Micropatterning is a powerful technique to custom-make and precisely control the surface topography of materials, which is determinant for a better interaction with cells. A modification of conventional micropatterning is proposed here to fabricate textured film from stiff and sticky polymers such as poly(lactide(s)-co-glycolide(s)) (PLGA) without the use of supports or solvents. Micropatterned PLGA films with square pits varying in height and channels varying in width were made to study the influence of these topographical parameters on human fibroblasts proliferation, morphology, and alignment. With increasing the square pit height, the cell attachment efficiency increased. After 10 days of culture the micropatterned films supported a sig...
Micropatterning techniques provide direct control over the spatial organization of cells at the sub-...
The success of many emerging biotechnologies depends upon the ability to tune cell function to mimic...
A combination of nanoimprint lithography and microcontact printing was used to create cell substrate...
This article demonstrates that the micro-topography of the surface with respect to the pattern size ...
This article demonstrates that the micro-topography of the surface with respect to the pattern size ...
International audienceIn situ, cells are highly sensitive to geometrical and mechanical constraints ...
The aim of this study was to develop micropatterned surfaces on biodegradable polymers such as PLGA ...
Micropatterning technology is a highly advantageous approach for directly assessing and comparing th...
A four-step soft lithographic process based on microcontact printing of organic monolayers, hyperbra...
Tissue engineering would, more often than not, require cells to be instructed in their growth, so as...
Fabrication of extracellular microenvironment for cancer cell growth in vitro is an indispensable te...
Cell culture substrates for contact guidance studies can be developed through polymer processing to ...
Micropatterning techniques provide direct control over the spatial organization of cells at the sub-...
Creation of more physiologically relevant cell models in tissue culture is a requisite for advancing...
Fabrication of extracellular microenvironment for cancer cell growth in vitro is an indispensable te...
Micropatterning techniques provide direct control over the spatial organization of cells at the sub-...
The success of many emerging biotechnologies depends upon the ability to tune cell function to mimic...
A combination of nanoimprint lithography and microcontact printing was used to create cell substrate...
This article demonstrates that the micro-topography of the surface with respect to the pattern size ...
This article demonstrates that the micro-topography of the surface with respect to the pattern size ...
International audienceIn situ, cells are highly sensitive to geometrical and mechanical constraints ...
The aim of this study was to develop micropatterned surfaces on biodegradable polymers such as PLGA ...
Micropatterning technology is a highly advantageous approach for directly assessing and comparing th...
A four-step soft lithographic process based on microcontact printing of organic monolayers, hyperbra...
Tissue engineering would, more often than not, require cells to be instructed in their growth, so as...
Fabrication of extracellular microenvironment for cancer cell growth in vitro is an indispensable te...
Cell culture substrates for contact guidance studies can be developed through polymer processing to ...
Micropatterning techniques provide direct control over the spatial organization of cells at the sub-...
Creation of more physiologically relevant cell models in tissue culture is a requisite for advancing...
Fabrication of extracellular microenvironment for cancer cell growth in vitro is an indispensable te...
Micropatterning techniques provide direct control over the spatial organization of cells at the sub-...
The success of many emerging biotechnologies depends upon the ability to tune cell function to mimic...
A combination of nanoimprint lithography and microcontact printing was used to create cell substrate...