Nanoscale surface topography exerts profound effects on stem cell behaviour. Detailed knowledge of these effects is of key relevance to the development of advanced materials for tissue engineering. In order to gain such knowledge, high-throughput platforms for characterising cell-surface interactions are required. One suitable platform technology involves the use of lateral gradients where a continuous variation in a chemical or physical surface parameter of choice is investigated. Here, we fabricate porous silicon (pSi) gradients displaying pore sizes ranging from approximately 2 μm down to a few nm in diameter, and changing in solid surface fraction from 15% to 95% along the 12 mm length of the gradient. Cell attachment and spreadin...
Porous silicon (PSi) is a promising material in several biomedical applications because of its bioco...
Surface topography impacts on cell growth and differentiation, but it is not trivial to generate def...
The dependences of spreading and differentiation of stem cells plated on hydrogel and silicone gel s...
Gradient surfaces are emerging tools for investigating mammalian cell-surface interactions in high t...
Porous silicon (PSi) is a promising material in several biomedical applications because of its bioco...
Porous silicon (PSi) is a promising material in several biomedical applications because of its bioco...
New high-throughput technologies for cell-material interaction studies provide researchers with powe...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
Surface gradients provide a powerful platform to accelerate multiscale design by efficiently studyin...
Copyright © 2012 Andrew Michelmore et al. This is an open access article distributed under the Cre...
High -throughput screening (HTS) methods based on topography gradients or arrays have been extensive...
The success of stem cell therapies relies heavily on our ability to control their fate in vitro duri...
Porous silicon (PSi) is a promising material in several biomedical applications because of its bioco...
Surface topography impacts on cell growth and differentiation, but it is not trivial to generate def...
The dependences of spreading and differentiation of stem cells plated on hydrogel and silicone gel s...
Gradient surfaces are emerging tools for investigating mammalian cell-surface interactions in high t...
Porous silicon (PSi) is a promising material in several biomedical applications because of its bioco...
Porous silicon (PSi) is a promising material in several biomedical applications because of its bioco...
New high-throughput technologies for cell-material interaction studies provide researchers with powe...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
Surface gradients provide a powerful platform to accelerate multiscale design by efficiently studyin...
Copyright © 2012 Andrew Michelmore et al. This is an open access article distributed under the Cre...
High -throughput screening (HTS) methods based on topography gradients or arrays have been extensive...
The success of stem cell therapies relies heavily on our ability to control their fate in vitro duri...
Porous silicon (PSi) is a promising material in several biomedical applications because of its bioco...
Surface topography impacts on cell growth and differentiation, but it is not trivial to generate def...
The dependences of spreading and differentiation of stem cells plated on hydrogel and silicone gel s...