In this paper we report about the role the diamond surface morphology and atomic termination plays in the survival and viability of neuronal cells, which represent an appropriate experimental model for the development of cell-based biosensors. The samples we have investigated were both CVD homoepitaxial diamond films and nanocrystalline diamond layers deposited on quartz substrates. Different surface terminations were induced through exposure to atomic hydrogen and to intense UV irradiation. GT1-7 cells, a neuronal line of hypothalamic origin, were plated directly onto the diamond surfaces without exogenous adhesion molecules, in order to correlate the surface topography and chemistry to cell growth and viability. The cell density on nanocr...
Diamond has a number of unique properties that make it an attractive electronic and bio-electronic m...
International audienceA recently discovered material, carbon nanotubes covered with diamond (DCNTs) ...
International audienceA recently discovered material, carbon nanotubes covered with diamond (DCNTs) ...
In this paper we report about the role the diamond surface morphology and atomic termination plays i...
The resting or evoked activity of neuronal networks can be effectively monitored by using multielect...
Diamond is a promising material for the biomedical field, mainly due to its set of characteristics s...
Direct electrode/neuron interfacing is a key challenge to achieve high resolution of neuronal stimul...
[[abstract]]The interaction of ultra-nanocrystalline diamond (UNCD) with neural stem cells (NSCs) ha...
[[abstract]]The interaction of ultra-nanocrystalline diamond (UNCD) with neural stem cells (NSCs) ha...
[[abstract]]The interaction of ultra-nanocrystalline diamond (UNCD) with neural stem cells (NSCs) ha...
International audienceDirect electrode/neuron interfacing is a key challenge to achieve high resolut...
International audienceDirect electrode/neuron interfacing is a key challenge to achieve high resolut...
The ability to form an efficient interface between material and neural cells is a crucial aspect for...
Diamond has a number of unique properties that make it an attractive electronic and bio-electronic m...
Diamond has a number of unique properties that make it an attractive electronic and bio-electronic m...
Diamond has a number of unique properties that make it an attractive electronic and bio-electronic m...
International audienceA recently discovered material, carbon nanotubes covered with diamond (DCNTs) ...
International audienceA recently discovered material, carbon nanotubes covered with diamond (DCNTs) ...
In this paper we report about the role the diamond surface morphology and atomic termination plays i...
The resting or evoked activity of neuronal networks can be effectively monitored by using multielect...
Diamond is a promising material for the biomedical field, mainly due to its set of characteristics s...
Direct electrode/neuron interfacing is a key challenge to achieve high resolution of neuronal stimul...
[[abstract]]The interaction of ultra-nanocrystalline diamond (UNCD) with neural stem cells (NSCs) ha...
[[abstract]]The interaction of ultra-nanocrystalline diamond (UNCD) with neural stem cells (NSCs) ha...
[[abstract]]The interaction of ultra-nanocrystalline diamond (UNCD) with neural stem cells (NSCs) ha...
International audienceDirect electrode/neuron interfacing is a key challenge to achieve high resolut...
International audienceDirect electrode/neuron interfacing is a key challenge to achieve high resolut...
The ability to form an efficient interface between material and neural cells is a crucial aspect for...
Diamond has a number of unique properties that make it an attractive electronic and bio-electronic m...
Diamond has a number of unique properties that make it an attractive electronic and bio-electronic m...
Diamond has a number of unique properties that make it an attractive electronic and bio-electronic m...
International audienceA recently discovered material, carbon nanotubes covered with diamond (DCNTs) ...
International audienceA recently discovered material, carbon nanotubes covered with diamond (DCNTs) ...