The presence of surfaces influences the kinetics of amyloid-β (Aβ) peptide fibrillation. Although it has been generally recognized that the fibrillation process can be assisted or accelerated by surface chemistry, the impact of surface topography, i.e., roughness, on peptide fibrillation is relatively little understood. Here we study the role of surface roughness on surface-mediated fibrillation using polymer coatings of varying roughness as well as polymer microparticles. Using single-molecule tracking, atomic force microscopy, and the thioflavin T fluorescence technique, we show that a rough surface decelerates the two-dimensional (2D) diffusion of peptides and retards the surface-mediated fibrillation. A higher degree of roughness that p...
AbstractThe aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfol...
The formation of dense, linear arrays (fibrils) by biomolecules is the hallmark of a number of degen...
The causes of pathological conditions such as Alzheimer’s and Parkinson’s diseases are becoming be...
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 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 aggregation of peptides into amyloid fibrils plays a crucial role in various neurodegenerative d...
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...
Surfaces or interfaces are considered to be key factors in facilitating the formation of amyloid fib...
Here we present a label-free method for studying the mechanism of surface effects on amyloid aggrega...
Using atomic force microscopy (AFM) we investigated the interaction of amyloid beta (Ab) (1–42) pept...
The aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfolding dis...
AbstractThe aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfol...
The formation of dense, linear arrays (fibrils) by biomolecules is the hallmark of a number of degen...
The causes of pathological conditions such as Alzheimer’s and Parkinson’s diseases are becoming be...
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 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 aggregation of peptides into amyloid fibrils plays a crucial role in various neurodegenerative d...
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...
Surfaces or interfaces are considered to be key factors in facilitating the formation of amyloid fib...
Here we present a label-free method for studying the mechanism of surface effects on amyloid aggrega...
Using atomic force microscopy (AFM) we investigated the interaction of amyloid beta (Ab) (1–42) pept...
The aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfolding dis...
AbstractThe aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfol...
The formation of dense, linear arrays (fibrils) by biomolecules is the hallmark of a number of degen...
The causes of pathological conditions such as Alzheimer’s and Parkinson’s diseases are becoming be...