The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-topography of the extracellular matrix. One important goal in stem cell research is to understand the concept that directs differentiation into a specific cell lineage in the nanoscale environment. Here, we demonstrate that such paths exist by controlling only the micro- and nano-topography of polymer surfaces. Altering the depth (on a nanometric scale) of micro-patterned surface structures allowed increased adhesion of human mesenchymal stem cells (hMSCs) with specific differentiation into osteoblasts, in the absence of osteogenic medium. Small (10 nm) depth patterns promoted cell adhesion without noticeable differentiation, whereas larger de...
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...
Stem cells have attracted great attention in recent years due to their promise in regenerative medic...
Mechanical stimuli are an integrant component of the microenvironment controlling the differentiatio...
Mechanical stimuli are an integrant component of the microenvironment controlling the differentiatio...
Surface topography impacts on cell growth and differentiation, but it is not trivial to generate def...
Background: Patterning medical devices at the nanoscale level enables the manipulation of cell behav...
Surface topography impacts on cell growth and differentiation, but it is not trivial to generate def...
Manipulating neural stem cell (NSC) fate is of great importance for improving the therapeutic effica...
The initial conditions for morphogenesis trigger a cascade of events that ultimately dictate structu...
The development of homogenously nano-patterned chemically modified surfaces that can be used to init...
Stem cells are known for their potential to repair damaged tissues. The adhesion, growth and differe...
The initial conditions for morphogenesis trigger a cascade of events that ultimately dictate structu...
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...
Stem cells have attracted great attention in recent years due to their promise in regenerative medic...
Mechanical stimuli are an integrant component of the microenvironment controlling the differentiatio...
Mechanical stimuli are an integrant component of the microenvironment controlling the differentiatio...
Surface topography impacts on cell growth and differentiation, but it is not trivial to generate def...
Background: Patterning medical devices at the nanoscale level enables the manipulation of cell behav...
Surface topography impacts on cell growth and differentiation, but it is not trivial to generate def...
Manipulating neural stem cell (NSC) fate is of great importance for improving the therapeutic effica...
The initial conditions for morphogenesis trigger a cascade of events that ultimately dictate structu...
The development of homogenously nano-patterned chemically modified surfaces that can be used to init...
Stem cells are known for their potential to repair damaged tissues. The adhesion, growth and differe...
The initial conditions for morphogenesis trigger a cascade of events that ultimately dictate structu...
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...
Stem cells have attracted great attention in recent years due to their promise in regenerative medic...