A better understanding of the interactions between biological entities and nanostructures is of central importance for developing functionalized materials and systems such as active surfaces with adapted biocompatibility. There is clear evidence in literature that cells and proteins generally interact with nanoscale-featured surfaces. Despite this quantity of information, little is known about the functional relationship between surface properties (i.e., roughness and nanostructuration) and biomolecules interaction. The main obstacle in the achievement of this goal is a technological one. Precise and straightforward control on surface modification at the nanometer level is required for understanding how nanostructuration influences interact...
A great challenge of today’s implant development is to construct a surface that promotes tissue inte...
In the field of biomaterials, well-defined nano- and micropatterns or features at material surfaces ...
Control over biointerfacial interactions in vitro and in vivo is the key to many biomedical applicat...
<div><p>Using high resolution focused ion beam scanning electron microscopy (FIB-SEM) we study the d...
Aiming at creating smart nanomaterials for biomedical applications, nanotechnology aspires to develo...
Using high resolution focused ion beam scanning electron microscopy (FIB-SEM) we study the details o...
The interaction between biology and non-viable surfaces is crucial for many organisms and cells. For...
Ion beam irradiation of solid surfaces may result in the self-organized formation of well-defined to...
Control over biointerfacial interactions in vitro and in vivo is the key to many biomedical applicat...
This thesis is focused on understanding the fundamental physical interaction occurring, when a mater...
Protein adsorption is the triggering event for a variety of complex phenomena occurring at the nanos...
A great challenge of today’s implant development is to construct a surface that promotes tissue inte...
It is well known that surface properties at nano-scale are determinant in a number of applications, ...
"Neurocompatibility" is a broad definition which comprises aspects of biocompatibility, chemical and...
This thesis is focused on understanding the fundamental physical interaction occurring, when a mater...
A great challenge of today’s implant development is to construct a surface that promotes tissue inte...
In the field of biomaterials, well-defined nano- and micropatterns or features at material surfaces ...
Control over biointerfacial interactions in vitro and in vivo is the key to many biomedical applicat...
<div><p>Using high resolution focused ion beam scanning electron microscopy (FIB-SEM) we study the d...
Aiming at creating smart nanomaterials for biomedical applications, nanotechnology aspires to develo...
Using high resolution focused ion beam scanning electron microscopy (FIB-SEM) we study the details o...
The interaction between biology and non-viable surfaces is crucial for many organisms and cells. For...
Ion beam irradiation of solid surfaces may result in the self-organized formation of well-defined to...
Control over biointerfacial interactions in vitro and in vivo is the key to many biomedical applicat...
This thesis is focused on understanding the fundamental physical interaction occurring, when a mater...
Protein adsorption is the triggering event for a variety of complex phenomena occurring at the nanos...
A great challenge of today’s implant development is to construct a surface that promotes tissue inte...
It is well known that surface properties at nano-scale are determinant in a number of applications, ...
"Neurocompatibility" is a broad definition which comprises aspects of biocompatibility, chemical and...
This thesis is focused on understanding the fundamental physical interaction occurring, when a mater...
A great challenge of today’s implant development is to construct a surface that promotes tissue inte...
In the field of biomaterials, well-defined nano- and micropatterns or features at material surfaces ...
Control over biointerfacial interactions in vitro and in vivo is the key to many biomedical applicat...