Surfaces or interfaces are considered to be key factors in facilitating the formation of amyloid fibrils under physiological conditions. In this report, we study the kinetics of the surface-mediated fibrillization (SMF) of an amyloid-β fragment (Aβ<sub>12–28</sub>) on mica. We employ a spin-coating-based drying procedure to control the exposure time of the substrate to a low-concentration peptide solution and then monitor the fibril growth as a function of time via atomic force microscopy (AFM). The evolution of surface-mediated fibril growth is quantitatively characterized in terms of the length histogram of imaged fibrils and their surface concentration. A two-dimensional (2D) kinetic model is proposed to numerically simulate the length e...
The aggregation of peptides into amyloid fibrils plays a crucial role in various neurodegenerative d...
The causes of pathological conditions such as Alzheimer’s and Parkinson’s diseases are becoming be...
AbstractSpontaneous conversion of beta-amyloid peptide (Aβ) from soluble monomer to insoluble fibril...
Amyloid fibrils spontaneously formed by the aggregation of a diverse class of polypeptides and prote...
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...
Here we present a label-free method for studying the mechanism of surface effects on amyloid aggrega...
The aggregation of peptides into amyloid fibrils plays a crucial role in various neurodegenerative d...
The aggregation of peptides into amyloid fibrils plays a crucial role in various neurodegenerative d...
The aggregation of peptides into amyloid fibrils plays a crucial role in various neurodegenerative d...
The presence of surfaces influences the kinetics of amyloid-β (Aβ) peptide fibrillation. Although it...
The aggregation of peptides into amyloid fibrils plays a crucial role in various neurodegenerative d...
The presence of surfaces influences the kinetics of amyloid-β (Aβ) peptide fibrillation. Although it...
Amyloid fibrils spontaneously formed by the aggregation of a diverse class of polypeptides and prote...
The aggregation of peptides into amyloid fibrils plays a crucial role in various neurodegenerative d...
The causes of pathological conditions such as Alzheimer’s and Parkinson’s diseases are becoming be...
AbstractSpontaneous conversion of beta-amyloid peptide (Aβ) from soluble monomer to insoluble fibril...
Amyloid fibrils spontaneously formed by the aggregation of a diverse class of polypeptides and prote...
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...
Here we present a label-free method for studying the mechanism of surface effects on amyloid aggrega...
The aggregation of peptides into amyloid fibrils plays a crucial role in various neurodegenerative d...
The aggregation of peptides into amyloid fibrils plays a crucial role in various neurodegenerative d...
The aggregation of peptides into amyloid fibrils plays a crucial role in various neurodegenerative d...
The presence of surfaces influences the kinetics of amyloid-β (Aβ) peptide fibrillation. Although it...
The aggregation of peptides into amyloid fibrils plays a crucial role in various neurodegenerative d...
The presence of surfaces influences the kinetics of amyloid-β (Aβ) peptide fibrillation. Although it...
Amyloid fibrils spontaneously formed by the aggregation of a diverse class of polypeptides and prote...
The aggregation of peptides into amyloid fibrils plays a crucial role in various neurodegenerative d...
The causes of pathological conditions such as Alzheimer’s and Parkinson’s diseases are becoming be...
AbstractSpontaneous conversion of beta-amyloid peptide (Aβ) from soluble monomer to insoluble fibril...