Appropriate surface wettability and roughness of biomaterials is an important factor in cell attachment and proliferation. In this study, we investigated the correlation between surface wettability and roughness, and biological response in human adipose-derived stem cells (hADSCs). We prepared wettable and rough gradient polyethylene (PE) surfaces by increasing the power of a radio frequency corona discharge apparatus with knife-type electrodes over a moving sample bed. The PE changed gradually from hydrophobic and smooth surfaces to hydrophilic (water contact angle, 90° to ~50°) and rough (80 to ~120 nm) surfaces as the power increased. We found that hADSCs adhered better to highly hydrophilic and rough surfaces and showed broadly stretche...
Surface gradients provide a powerful platform to accelerate multiscale design by efficiently studyin...
In this report, we evaluate the impact of a systematic change to the extracellular environment on ce...
Surface gradients provide a powerful platform to accelerate multiscale design by efficiently studyin...
Appropriate surface wettability and roughness of biomaterials is an important factor in cell attachm...
Abstract: Appropriate surface wettability and roughness of biomaterials is an important factor in ce...
Surface wettability and topography are recognized as critical factors influencing cell behavior on b...
Surface wettability and topography are recognized as critical factors influencing cell behavior on b...
"Published online: 26 July 2012"Surface wettability and topography are recognized as critical factor...
An ideal biomaterial should provide a structure to support cell attachment, proliferation, different...
This work investigates the effect of surface topography and biomaterial wettability on protein absor...
Interactions of cells with biomaterials dictate their biocompatibility and biofunctionality, and are...
Surface chemistry is known to have a profound influence on cellular behavior. However, the cells' re...
Surface gradients provide a powerful platform to accelerate multiscale design by efficiently studyin...
Surface gradients provide a powerful platform to accelerate multiscale design by efficiently studyin...
Surface gradients provide a powerful platform to accelerate multiscale design by efficiently studyin...
Surface gradients provide a powerful platform to accelerate multiscale design by efficiently studyin...
In this report, we evaluate the impact of a systematic change to the extracellular environment on ce...
Surface gradients provide a powerful platform to accelerate multiscale design by efficiently studyin...
Appropriate surface wettability and roughness of biomaterials is an important factor in cell attachm...
Abstract: Appropriate surface wettability and roughness of biomaterials is an important factor in ce...
Surface wettability and topography are recognized as critical factors influencing cell behavior on b...
Surface wettability and topography are recognized as critical factors influencing cell behavior on b...
"Published online: 26 July 2012"Surface wettability and topography are recognized as critical factor...
An ideal biomaterial should provide a structure to support cell attachment, proliferation, different...
This work investigates the effect of surface topography and biomaterial wettability on protein absor...
Interactions of cells with biomaterials dictate their biocompatibility and biofunctionality, and are...
Surface chemistry is known to have a profound influence on cellular behavior. However, the cells' re...
Surface gradients provide a powerful platform to accelerate multiscale design by efficiently studyin...
Surface gradients provide a powerful platform to accelerate multiscale design by efficiently studyin...
Surface gradients provide a powerful platform to accelerate multiscale design by efficiently studyin...
Surface gradients provide a powerful platform to accelerate multiscale design by efficiently studyin...
In this report, we evaluate the impact of a systematic change to the extracellular environment on ce...
Surface gradients provide a powerful platform to accelerate multiscale design by efficiently studyin...