International audienceThe conventional tissue engineering is based on seeding of macroporous scaffold on its surface ("top-down" approach). The main limitation is poor cell viability in the middle of the scaffold due to poor diffusion of oxygen and nutrients and insufficient vascularization. Layer-by-Layer (LBL) bioassembly is based on "bottom-up" approach, which considers assembly of small cellularized blocks. The aim of this work was to evaluate proliferation and differentiation of human bone marrow stromal cells (HBMSCs) and endothelial progenitor cells (EPCs) in two and three dimensions (2D, 3D) using a LBL assembly of polylactic acid (PLA) scaffolds fabricated by 3D printing. 2D experiments have shown maintain of cell viability on PLA,...
The 3D printing process can produce bioengineered scaffolds with a 100% interconnected porous struct...
The use of bottom-up approaches in tissue engineering applications is advantageous since they enable...
The use of bottom-up approaches in tissue engineering applications is advantageous since they enable...
International audienceThe conventional tissue engineering is based on seeding of macroporous scaffol...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface ("top...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface ("top...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface (“top...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface (“top...
International audienceLayer-by-layer (LBL) BioAssembly method was developed to enhance the control o...
International audienceLayer-by-layer (LBL) BioAssembly method was developed to enhance the control o...
International audienceLayer-by-layer (LBL) BioAssembly method was developed to enhance the control o...
Layer-by-layer (LBL) BioAssembly method was developed to enhance the control of cell distribution wi...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
Tissue engineering is a branch of regenerative medicine, which comprises the combination of biomater...
The 3D printing process can produce bioengineered scaffolds with a 100% interconnected porous struct...
The use of bottom-up approaches in tissue engineering applications is advantageous since they enable...
The use of bottom-up approaches in tissue engineering applications is advantageous since they enable...
International audienceThe conventional tissue engineering is based on seeding of macroporous scaffol...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface ("top...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface ("top...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface (“top...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface (“top...
International audienceLayer-by-layer (LBL) BioAssembly method was developed to enhance the control o...
International audienceLayer-by-layer (LBL) BioAssembly method was developed to enhance the control o...
International audienceLayer-by-layer (LBL) BioAssembly method was developed to enhance the control o...
Layer-by-layer (LBL) BioAssembly method was developed to enhance the control of cell distribution wi...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
Tissue engineering is a branch of regenerative medicine, which comprises the combination of biomater...
The 3D printing process can produce bioengineered scaffolds with a 100% interconnected porous struct...
The use of bottom-up approaches in tissue engineering applications is advantageous since they enable...
The use of bottom-up approaches in tissue engineering applications is advantageous since they enable...