Neuronal cells are competent in precisely sensing nanotopographical features of their microenvironment. The perceived microenvironmental information will be \ue2\u80\u9cinterpreted\ue2\u80\u9d by mechanotransductive processes and impacts on neuronal functioning and differentiation. Attempts to influence neuronal differentiation by engineering substrates that mimic appropriate extracellular matrix (ECM) topographies are hampered by the fact that profound details of mechanosensing/-transduction complexity remain elusive. Introducing omics methods into these biomaterial approaches has the potential to provide a deeper insight into the molecular processes and signaling cascades underlying mechanosensing/-transduction but their exigence in cellu...
Manipulating neural stem cell (NSC) fate is of great importance for improving the therapeutic effica...
Recently, using cluster-assembled zirconia substrates with tailored roughness produced by supersonic...
The cell/microenvironment interface is the starting point of integrin-mediated mechanotransduction, ...
Neuronal cells are competent in precisely sensing nanotopographical features of their microenvironme...
BACKGROUND: Thanks to mechanotransductive components cells are competent to perceive nanoscale topog...
BACKGROUND-AIM Cells are competent to perceive biophysical signals of their microenvironment and to ...
The identification of biomaterials which promote neuronal maturation up to the generation of integra...
Background and aims: Attempts to influence \u3b2-cell differentiation by engineering substrates that...
The regulation of human pluripotent stem cell (hPSC) behaviors has been mainly studied through explo...
Biomaterial substrates can be engineered to present topographical signals to cells which, through in...
Biomaterial substrates can be engineered to present topographical signals to cells which, through in...
Surface nanotopography is widely employed to control cell behavior and in particular controlled diso...
Topography and its effects on cell adhesion, morphology, growth and differentiation are well documen...
AbstractTopography and its effects on cell adhesion, morphology, growth and differentiation are well...
Regulated biophysical cues, such as nanotopography, have been shown to be integral for tissue regene...
Manipulating neural stem cell (NSC) fate is of great importance for improving the therapeutic effica...
Recently, using cluster-assembled zirconia substrates with tailored roughness produced by supersonic...
The cell/microenvironment interface is the starting point of integrin-mediated mechanotransduction, ...
Neuronal cells are competent in precisely sensing nanotopographical features of their microenvironme...
BACKGROUND: Thanks to mechanotransductive components cells are competent to perceive nanoscale topog...
BACKGROUND-AIM Cells are competent to perceive biophysical signals of their microenvironment and to ...
The identification of biomaterials which promote neuronal maturation up to the generation of integra...
Background and aims: Attempts to influence \u3b2-cell differentiation by engineering substrates that...
The regulation of human pluripotent stem cell (hPSC) behaviors has been mainly studied through explo...
Biomaterial substrates can be engineered to present topographical signals to cells which, through in...
Biomaterial substrates can be engineered to present topographical signals to cells which, through in...
Surface nanotopography is widely employed to control cell behavior and in particular controlled diso...
Topography and its effects on cell adhesion, morphology, growth and differentiation are well documen...
AbstractTopography and its effects on cell adhesion, morphology, growth and differentiation are well...
Regulated biophysical cues, such as nanotopography, have been shown to be integral for tissue regene...
Manipulating neural stem cell (NSC) fate is of great importance for improving the therapeutic effica...
Recently, using cluster-assembled zirconia substrates with tailored roughness produced by supersonic...
The cell/microenvironment interface is the starting point of integrin-mediated mechanotransduction, ...