Titanium (Ti) is widely used as a biomaterial for endosseous implants due to its relatively inert surface oxide layer that enables implanted devices the ability of assembling tissue reparative components that culminate in osseointegration. Topographic modifications in the form of micro- and nanoscaled structures significantly promote osseointegration and enhance the osteogenic differentiation of adult mesenchymal stromal cells (MSCs). While the biological mechanisms central to the differential responses of tissues and cells to Ti surface modifications remain unknown, adhesion and morphological adaptation are amongst the earliest events at the cell-biomaterial interface that are highly influenced by surface topography and profoundly impact t...
Commercially pure titanium implants presenting a relatively smooth, machined surface or a roughned e...
Objectives: The aim of this study was to evaluate the effect of nanorough titanium implant surfaces ...
Giuseppe Maria de Peppo,1–3 Hossein Agheli,2,3 Camilla Karlsson,2,3 Karin Ekström,2,3 Hel...
Titanium (Ti) is widely used as a biomaterial for endosseous implants due to its relatively inert su...
AbstractThe first osteogenic cells to attach to a titanium (Ti) implant after placement are the mult...
Mesenchymal stromal cells (MSCs) can be easily isolated form craniofacial bones during routine denti...
Mesenchymal stromal cells (MSCs) can be easily isolated form craniofacial bones during routine denti...
Background: Patterning medical devices at the nanoscale level enables the manipulation of cell behav...
Background:\ud Implant surface micro-roughness and hydrophilicity are known to improve the osteogeni...
Objectives Titanium implant surfaces with modified topographies have improved osteogenic properties ...
Objective: Topography, chemistry, and energy of titanium (Ti) implants alter cell response through v...
Mesenchymal stromal cells (MSCs) can be easily isolated form craniofacial bones during routine denti...
The clinical success of an endosseous artificial implant is related to the quality of its osseointeg...
Commercially pure titanium implants presenting a relatively smooth, machined surface or a roughned e...
Commercially pure titanium implants presenting a relatively smooth, machined surface or a roughned e...
Commercially pure titanium implants presenting a relatively smooth, machined surface or a roughned e...
Objectives: The aim of this study was to evaluate the effect of nanorough titanium implant surfaces ...
Giuseppe Maria de Peppo,1–3 Hossein Agheli,2,3 Camilla Karlsson,2,3 Karin Ekström,2,3 Hel...
Titanium (Ti) is widely used as a biomaterial for endosseous implants due to its relatively inert su...
AbstractThe first osteogenic cells to attach to a titanium (Ti) implant after placement are the mult...
Mesenchymal stromal cells (MSCs) can be easily isolated form craniofacial bones during routine denti...
Mesenchymal stromal cells (MSCs) can be easily isolated form craniofacial bones during routine denti...
Background: Patterning medical devices at the nanoscale level enables the manipulation of cell behav...
Background:\ud Implant surface micro-roughness and hydrophilicity are known to improve the osteogeni...
Objectives Titanium implant surfaces with modified topographies have improved osteogenic properties ...
Objective: Topography, chemistry, and energy of titanium (Ti) implants alter cell response through v...
Mesenchymal stromal cells (MSCs) can be easily isolated form craniofacial bones during routine denti...
The clinical success of an endosseous artificial implant is related to the quality of its osseointeg...
Commercially pure titanium implants presenting a relatively smooth, machined surface or a roughned e...
Commercially pure titanium implants presenting a relatively smooth, machined surface or a roughned e...
Commercially pure titanium implants presenting a relatively smooth, machined surface or a roughned e...
Objectives: The aim of this study was to evaluate the effect of nanorough titanium implant surfaces ...
Giuseppe Maria de Peppo,1–3 Hossein Agheli,2,3 Camilla Karlsson,2,3 Karin Ekström,2,3 Hel...