Background In this work, we explore how U2OS cells are affected by arrays of polymer nanopillars fabricated on flat glass surfaces. We focus on describing changes to the organisation of the actin cytoskeleton and in the location, number and shape of focal adhesions. From our findings we identify that the cells can be categorised into different regimes based on their spreading and adhesion behaviour on nanopillars. A quantitative analysis suggests that cells seeded on dense nanopillar arrays are suspended on top of the pillars with focal adhesions forming closer to the cell periphery compared to flat surfaces or sparse pillar arrays. This change is analogous to similar responses for cells seeded on soft substrates. ...
Matrix nanotopography plays an important role in regulating cell behaviors by providing spatial as w...
Matrix nanotopography plays an important role in regulating cell behaviors by providing spatial as w...
Although nanotopography has been shown to be a potent modulator of cell behavior, it is unclear how ...
Background In this work, we explore how U2OS cells are affected by arrays of polymer nanopillars fab...
Abstract Background In this work, we explore how U2OS cells are affected by arrays of polymer nanopi...
BackgroundCells explore the surfaces of materials through membrane-bound receptors, such as the inte...
BackgroundCells explore the surfaces of materials through membrane-bound receptors, such as the inte...
BackgroundCells explore the surfaces of materials through membrane-bound receptors, such as the inte...
Nanotopography mimicking extracellular environments reportedly impact cell morphological changes; ho...
Surfaces decorated with high aspect ratio nanostructures are a promising tool to study cellular proc...
Selective cell adhesion is desirable to control cell growth and migration on biomedical implants. Me...
<p>(A) Representative fluorescent photomicrographs of MSCs cultured on PMMA substrates for 4 days re...
Material features proved to exert a potent influence on cell behaviour in terms of adhesion, migrati...
Material features proved to exert a potent influence on cell behaviour in terms of adhesion, migrati...
Material features proved to exert a potent influence on cell behaviour in terms of adhesion, migrati...
Matrix nanotopography plays an important role in regulating cell behaviors by providing spatial as w...
Matrix nanotopography plays an important role in regulating cell behaviors by providing spatial as w...
Although nanotopography has been shown to be a potent modulator of cell behavior, it is unclear how ...
Background In this work, we explore how U2OS cells are affected by arrays of polymer nanopillars fab...
Abstract Background In this work, we explore how U2OS cells are affected by arrays of polymer nanopi...
BackgroundCells explore the surfaces of materials through membrane-bound receptors, such as the inte...
BackgroundCells explore the surfaces of materials through membrane-bound receptors, such as the inte...
BackgroundCells explore the surfaces of materials through membrane-bound receptors, such as the inte...
Nanotopography mimicking extracellular environments reportedly impact cell morphological changes; ho...
Surfaces decorated with high aspect ratio nanostructures are a promising tool to study cellular proc...
Selective cell adhesion is desirable to control cell growth and migration on biomedical implants. Me...
<p>(A) Representative fluorescent photomicrographs of MSCs cultured on PMMA substrates for 4 days re...
Material features proved to exert a potent influence on cell behaviour in terms of adhesion, migrati...
Material features proved to exert a potent influence on cell behaviour in terms of adhesion, migrati...
Material features proved to exert a potent influence on cell behaviour in terms of adhesion, migrati...
Matrix nanotopography plays an important role in regulating cell behaviors by providing spatial as w...
Matrix nanotopography plays an important role in regulating cell behaviors by providing spatial as w...
Although nanotopography has been shown to be a potent modulator of cell behavior, it is unclear how ...