peer reviewedAbstract Nanomechanical properties of amyloid fibrils and nanocrystals depend on their secondary and quaternary structure, and the geometry of intermolecular hydrogen bonds. Advanced imaging methods based on atomic force microscopy (AFM) have unravelled the morphological and mechanical heterogeneity of amyloids, however a full understanding has been hampered by the limited resolution of conventional spectroscopic methods. Here, it is shown that single molecule nanomechanical mapping and infrared nanospectroscopy (AFM-IR) in combination with atomistic modelling enable unravelling at the single aggregate scale of the morphological, nanomechanical, chemical, and structural transition from amyloid fibrils to amyloid microcrystals i...
Amyloid fibril formation, believed to be a generic property of polypeptides, plays major roles in ne...
Amyloid fibril formation, believed to be a generic property of polypeptides, plays major roles in ne...
Amyloids are insoluble protein fibrillar aggregates. The importance of characterizing their aggregat...
peer reviewedAbstract Nanomechanical properties of amyloid fibrils and nanocrystals depend on their ...
Nanomechanical properties of amyloid fibrils and nanocrystals depend on their secondary and quaterna...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
AbstractMany proteins of diverse sequence, structure and function self-assemble into morphologically...
Amyloids are highly organized protein filaments, rich in β-sheet secondary structures that self-asse...
AbstractAmyloid fibrils are highly ordered protein aggregates that are associated with several patho...
Amyloid fibril formation, believed to be a generic property of polypeptides, plays major roles in ne...
Amyloid fibril formation, believed to be a generic property of polypeptides, plays major roles in ne...
Amyloids are insoluble protein fibrillar aggregates. The importance of characterizing their aggregat...
peer reviewedAbstract Nanomechanical properties of amyloid fibrils and nanocrystals depend on their ...
Nanomechanical properties of amyloid fibrils and nanocrystals depend on their secondary and quaterna...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
AbstractMany proteins of diverse sequence, structure and function self-assemble into morphologically...
Amyloids are highly organized protein filaments, rich in β-sheet secondary structures that self-asse...
AbstractAmyloid fibrils are highly ordered protein aggregates that are associated with several patho...
Amyloid fibril formation, believed to be a generic property of polypeptides, plays major roles in ne...
Amyloid fibril formation, believed to be a generic property of polypeptides, plays major roles in ne...
Amyloids are insoluble protein fibrillar aggregates. The importance of characterizing their aggregat...