Mesenchymal stem cells (MSCs) possess huge potential for regenerative medicine. For tissue engineering approaches, scaffolds and hydrogels are routinely used as extracellular matrix (ECM) carriers. The present study investigated the feasibility of using textile-reinforced hydrogels with adjustable porosity and elasticity as a versatile platform for soft tissue engineering. A warp-knitted poly (ethylene terephthalate) (PET) scaffold was developed and characterized with respect to morphology, porosity, and mechanics. The textile carrier was infiltrated with hydrogels and cells resulting in a fiber-reinforced matrix with adjustable biological as well as mechanical cues. Finally, the potential of this platform technology for regenerative medici...
Adipose tissue engineering strives to develop novel materials and methods for repairing and regenera...
To engineer functional tissue substitutes, it is required a multi-component, multi-scale approach th...
A paradigm shift from removal and replacement of diseased organs to regeneration of healthy organs h...
Mesenchymal stem cells (MSCs) possess huge potential for regenerative medicine. For tissue engineeri...
Mesenchymal stem cells (MSCs) possess huge potential for regenerative medicine. For tissue engineeri...
Mesenchymal stem cells (MSCs) possess huge potential for regenerative medicine. For tissue engineeri...
As the number of soft tissue correctional procedures increases yearly and the current methods being ...
Despite clinical treatments for adipose tissue defects, in particular breast tissue reconstruction, ...
Adipose tissue engineering is a promising field for regeneration of soft tissue defects. However, va...
A dome-shaped elastic poly(l-lactide-co-caprolactone) (PLCL) scaffold with a channel and pore struct...
Adipose tissue engineering is a promising field for regeneration of soft tissue defects. However, va...
The aim of this study was to design a dermal substitute containing adipose derived stem cells (ADSC)...
Hydrogels are three-dimensional polymer networks with hydrophilic properties. The modifiable propert...
Textile-based technologies are considered as potential routes for the production of 3D porous archit...
Three-dimensional bioabsorbable textiles represent a novel technology for the manufacturing of tissu...
Adipose tissue engineering strives to develop novel materials and methods for repairing and regenera...
To engineer functional tissue substitutes, it is required a multi-component, multi-scale approach th...
A paradigm shift from removal and replacement of diseased organs to regeneration of healthy organs h...
Mesenchymal stem cells (MSCs) possess huge potential for regenerative medicine. For tissue engineeri...
Mesenchymal stem cells (MSCs) possess huge potential for regenerative medicine. For tissue engineeri...
Mesenchymal stem cells (MSCs) possess huge potential for regenerative medicine. For tissue engineeri...
As the number of soft tissue correctional procedures increases yearly and the current methods being ...
Despite clinical treatments for adipose tissue defects, in particular breast tissue reconstruction, ...
Adipose tissue engineering is a promising field for regeneration of soft tissue defects. However, va...
A dome-shaped elastic poly(l-lactide-co-caprolactone) (PLCL) scaffold with a channel and pore struct...
Adipose tissue engineering is a promising field for regeneration of soft tissue defects. However, va...
The aim of this study was to design a dermal substitute containing adipose derived stem cells (ADSC)...
Hydrogels are three-dimensional polymer networks with hydrophilic properties. The modifiable propert...
Textile-based technologies are considered as potential routes for the production of 3D porous archit...
Three-dimensional bioabsorbable textiles represent a novel technology for the manufacturing of tissu...
Adipose tissue engineering strives to develop novel materials and methods for repairing and regenera...
To engineer functional tissue substitutes, it is required a multi-component, multi-scale approach th...
A paradigm shift from removal and replacement of diseased organs to regeneration of healthy organs h...