In general, there is a need for passivation of nanopatterned biomaterial surfaces if cells are intended to interact only with a feature of interest. For this reason self-assembled monolayers (SAM), varying in chain length, are used; they are highly effective in preventing protein adsorption or cell adhesion. In addition, a simple and cost-effective technique to design nanopatterns of various sizes and distances, the so-called nanosphere lithography (NSL), is discussed, which allows the control of cell adhesion and growth depending on the feature dimensions. Combining both techniques results in highly selective nanostructured surfaces, showing that single proteins selectively adsorb on activated nanopatterns. Additionally, adhesion and growt...
In this paper, we report the initial response of 3T3 fibroblast and MG63 osteoblast cells to enginee...
Surface nanotopography is widely employed to control cell behavior and in particular controlled diso...
Surface modification plays a vital role in regulating protein adsorption and subsequently cell adhes...
The coating of substrates with an extracellular matrix (ECM) protein, such as fibronectin (FN), is o...
The coating of substrates with an extracellular matrix (ECM) protein, such as fibronectin (FN), is o...
PURPOSE: It is known that surface nanotopography influences cell adhesion and differentiation. Our a...
[EN] Purpose: It is known that surface nanotopography influences cell adhesion and differentiation. ...
Cell adhesion to extracellular matrix is an important process for both health and disease states. Su...
Surface nanotopography is widely employed to control cell behavior and in particular controlled diso...
Nanosphere lithography (NSL) and the layer-by-layer (LbL) technique are combined here for the first ...
Cell adhesion to extracellular matrix is an important process for both health and disease states. Su...
ABSTRACT Although molecular and physical mechanisms of fibroblast matrix assembly have been widely i...
The ability to control cell adhesion on material surfaces is critical to the performance and compati...
Nanopatterning of biomaterials is rapidly emerging as a tool to engineer cell function. Bulk metalli...
Abstract The interactions occurring between biological systems and the surface of biomaterials has b...
In this paper, we report the initial response of 3T3 fibroblast and MG63 osteoblast cells to enginee...
Surface nanotopography is widely employed to control cell behavior and in particular controlled diso...
Surface modification plays a vital role in regulating protein adsorption and subsequently cell adhes...
The coating of substrates with an extracellular matrix (ECM) protein, such as fibronectin (FN), is o...
The coating of substrates with an extracellular matrix (ECM) protein, such as fibronectin (FN), is o...
PURPOSE: It is known that surface nanotopography influences cell adhesion and differentiation. Our a...
[EN] Purpose: It is known that surface nanotopography influences cell adhesion and differentiation. ...
Cell adhesion to extracellular matrix is an important process for both health and disease states. Su...
Surface nanotopography is widely employed to control cell behavior and in particular controlled diso...
Nanosphere lithography (NSL) and the layer-by-layer (LbL) technique are combined here for the first ...
Cell adhesion to extracellular matrix is an important process for both health and disease states. Su...
ABSTRACT Although molecular and physical mechanisms of fibroblast matrix assembly have been widely i...
The ability to control cell adhesion on material surfaces is critical to the performance and compati...
Nanopatterning of biomaterials is rapidly emerging as a tool to engineer cell function. Bulk metalli...
Abstract The interactions occurring between biological systems and the surface of biomaterials has b...
In this paper, we report the initial response of 3T3 fibroblast and MG63 osteoblast cells to enginee...
Surface nanotopography is widely employed to control cell behavior and in particular controlled diso...
Surface modification plays a vital role in regulating protein adsorption and subsequently cell adhes...