Amyloid fibrils are highly ordered protein aggregates that are associated with several pathological processes, including prion propagation and Alzheimer's disease. A key issue in amyloid science is the need to understand the mechanical properties of amyloid fibrils and fibers to quantify biomechanical interactions with surrounding tissues, and to identify mechanobiological mechanisms associated with changes of material properties as amyloid fibrils grow from nanoscale to microscale structures. Here we report a series of computational studies in which atomistic simulation, elastic network modeling, and finite element simulation are utilized to elucidate the mechanical properties of Alzheimer's Aβ(1-40) amyloid fibrils as a function of the le...
ga sue al in rop w rop ym ctio i ar the igid nan ges eir the ting he pa owt Amyloid fibrils are high...
Abstract Prion fibrils, which are a hallmark for neurodegenerative diseases, have recently been foun...
International audienceWe reveal that the axial stiffness of amyloid fibrils is inversely correlated ...
AbstractAmyloid fibrils are highly ordered protein aggregates that are associated with several patho...
Amyloid fibrils and plaques are detected in the brain tissue of patients affected by Alzheimerȁ...
Amyloid fibrils and plaques are detected in the brain tissue of patients affected by Alzheimer’s dis...
Amyloid fibril formation, believed to be a generic property of polypeptides, plays major roles in ne...
Amyloid fibril formation and characterization are crucial due to their association with severe degen...
Accumulation and aggregation of amyloid are associated with the pathogenesis of many human diseases,...
Amyloids are highly organized protein filaments, rich in β-sheet secondary structures that self-asse...
We perform molecular dynamics simulation on several relevant biological fibrils associated with neur...
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...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
ga sue al in rop w rop ym ctio i ar the igid nan ges eir the ting he pa owt Amyloid fibrils are high...
Abstract Prion fibrils, which are a hallmark for neurodegenerative diseases, have recently been foun...
International audienceWe reveal that the axial stiffness of amyloid fibrils is inversely correlated ...
AbstractAmyloid fibrils are highly ordered protein aggregates that are associated with several patho...
Amyloid fibrils and plaques are detected in the brain tissue of patients affected by Alzheimerȁ...
Amyloid fibrils and plaques are detected in the brain tissue of patients affected by Alzheimer’s dis...
Amyloid fibril formation, believed to be a generic property of polypeptides, plays major roles in ne...
Amyloid fibril formation and characterization are crucial due to their association with severe degen...
Accumulation and aggregation of amyloid are associated with the pathogenesis of many human diseases,...
Amyloids are highly organized protein filaments, rich in β-sheet secondary structures that self-asse...
We perform molecular dynamics simulation on several relevant biological fibrils associated with neur...
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...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
ga sue al in rop w rop ym ctio i ar the igid nan ges eir the ting he pa owt Amyloid fibrils are high...
Abstract Prion fibrils, which are a hallmark for neurodegenerative diseases, have recently been foun...
International audienceWe reveal that the axial stiffness of amyloid fibrils is inversely correlated ...