Surface topography is able to influence cell phenotype in numerous ways and offers opportunities to manipulate cells and tissues. In this work, we develop the Nano-TopoChip and study the cell instructive effects of nanoscale topographies. A combination of deep UV projection lithography and conventional lithography was used to fabricate a library of more than 1200 different defined nanotopographies. To illustrate the cell instructive effects of nanotopography, actin-RFP labeled U2OS osteosarcoma cells were cultured and imaged on the Nano-TopoChip. Automated image analysis shows that of many cell morphological parameters, cell spreading, cell orientation and actin morphology are mostly affected by the nanotopographies. Additionally, by using ...
Although nanotopography has been shown to be a potent modulator of cell behavior, it is unclear how ...
Cells respond in complex ways to their environment, making it challenging to predict a direct relati...
During the last 30 years, the semiconductor industry has had a significant influence on our society ...
Surface topography is able to influence cell phenotype in numerous ways and offers opportunities to ...
\u3cp\u3eSurface topography is able to influence cell phenotype in numerous ways and offers opportun...
The rapid development of fabrication and processing technologies in the past two decades has enabled...
The control of biomaterial surface topography is emerging as a tool to influence cells and tissues. ...
Topography plays a vital role in cell and tissue structure and function in situ. Furthermore, invest...
Cells can perceive complex mechanical cues across both the micro‐ and nanoscale which can influence ...
Cells are able to perceive complex mechanical cues across both the micro- and nanoscale which can in...
Topographical cues patterned on surfaces activate specific cell morphologies, functions and behaviou...
Surface topographies of materials considerably impact cellular behavior as they have been shown to a...
Regulating cell behavior using nanotopography has been widely implemented. To facilitate cell adhesi...
In most living tissue, cells resident in a complex microenvironment where these cells interact with ...
In this paper, we report the initial response of 3T3 fibroblast and MG63 osteoblast cells to enginee...
Although nanotopography has been shown to be a potent modulator of cell behavior, it is unclear how ...
Cells respond in complex ways to their environment, making it challenging to predict a direct relati...
During the last 30 years, the semiconductor industry has had a significant influence on our society ...
Surface topography is able to influence cell phenotype in numerous ways and offers opportunities to ...
\u3cp\u3eSurface topography is able to influence cell phenotype in numerous ways and offers opportun...
The rapid development of fabrication and processing technologies in the past two decades has enabled...
The control of biomaterial surface topography is emerging as a tool to influence cells and tissues. ...
Topography plays a vital role in cell and tissue structure and function in situ. Furthermore, invest...
Cells can perceive complex mechanical cues across both the micro‐ and nanoscale which can influence ...
Cells are able to perceive complex mechanical cues across both the micro- and nanoscale which can in...
Topographical cues patterned on surfaces activate specific cell morphologies, functions and behaviou...
Surface topographies of materials considerably impact cellular behavior as they have been shown to a...
Regulating cell behavior using nanotopography has been widely implemented. To facilitate cell adhesi...
In most living tissue, cells resident in a complex microenvironment where these cells interact with ...
In this paper, we report the initial response of 3T3 fibroblast and MG63 osteoblast cells to enginee...
Although nanotopography has been shown to be a potent modulator of cell behavior, it is unclear how ...
Cells respond in complex ways to their environment, making it challenging to predict a direct relati...
During the last 30 years, the semiconductor industry has had a significant influence on our society ...