We have characterized the biocompatibility of nanostructured TiO 2 films produced by the deposition of a supersonic beam of TiO x clusters. Physical analysis shows that these films possess, at the nanoscale, a granularity and porosity mimicking those of typical extracellular matrix structures and adsorption properties that could allow surface functionalization with different macromolecules such as DNA, proteins, and peptides. To explore the biocompatibility of this novel nanostructured surface, different cancer and primary cells were analyzed in terms of morphological appearance (by bright field microscopy and immunofluorescence) and growth properties, with the aim to evaluate cluster-assembled TiO2 films as substrates for cell-based and ti...
Nano TiO2 material is an extensively used and adequately studied material and has a close contact wi...
In this work it was studied the possible use of thin films, composed of Au nanoparticles (NPs) embed...
[[abstract]]Our objective in this study was to evaluate biological responses to a unique multiform n...
The ability to produce cell patterning through precise surface engineering has stimulated the develo...
Nanostructured TiO2 nanotubes (NTs) of diameters from 15 to 100 nm were fabricated by an electrochem...
In this work the physicochemical and biological properties of nanocrystalline TiO2 thin films were i...
Protein adsorption is the triggering event for a variety of complex phenomena occurring at the nanos...
Current biomedical research is centered on the study of nanomaterials and their effects in biologica...
Nowadays, bioaffinity studies of materials are playing a key role in the realization of microdevices...
The contamination of implant devices as a result of biofilm formation through bacterial infection ha...
Primary human melanocytes represent the precursor cells to melanoma and also specific targets of inh...
Micro- and nano-patterning/modification are emerging strategies to improve surfaces properties that ...
Cluster-assembled nanostructured Titanium Oxide (ns-TiOx) deposited by Supersonic Cluster Beam Depos...
We report the use of nanostructured TiO2 (NST) as porous cellular adhesion interfaces for microsyste...
Living-cell microarrays are powerful tools for functional genomics and drug discovery. However, desp...
Nano TiO2 material is an extensively used and adequately studied material and has a close contact wi...
In this work it was studied the possible use of thin films, composed of Au nanoparticles (NPs) embed...
[[abstract]]Our objective in this study was to evaluate biological responses to a unique multiform n...
The ability to produce cell patterning through precise surface engineering has stimulated the develo...
Nanostructured TiO2 nanotubes (NTs) of diameters from 15 to 100 nm were fabricated by an electrochem...
In this work the physicochemical and biological properties of nanocrystalline TiO2 thin films were i...
Protein adsorption is the triggering event for a variety of complex phenomena occurring at the nanos...
Current biomedical research is centered on the study of nanomaterials and their effects in biologica...
Nowadays, bioaffinity studies of materials are playing a key role in the realization of microdevices...
The contamination of implant devices as a result of biofilm formation through bacterial infection ha...
Primary human melanocytes represent the precursor cells to melanoma and also specific targets of inh...
Micro- and nano-patterning/modification are emerging strategies to improve surfaces properties that ...
Cluster-assembled nanostructured Titanium Oxide (ns-TiOx) deposited by Supersonic Cluster Beam Depos...
We report the use of nanostructured TiO2 (NST) as porous cellular adhesion interfaces for microsyste...
Living-cell microarrays are powerful tools for functional genomics and drug discovery. However, desp...
Nano TiO2 material is an extensively used and adequately studied material and has a close contact wi...
In this work it was studied the possible use of thin films, composed of Au nanoparticles (NPs) embed...
[[abstract]]Our objective in this study was to evaluate biological responses to a unique multiform n...