Interconnected porosity is critical to the design of regenerative scaffolds, as it permits cell migration, vascularisation and diffusion of nutrients and regulatory molecules inside the scaffold. 3D printing is a promising strategy to achieve this as it allows the control over scaffold pore size, porosity and interconnectivity. Thus, the aim of the present study was to integrate distinct biofabrication strategies to develop a multiscale porous scaffold that was not only mechanically functional at the time of implantation, but also facilitated rapid vascularisation and provided stem cells with appropriate cues to enable their differentiation into osteoblasts. To achieve this, polycaprolactone (PCL) was functionalised with decellularised bone...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Manufacturing of three-dimensional scaffolds with multiple levels of porosity are an advantage in ti...
Manufacturing of three-dimensional scaffolds with multiple levels of porosity are an advantage in ti...
Tissue engineering (TE)-based bone grafts are favorable alternatives to autografts and allografts. B...
The 3D printing process can produce bioengineered scaffolds with a 100% interconnected porous struct...
3D printing technique is the most sophisticated technique to produce scaffolds with tailorable physi...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
Due to increased life expectancy and needs of the baby boomer population, it is estimated that in th...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
The development of in vitro 3D models to get insights into the mechanisms of bone regeneration could...
The rising incidence of bone disorders, exacerbated by an increasing ageing population worldwide, ha...
The application of 3D printed scaffolds for bone tissue regeneration has been explored in previous s...
In the bone regeneration field, properties of 3D scaffold could be improved using cellular and their...
The application of 3D printed scaffolds for bone tissue regeneration has been explored in previous s...
The application of 3D printed scaffolds for bone tissue regeneration has been explored in previous s...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Manufacturing of three-dimensional scaffolds with multiple levels of porosity are an advantage in ti...
Manufacturing of three-dimensional scaffolds with multiple levels of porosity are an advantage in ti...
Tissue engineering (TE)-based bone grafts are favorable alternatives to autografts and allografts. B...
The 3D printing process can produce bioengineered scaffolds with a 100% interconnected porous struct...
3D printing technique is the most sophisticated technique to produce scaffolds with tailorable physi...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
Due to increased life expectancy and needs of the baby boomer population, it is estimated that in th...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
The development of in vitro 3D models to get insights into the mechanisms of bone regeneration could...
The rising incidence of bone disorders, exacerbated by an increasing ageing population worldwide, ha...
The application of 3D printed scaffolds for bone tissue regeneration has been explored in previous s...
In the bone regeneration field, properties of 3D scaffold could be improved using cellular and their...
The application of 3D printed scaffolds for bone tissue regeneration has been explored in previous s...
The application of 3D printed scaffolds for bone tissue regeneration has been explored in previous s...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Manufacturing of three-dimensional scaffolds with multiple levels of porosity are an advantage in ti...
Manufacturing of three-dimensional scaffolds with multiple levels of porosity are an advantage in ti...