulation, which is highly relevant for Aβ-related colloidal microfluidic research and could be applied to Alzheimer’s research in the future.
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spelling pubmed-66788322019-08-19 Dielectrophoresis of Amyloid-Beta Proteins as a Microfluidic Template for Alzheimer’s Research Al-Ahdal, Salman Ali Ahmad Kayani, Aminuddin Bin Md Ali, Mohd Anuar Chan, Jun Yuan Ali, Talal Adnan, Norah Buyong, Muhamad Ramdzan Mhd Noor, Ervina Efzan Majlis, Burhanuddin Yeop Sriram, Sharath Int J Mol Sci Article We employed dielectrophoresis to a yeast cell suspension containing amyloid-beta proteins (Aβ) in a microfluidic environment. The Aβ was separated from the cells and characterized using the gradual dissolution of Aβ as a function of the applied dielectrophoretic parameters. We established the gradual dissolution of Aβ under specific dielectrophoretic parameters. Further, Aβ in the fibril form at the tip of the electrode dissolved at high frequency. This was perhaps due to the conductivity of the suspending medium changing according to the frequency, which resulted in a higher temperature at the tips of the electrodes, and consequently in the breakdown of the hydrogen bonds. However, those shaped as spheroidal monomers experienced a delay in the Aβ fibril transformation process. Yeast cells exposed to relatively low temperatures at the base of the electrode did not experience a positive or negative change in viability. The DEP microfluidic platform incorporating the integrated microtip electrode array was able to selectively manipulate the yeast cells and dissolve the Aβ to a controlled extent. We demonstrate suitable dielectrophoretic parameters to induce such manipulation, which is highly relevant for Aβ-related colloidal microfluidic research and could be applied to Alzheimer’s research in the future. MDPI 2019-07-23 /pmc/articles/PMC6678832/ /pubmed/31340481 http://dx.doi.org/10.3390/ijms20143595 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Al-Ahdal, Salman Ali
Ahmad Kayani, Aminuddin Bin
Md Ali, Mohd Anuar
Chan, Jun Yuan
Ali, Talal
Adnan, Norah
Buyong, Muhamad Ramdzan
Mhd Noor, Ervina Efzan
Majlis, Burhanuddin Yeop
Sriram, Sharath
Dielectrophoresis of Amyloid-Beta Proteins as a Microfluidic Template for Alzheimer’s Research
title Dielectrophoresis of Amyloid-Beta Proteins as a Microfluidic Template for Alzheimer’s Research
title_full Dielectrophoresis of Amyloid-Beta Proteins as a Microfluidic Template for Alzheimer’s Research
title_fullStr Dielectrophoresis of Amyloid-Beta Proteins as a Microfluidic Template for Alzheimer’s Research
title_full_unstemmed Dielectrophoresis of Amyloid-Beta Proteins as a Microfluidic Template for Alzheimer’s Research
title_short Dielectrophoresis of Amyloid-Beta Proteins as a Microfluidic Template for Alzheimer’s Research
title_sort dielectrophoresis of amyloid-beta proteins as a microfluidic template for alzheimer’s research
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6678832/
https://www.ncbi.nlm.nih.gov/pubmed/31340481
http://dx.doi.org/10.3390/ijms20143595
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