We report on the use of three different atomic force spectroscopy modalities to determine the nanomechanical properties of amyloid fibrils of the human α-synuclein protein. α-Synuclein forms fibrillar nanostructures of approximately 10 nm diameter and lengths ranging from 100 nm to several microns, which have been associated with Parkinson's disease. Atomic force microscopy (AFM) has been used to image the morphology of these protein fibrils deposited on a flat surface. For nanomechanical measurements, we used single-point nanoindentation, in which the AFM tip as the indenter is moved vertically to the fibril surface and back while the force is being recorded. We also used two recently developed AFM surface property mapping techniques: Harm...
Atomic force microscopy (AFM) is widely used to measure morphological and mechanical properties of b...
The aggregation of amyloid-β peptides into protein fibres is one of the main neuropathological featu...
The assessment of nanomechanical properties of a single amyloid fibril in a confined space provides ...
We report on the use of three different atomic force spectroscopy modalities to determine the nanome...
ABSTRACT: We report on the use of three different atomic force spectroscopy modalities to determine ...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
We have used atomic force microscopy (AFM) to image wild-type and disease-related mutant α-synuclein...
We have used atomic force microscopy (AFM) to image wild-type and disease-related mutant α-synuclein...
The aggregation of proteins into fibrillar structures called amyloid is a characteristic of many dis...
The aggregation of proteins into fibrillar structures called amyloid is a characteristic of many dis...
We report the investigation of the mechanical properties of different types of amyloid fibrils by th...
Atomic force microscopy (AFM) is widely used to measure morphological and mechanical properties of b...
Item does not contain fulltextAtomic force microscopy (AFM) is widely used to measure morphological ...
A number of proteins form supramolecular protein aggregates called amyloid fibrils which self-assemb...
Atomic force microscopy (AFM) is widely used to measure morphological and mechanical properties of b...
The aggregation of amyloid-β peptides into protein fibres is one of the main neuropathological featu...
The assessment of nanomechanical properties of a single amyloid fibril in a confined space provides ...
We report on the use of three different atomic force spectroscopy modalities to determine the nanome...
ABSTRACT: We report on the use of three different atomic force spectroscopy modalities to determine ...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
Amyloid fibrils are traditionally associated with neurodegenerative diseases like Alzheimer's diseas...
We have used atomic force microscopy (AFM) to image wild-type and disease-related mutant α-synuclein...
We have used atomic force microscopy (AFM) to image wild-type and disease-related mutant α-synuclein...
The aggregation of proteins into fibrillar structures called amyloid is a characteristic of many dis...
The aggregation of proteins into fibrillar structures called amyloid is a characteristic of many dis...
We report the investigation of the mechanical properties of different types of amyloid fibrils by th...
Atomic force microscopy (AFM) is widely used to measure morphological and mechanical properties of b...
Item does not contain fulltextAtomic force microscopy (AFM) is widely used to measure morphological ...
A number of proteins form supramolecular protein aggregates called amyloid fibrils which self-assemb...
Atomic force microscopy (AFM) is widely used to measure morphological and mechanical properties of b...
The aggregation of amyloid-β peptides into protein fibres is one of the main neuropathological featu...
The assessment of nanomechanical properties of a single amyloid fibril in a confined space provides ...