Effect of surfaces on amyloid fibril formation.
Using atomic force microscopy (AFM) we investigated the interaction of amyloid beta (Aβ) peptide with chemically modified surfaces in order to better understand the mechanism of amyloid toxicity, which involves interaction of amyloid with cell membrane surfaces. We compared the structure and density...
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2011-01-01
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doaj-7c19ba79d9f345ac9c7bd6cfedc507a92020-11-24T21:26:37ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-01610e2595410.1371/journal.pone.0025954Effect of surfaces on amyloid fibril formation.Bradley MooresElizabeth DrolleSimon J AttwoodJanet SimonsZoya LeonenkoUsing atomic force microscopy (AFM) we investigated the interaction of amyloid beta (Aβ) peptide with chemically modified surfaces in order to better understand the mechanism of amyloid toxicity, which involves interaction of amyloid with cell membrane surfaces. We compared the structure and density of Aβ fibrils on positively and negatively charged as well as hydrophobic chemically-modified surfaces at physiologically relevant conditions. We report that due to the complex distribution of charge and hydrophobicity amyloid oligomers bind to all types of surfaces investigated (CH₃, COOH, and NH₂) although the charge and hydrophobicity of surfaces affected the structure and size of amyloid deposits as well as surface coverage. Hydrophobic surfaces promote formation of spherical amorphous clusters, while charged surfaces promote protofibril formation. We used the nonlinear Poisson-Boltzmann equation (PBE) approach to analyze the electrostatic interactions of amyloid monomers and oligomers with modified surfaces to complement our AFM data.http://europepmc.org/articles/PMC3189948?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bradley Moores Elizabeth Drolle Simon J Attwood Janet Simons Zoya Leonenko |
spellingShingle |
Bradley Moores Elizabeth Drolle Simon J Attwood Janet Simons Zoya Leonenko Effect of surfaces on amyloid fibril formation. PLoS ONE |
author_facet |
Bradley Moores Elizabeth Drolle Simon J Attwood Janet Simons Zoya Leonenko |
author_sort |
Bradley Moores |
title |
Effect of surfaces on amyloid fibril formation. |
title_short |
Effect of surfaces on amyloid fibril formation. |
title_full |
Effect of surfaces on amyloid fibril formation. |
title_fullStr |
Effect of surfaces on amyloid fibril formation. |
title_full_unstemmed |
Effect of surfaces on amyloid fibril formation. |
title_sort |
effect of surfaces on amyloid fibril formation. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2011-01-01 |
description |
Using atomic force microscopy (AFM) we investigated the interaction of amyloid beta (Aβ) peptide with chemically modified surfaces in order to better understand the mechanism of amyloid toxicity, which involves interaction of amyloid with cell membrane surfaces. We compared the structure and density of Aβ fibrils on positively and negatively charged as well as hydrophobic chemically-modified surfaces at physiologically relevant conditions. We report that due to the complex distribution of charge and hydrophobicity amyloid oligomers bind to all types of surfaces investigated (CH₃, COOH, and NH₂) although the charge and hydrophobicity of surfaces affected the structure and size of amyloid deposits as well as surface coverage. Hydrophobic surfaces promote formation of spherical amorphous clusters, while charged surfaces promote protofibril formation. We used the nonlinear Poisson-Boltzmann equation (PBE) approach to analyze the electrostatic interactions of amyloid monomers and oligomers with modified surfaces to complement our AFM data. |
url |
http://europepmc.org/articles/PMC3189948?pdf=render |
work_keys_str_mv |
AT bradleymoores effectofsurfacesonamyloidfibrilformation AT elizabethdrolle effectofsurfacesonamyloidfibrilformation AT simonjattwood effectofsurfacesonamyloidfibrilformation AT janetsimons effectofsurfacesonamyloidfibrilformation AT zoyaleonenko effectofsurfacesonamyloidfibrilformation |
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