Collagen (type I from calf skin) adsorption on polystyrene (PS) and plasma-oxidized polystyrene (PSox) was studied, using a quartz crystal microbalance with energy dissipation measurements (QCM-D) and atomic force microscopy (AFM) in tapping mode. Radio-labeled collagen was used to measure the adsorbed amount and the ability of adsorbed collagen to exchange with molecules in the solution. The results show that the collagen adlayer consists of two parts: a dense and thin sheet in which fibrils are formed (directly observed by AFM) and an overlying thick layer (up to 200 nm) containing protruding molecules or bundles which are in very low concentration but modify noticeably the local viscosity. The thickness and viscosity of the semi-liquid a...
Atomic force microscopy (AFM) has been used to investigate the organization of the collagen layer pr...
In the last years, adsorbed collagen was shown to form layers with a supramolecular organization dep...
The aim of this work is to achieve a better understanding of the nanoscale organization of adsorbed ...
Adsorption (at 37 degrees C) of type I collagen, in native and heat-denatured (30 min at 40 and 90 d...
Adsorption of collagen on polystyrene (PS) and plasma-oxidized PS (PSox) was investigated using atom...
The aim of this work is to better understand the factors and mechanisms leading to the supramolecula...
The adsorption of collagen on polystyrene (PS) and polystyrene oxidized by oxygen plasma discharge (...
The adsorption of collagen (type I from calf skin) was studied, comparing different collagen sources...
Patterned collagen layers, showing a net-like structure with nanometer-scale dimensions, were obtain...
Atomic force microscopy (AFM) imaging and force-distance curves have been used to investigate, in si...
The supramolecular organization of collagen adsorbed from a 7 microg/ml solution on polystyrene was ...
Adsorption of collagen (300 nm length, 1.5 nm diameter) on poly(ethylene terephthalate) and the infl...
To evaluate the influence of substratum surface characteristics on protein adsorption processes, we ...
The collagen layer formed by adsorption of collagen on native (PETn) and surface oxidized poly(ethyl...
Atomic force microscopy (AFM) was used to study the competitive adsorption between bovine serum albu...
Atomic force microscopy (AFM) has been used to investigate the organization of the collagen layer pr...
In the last years, adsorbed collagen was shown to form layers with a supramolecular organization dep...
The aim of this work is to achieve a better understanding of the nanoscale organization of adsorbed ...
Adsorption (at 37 degrees C) of type I collagen, in native and heat-denatured (30 min at 40 and 90 d...
Adsorption of collagen on polystyrene (PS) and plasma-oxidized PS (PSox) was investigated using atom...
The aim of this work is to better understand the factors and mechanisms leading to the supramolecula...
The adsorption of collagen on polystyrene (PS) and polystyrene oxidized by oxygen plasma discharge (...
The adsorption of collagen (type I from calf skin) was studied, comparing different collagen sources...
Patterned collagen layers, showing a net-like structure with nanometer-scale dimensions, were obtain...
Atomic force microscopy (AFM) imaging and force-distance curves have been used to investigate, in si...
The supramolecular organization of collagen adsorbed from a 7 microg/ml solution on polystyrene was ...
Adsorption of collagen (300 nm length, 1.5 nm diameter) on poly(ethylene terephthalate) and the infl...
To evaluate the influence of substratum surface characteristics on protein adsorption processes, we ...
The collagen layer formed by adsorption of collagen on native (PETn) and surface oxidized poly(ethyl...
Atomic force microscopy (AFM) was used to study the competitive adsorption between bovine serum albu...
Atomic force microscopy (AFM) has been used to investigate the organization of the collagen layer pr...
In the last years, adsorbed collagen was shown to form layers with a supramolecular organization dep...
The aim of this work is to achieve a better understanding of the nanoscale organization of adsorbed ...