The success of stem cell therapies relies heavily on our ability to control their fate in vitro during expansion to ensure an appropriate supply. The biophysical properties of the cell culture environment have been recognised as a potent stimuli influencing cellular behaviour. In this work we used advanced plasma-based techniques to generate model culture substrates with controlled nanotopographical features of 16 nm, 38 nm and 68 nm in magnitude, and three differently tailored surface chemical functionalities. The effect of these two surface properties on the adhesion, spreading, and self-renewal of mouse embryonic stem cells (mESCs) were assessed. The results demonstrated that physical and chemical cues influenced the behaviour of these s...
Bio-functional surfaces have been created by printing proteins on antifouling surfaces in a customis...
Stem cells respond to nanoscale surface features, with changes in cell growth and differentiation me...
The rapid development of fabrication and processing technologies in the past two decades has enabled...
The success of stem cell therapies relies heavily on our ability to control their fate in vitro duri...
Human embryonic stem cells (hESCs) have great potentials for future cell-based therapeutics. However...
The use of material properties to guide cell behaviour is often utilised in the field of regenerativ...
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...
Cells are able to perceive complex mechanical cues across both the micro- and nanoscale which can in...
Cells can perceive complex mechanical cues across both the micro‐ and nanoscale which can influence ...
Mechanical stimuli are an integrant component of the microenvironment controlling the differentiatio...
Nanoscale surface topography exerts profound effects on stem cell behaviour. Detailed knowledge of t...
Stem cells have attracted great attention in recent years due to their promise in regenerative medic...
ells that adhere to the extracellular matrix (ECM) can sense and respond to a wide variety of chemic...
The use of materials properties to guide cell behaviour is an attractive option for regenerative med...
Bio-functional surfaces have been created by printing proteins on antifouling surfaces in a customis...
Stem cells respond to nanoscale surface features, with changes in cell growth and differentiation me...
The rapid development of fabrication and processing technologies in the past two decades has enabled...
The success of stem cell therapies relies heavily on our ability to control their fate in vitro duri...
Human embryonic stem cells (hESCs) have great potentials for future cell-based therapeutics. However...
The use of material properties to guide cell behaviour is often utilised in the field of regenerativ...
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...
Cells are able to perceive complex mechanical cues across both the micro- and nanoscale which can in...
Cells can perceive complex mechanical cues across both the micro‐ and nanoscale which can influence ...
Mechanical stimuli are an integrant component of the microenvironment controlling the differentiatio...
Nanoscale surface topography exerts profound effects on stem cell behaviour. Detailed knowledge of t...
Stem cells have attracted great attention in recent years due to their promise in regenerative medic...
ells that adhere to the extracellular matrix (ECM) can sense and respond to a wide variety of chemic...
The use of materials properties to guide cell behaviour is an attractive option for regenerative med...
Bio-functional surfaces have been created by printing proteins on antifouling surfaces in a customis...
Stem cells respond to nanoscale surface features, with changes in cell growth and differentiation me...
The rapid development of fabrication and processing technologies in the past two decades has enabled...