Stem cells have the capacity to differentiate into various lineages, and the ability to reliably direct stem cell fate determination would have tremendous potential for basic research and clinical therapy. Nanotopography provides a useful tool for guiding differentiation, as the features are more durable than surface chemistry and can be modified in size and shape to suit the desired application. In this paper, nanotopography is examined as a means to guide differentiation, and its application is described in the context of different subsets of stem cells, with a particular focus on skeletal (mesenchymal) stem cells. To address the mechanistic basis underlying the topographical effects on stem cells, the likely contributions of indirect (bi...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
The production of bone-forming osteogenic cells for research purposes or transplantation therapies r...
In culture isolated bone marrow mesenchymal stem cells (more precisely termed skeletal stem cells, S...
There is a rapidly growing body of literature on the effects of topography and critically, nanotopog...
Stem cells have attracted great attention in recent years due to their promise in regenerative medic...
Understanding signals in the niche that regulate stem cell behaviours is important for applications ...
Stem cells are known for their potential to repair damaged tissues. The adhesion, growth and differe...
Topography and its effects on cell adhesion, morphology, growth and differentiation are well documen...
Regulated biophysical cues, such as nanotopography, have been shown to be integral for tissue regene...
Regulated biophysical cues, such as nanotopography, have been shown to be integral for tissue regene...
Regulated biophysical cues, such as nanotopography, have been shown to be integral for tissue regene...
Regulated biophysical cues, such as nanotopography, have been shown to be integral for tissue regene...
Regulating cell behavior using nanotopography has been widely implemented. To facilitate cell adhesi...
AbstractTopography and its effects on cell adhesion, morphology, growth and differentiation are well...
The topography of a biomaterial regulates cellular interactions and determine stem cell fate. A comp...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
The production of bone-forming osteogenic cells for research purposes or transplantation therapies r...
In culture isolated bone marrow mesenchymal stem cells (more precisely termed skeletal stem cells, S...
There is a rapidly growing body of literature on the effects of topography and critically, nanotopog...
Stem cells have attracted great attention in recent years due to their promise in regenerative medic...
Understanding signals in the niche that regulate stem cell behaviours is important for applications ...
Stem cells are known for their potential to repair damaged tissues. The adhesion, growth and differe...
Topography and its effects on cell adhesion, morphology, growth and differentiation are well documen...
Regulated biophysical cues, such as nanotopography, have been shown to be integral for tissue regene...
Regulated biophysical cues, such as nanotopography, have been shown to be integral for tissue regene...
Regulated biophysical cues, such as nanotopography, have been shown to be integral for tissue regene...
Regulated biophysical cues, such as nanotopography, have been shown to be integral for tissue regene...
Regulating cell behavior using nanotopography has been widely implemented. To facilitate cell adhesi...
AbstractTopography and its effects on cell adhesion, morphology, growth and differentiation are well...
The topography of a biomaterial regulates cellular interactions and determine stem cell fate. A comp...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
The production of bone-forming osteogenic cells for research purposes or transplantation therapies r...
In culture isolated bone marrow mesenchymal stem cells (more precisely termed skeletal stem cells, S...