The pathological hallmark of misfolded protein diseases and aging is the accumulation of proteotoxic aggregates. However, the mechanisms of proteotoxicity and the dynamic changes in fiber formation and dissemination remain unclear, preventing a cure. Here we adopted a reductionist approach and used atomic force microscopy to define the temporal and spatial changes of amyloid aggregates, their modes of dissemination and the biochemical changes that may influence their growth. We show that pre-amyloid oligomers (PAO) mature to form linear and circular protofibrils, and amyloid fibers, and those can break reforming PAO that can migrate invading neighbor structures. Simulating the effect of immunotherapy modifies the dynamics of PAO formation. ...
AbstractAmyloidosis is a class of diseases caused by protein aggregation and deposition in various t...
AbstractThe mechanisms linking deposits of insoluble amyloid fibrils to the debilitating neuronal ce...
Deposition of protein fibers with a characteristic cross-β sheet structure is the molecular marker a...
The pathological hallmark of misfolded protein diseases and aging is the accumulation of proteotoxic...
The pathological hallmark of misfolded protein diseases and aging is the accumulation of proteotoxic...
Growth and deposition of amyloid fibrils, polymers of proteins with a cross beta-sheet structure, ar...
The formation of amyloid fibres is a hallmark of amyloid disorders. Nevertheless, the lack of correl...
Amyloid fibres are proteinaceous aggregates associated with several human diseases, including Alzhei...
Amyloid fibrils are misfolded proteins that are irreversible once they are formed. In human beings, ...
The inability of a protein to adopt its native and soluble conformation (protein misfolding) is the ...
Protein aggregation is associated with neurodegenerative disorders such as Alzheimer's and Parkinson...
Proteopathies are a large and diverse group of human diseases that are caused by protein misfolding....
The amyloidoses constitute a large group of diseases caused by an alteration in the conformation and...
Amyloid fibers are associated with disease but have little chemical reactivity. We investigated the ...
In almost a century of scientific work on the mechanism of amyloid diseases much of the attention ha...
AbstractAmyloidosis is a class of diseases caused by protein aggregation and deposition in various t...
AbstractThe mechanisms linking deposits of insoluble amyloid fibrils to the debilitating neuronal ce...
Deposition of protein fibers with a characteristic cross-β sheet structure is the molecular marker a...
The pathological hallmark of misfolded protein diseases and aging is the accumulation of proteotoxic...
The pathological hallmark of misfolded protein diseases and aging is the accumulation of proteotoxic...
Growth and deposition of amyloid fibrils, polymers of proteins with a cross beta-sheet structure, ar...
The formation of amyloid fibres is a hallmark of amyloid disorders. Nevertheless, the lack of correl...
Amyloid fibres are proteinaceous aggregates associated with several human diseases, including Alzhei...
Amyloid fibrils are misfolded proteins that are irreversible once they are formed. In human beings, ...
The inability of a protein to adopt its native and soluble conformation (protein misfolding) is the ...
Protein aggregation is associated with neurodegenerative disorders such as Alzheimer's and Parkinson...
Proteopathies are a large and diverse group of human diseases that are caused by protein misfolding....
The amyloidoses constitute a large group of diseases caused by an alteration in the conformation and...
Amyloid fibers are associated with disease but have little chemical reactivity. We investigated the ...
In almost a century of scientific work on the mechanism of amyloid diseases much of the attention ha...
AbstractAmyloidosis is a class of diseases caused by protein aggregation and deposition in various t...
AbstractThe mechanisms linking deposits of insoluble amyloid fibrils to the debilitating neuronal ce...
Deposition of protein fibers with a characteristic cross-β sheet structure is the molecular marker a...