Amyloid fibrils, which are closely associated with various neurodegenerative diseases, are the final products in many protein aggregation pathways. The identification of fibrils at low concentration is, therefore, pivotal in disease diagnosis and development of therapeutic strategies. We report a methodology for the specific identification of amyloid fibrils using chiroptical effects in plasmonic nanoparticles. The formation of amyloid fibrils based on α-synuclein was probed using gold nanorods, which showed no apparent interaction with monomeric proteins but effective adsorption onto fibril structures via noncovalent interactions. The amyloid structure drives a helical nanorod arrangement, resulting in intense optical activity at the surfa...
The development of various degenerative diseases is suggested to be triggered by the uncontrolled or...
Nanoparticles have repeatedly been shown to enhance fibril formation when assayed with amyloidogenic...
We propose the application of a new label-free optical technique based on photonic nanostructures to...
Las fibrillas amiloides, que están estrechamente asociadas con varias enfermedades neurodegenerativa...
Plasmonic nanoparticles, due to their sensitivity to small changes in their closest environment and ...
Early stage detection of neurodegenerative diseases such as Alzheimer's disease (AD) is of utmost im...
Despite their link to neurodegenerative diseases, amyloids of natural and synthetic sources can also...
11 pags., 7 figs.Plasmon-assisted effects were used in this work to study the dynamical behavior of ...
This thesis explores the potential of chiral plasmonic nanostructures for the ultrasensitive detecti...
Protein/Peptide amyloidosis is the main cause of several diseases, such as neurodegenerative disease...
Propagation of small amyloid beta (Aβ) aggregates (or seeds) has been suggested as a potential mecha...
Increasing evidence suggests that amyloid polymorphism gives rise to different strains of amyloids w...
Nanoscale optical labeling is an advanced bioimaging tool. It is mostly based on fluorescence (FL) p...
International audienceGadolinium-based nanoparticles were functionalized with either the Pittsburgh ...
In order to demonstrate the influence of the surface chirality of the nanoparticles on amyloid fibri...
The development of various degenerative diseases is suggested to be triggered by the uncontrolled or...
Nanoparticles have repeatedly been shown to enhance fibril formation when assayed with amyloidogenic...
We propose the application of a new label-free optical technique based on photonic nanostructures to...
Las fibrillas amiloides, que están estrechamente asociadas con varias enfermedades neurodegenerativa...
Plasmonic nanoparticles, due to their sensitivity to small changes in their closest environment and ...
Early stage detection of neurodegenerative diseases such as Alzheimer's disease (AD) is of utmost im...
Despite their link to neurodegenerative diseases, amyloids of natural and synthetic sources can also...
11 pags., 7 figs.Plasmon-assisted effects were used in this work to study the dynamical behavior of ...
This thesis explores the potential of chiral plasmonic nanostructures for the ultrasensitive detecti...
Protein/Peptide amyloidosis is the main cause of several diseases, such as neurodegenerative disease...
Propagation of small amyloid beta (Aβ) aggregates (or seeds) has been suggested as a potential mecha...
Increasing evidence suggests that amyloid polymorphism gives rise to different strains of amyloids w...
Nanoscale optical labeling is an advanced bioimaging tool. It is mostly based on fluorescence (FL) p...
International audienceGadolinium-based nanoparticles were functionalized with either the Pittsburgh ...
In order to demonstrate the influence of the surface chirality of the nanoparticles on amyloid fibri...
The development of various degenerative diseases is suggested to be triggered by the uncontrolled or...
Nanoparticles have repeatedly been shown to enhance fibril formation when assayed with amyloidogenic...
We propose the application of a new label-free optical technique based on photonic nanostructures to...