The causes of pathological conditions such as Alzheimer’s and Parkinson’s diseases are becoming better understood. Proteins that misfold from their native structure to form aggregates of β-sheet fibrils — termed amyloid — are known1,2 to be implicated in these ‘amyloid diseases’. Understanding the early steps of fibril formation is critical, and the conditions, mechanism and kinetics of protein and peptide aggregation are being widely investigated through a variety of in vitro studies. Kinetic aspects of the dispersion of the protein or peptide in solution are thought to influence the fibrillization process by mass-transfer effects. In addition, mixing also leads to shear forces, which can influence fibril growth by pertur...
Formation of large fibers and plaques by amyloid proteins is recognized as the molecular hallmark of...
Formation of large fibers and plaques by amyloid proteins is recognized as the molecular hallmark of...
AbstractAmyloid fibril formation is a distinctive hallmark of a number of degenerative diseases. In ...
Proteins play a critical role in living systems by performing most of the functions inside cells. Th...
AbstractThe aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfol...
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...
Misfolding and accumulation of insoluble protein aggregates in the form of amyloid fibrils is assoc...
AbstractThe aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfol...
The aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfolding dis...
An abnormal dependence of the rate of amyloid formation on protein concentration has been recently o...
AbstractThe amphipathicity of the natively unstructured amyloid-β (Aβ40) peptide may play an importa...
Most in vitro investigations of α-Synuclein (αSyn) aggregation and amyloidogenesis use agitation in ...
Amyloid formation and accumulation is a hallmark of protein misfolding diseases and is associated wi...
The misfolding of specific proteins is often associated with their assembly into fibrillar aggregate...
Formation of large fibers and plaques by amyloid proteins is recognized as the molecular hallmark of...
Formation of large fibers and plaques by amyloid proteins is recognized as the molecular hallmark of...
AbstractAmyloid fibril formation is a distinctive hallmark of a number of degenerative diseases. In ...
Proteins play a critical role in living systems by performing most of the functions inside cells. Th...
AbstractThe aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfol...
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...
Misfolding and accumulation of insoluble protein aggregates in the form of amyloid fibrils is assoc...
AbstractThe aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfol...
The aggregation of proteins or peptides into amyloid fibrils is a hallmark of protein misfolding dis...
An abnormal dependence of the rate of amyloid formation on protein concentration has been recently o...
AbstractThe amphipathicity of the natively unstructured amyloid-β (Aβ40) peptide may play an importa...
Most in vitro investigations of α-Synuclein (αSyn) aggregation and amyloidogenesis use agitation in ...
Amyloid formation and accumulation is a hallmark of protein misfolding diseases and is associated wi...
The misfolding of specific proteins is often associated with their assembly into fibrillar aggregate...
Formation of large fibers and plaques by amyloid proteins is recognized as the molecular hallmark of...
Formation of large fibers and plaques by amyloid proteins is recognized as the molecular hallmark of...
AbstractAmyloid fibril formation is a distinctive hallmark of a number of degenerative diseases. In ...