Here we present a label-free method for studying the mechanism of surface effects on amyloid aggregation. In this method, spin-coating is used to rapidly dry samples, in a homogeneous manner, after various incubation times. This technique allows the control of important parameters for self-assembly, such as the surface concentration. Atomic force microscopy is then used to obtain high-resolution images of the morphology. While imaging under dry conditions, we show that the morphologies of self-assembled aggregates of a model amyloid-β peptide, Aβ<sub>12–28</sub>, are strongly influenced by the local surface concentration. On mica surfaces, where the peptides can freely diffuse, homogeneous, self-assembled protofibrils formed spontaneously a...
Amyloid fibrils are found in many diseases such as Alzheimer’s Disease, Parkinson’s Disease, Hunting...
<div><p>Amyloid fibrils play a crucial role in many human diseases and are found to function in a ra...
The transition of amyloidogenic species into ordered structures (i.e., prefibrillar oligomers, proto...
Amyloid fibrils spontaneously formed by the aggregation of a diverse class of polypeptides and prote...
The presence of surfaces influences the fibril formation kinetics of peptides and proteins. We prese...
The presence of surfaces influences the fibril formation kinetics of peptides and proteins. We prese...
A limitation of the amyloid hypothesis in explaining the development of neurodegenerative diseases i...
Using atomic force microscopy (AFM) we investigated the interaction of amyloid beta (Ab) (1–42) pept...
A surprising “upright” fibrilar conformation (with a height of ∼2.6 nm) was observed with <i>in situ...
The aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfolding dis...
The misfolding and subsequent assembly of proteins and peptides into insoluble amyloid structures pl...
Surfaces or interfaces are considered to be key factors in facilitating the formation of amyloid fib...
The aggregation of amyloid peptides into ordered fibrils is closely associated with many neurodegene...
AbstractThe aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfol...
The ability of short peptide fragments to self-assemble in isolation as amyloid and amyloid-like str...
Amyloid fibrils are found in many diseases such as Alzheimer’s Disease, Parkinson’s Disease, Hunting...
<div><p>Amyloid fibrils play a crucial role in many human diseases and are found to function in a ra...
The transition of amyloidogenic species into ordered structures (i.e., prefibrillar oligomers, proto...
Amyloid fibrils spontaneously formed by the aggregation of a diverse class of polypeptides and prote...
The presence of surfaces influences the fibril formation kinetics of peptides and proteins. We prese...
The presence of surfaces influences the fibril formation kinetics of peptides and proteins. We prese...
A limitation of the amyloid hypothesis in explaining the development of neurodegenerative diseases i...
Using atomic force microscopy (AFM) we investigated the interaction of amyloid beta (Ab) (1–42) pept...
A surprising “upright” fibrilar conformation (with a height of ∼2.6 nm) was observed with <i>in situ...
The aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfolding dis...
The misfolding and subsequent assembly of proteins and peptides into insoluble amyloid structures pl...
Surfaces or interfaces are considered to be key factors in facilitating the formation of amyloid fib...
The aggregation of amyloid peptides into ordered fibrils is closely associated with many neurodegene...
AbstractThe aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfol...
The ability of short peptide fragments to self-assemble in isolation as amyloid and amyloid-like str...
Amyloid fibrils are found in many diseases such as Alzheimer’s Disease, Parkinson’s Disease, Hunting...
<div><p>Amyloid fibrils play a crucial role in many human diseases and are found to function in a ra...
The transition of amyloidogenic species into ordered structures (i.e., prefibrillar oligomers, proto...