Cells respond in complex ways to their environment, making it challenging to predict a direct relationship between the two. A key problem is the lack of informative representations of parameters that translate directly into biological function. Here we present a platform to relate the effects of cell morphology to gene expression induced by nanotopography. This platform utilizes the ‘morphome’, a multivariate dataset of cell morphology parameters. We create a Bayesian linear regression model that uses the morphome to robustly predict changes in bone, cartilage, muscle and fibrous gene expression induced by nanotopography. Furthermore, through this model we effectively predict nanotopography-induced gene expression from a complex co-culture ...
Cells are able to perceive complex mechanical cues from their microenvironment, which in turn influe...
The principal aim of this thesis was to investigate the ability of surface topography in inducing bo...
Although nanotopography has been shown to be a potent modulator of cell behavior, it is unclear how ...
Topographical cues patterned on surfaces activate specific cell morphologies, functions and behaviou...
AbstractTopography and its effects on cell adhesion, morphology, growth and differentiation are well...
Topography and its effects on cell adhesion, morphology, growth and differentiation are well documen...
There is a rapidly growing body of literature on the effects of topography and critically, nanotopog...
Surface topography is able to influence cell phenotype in numerous ways and offers opportunities to ...
This dataset contains the raw files, results files and R workspace files (.RData) associated with th...
\u3cp\u3eSurface topography is able to influence cell phenotype in numerous ways and offers opportun...
The environment around a cell during in vitro culture is unlikely to mimic those in vivo. Preliminar...
The understanding of cellular response to the shape of their environment would be of benefit in the ...
The environment around a cell during in vitro culture is unlikely to mimic those in vivo. Preliminar...
Stem cells have attracted great attention in recent years due to their promise in regenerative medic...
Nanotopographic cues from biomaterials exert powerful effects on the osteogenic differentiation of m...
Cells are able to perceive complex mechanical cues from their microenvironment, which in turn influe...
The principal aim of this thesis was to investigate the ability of surface topography in inducing bo...
Although nanotopography has been shown to be a potent modulator of cell behavior, it is unclear how ...
Topographical cues patterned on surfaces activate specific cell morphologies, functions and behaviou...
AbstractTopography and its effects on cell adhesion, morphology, growth and differentiation are well...
Topography and its effects on cell adhesion, morphology, growth and differentiation are well documen...
There is a rapidly growing body of literature on the effects of topography and critically, nanotopog...
Surface topography is able to influence cell phenotype in numerous ways and offers opportunities to ...
This dataset contains the raw files, results files and R workspace files (.RData) associated with th...
\u3cp\u3eSurface topography is able to influence cell phenotype in numerous ways and offers opportun...
The environment around a cell during in vitro culture is unlikely to mimic those in vivo. Preliminar...
The understanding of cellular response to the shape of their environment would be of benefit in the ...
The environment around a cell during in vitro culture is unlikely to mimic those in vivo. Preliminar...
Stem cells have attracted great attention in recent years due to their promise in regenerative medic...
Nanotopographic cues from biomaterials exert powerful effects on the osteogenic differentiation of m...
Cells are able to perceive complex mechanical cues from their microenvironment, which in turn influe...
The principal aim of this thesis was to investigate the ability of surface topography in inducing bo...
Although nanotopography has been shown to be a potent modulator of cell behavior, it is unclear how ...