Capsules coated with polyelectrolytes and co-encapsulating adipose stem (ASCs) and endothelial (ECs) cells with surface modified microparticles are developed. Microparticles and cells are freely dispersed in a liquified core, responsible to maximize the diffusion of essential molecules and allowing the geometrical freedom for the autonomous three-dimensional (3D) organization of cells. While the membrane wraps all the instructive cargo elements within a single structure, the microparticles provide a solid 3D substrate for the encapsulated cells. Our hypothesis is that inside this isolated biomimetic 3D environment, ECs would lead ASCs to differentiate into the osteogenic lineage to ultimately generate a mineralized tissue in vivo. For that,...
The reconstruction of bone defects based on cell-seeded constructs requires a functional microvascul...
Fabrication of vascularized large-scale constructs for regenerative medicine remains elusive since m...
Addressing the problem of vascularization is of vital importance when engineering three-dimensional ...
Inspired by the native co-existence of multiple cell types and from the concept of deconstructing th...
Introduction Bone regeneration remains a challenging milestone in orthopedic research. Inspired by...
Cells with differentiation potential into mesodermal types are the focus of emerging bone tissue eng...
Traditional tissue engineering devices commonly neglect the immune system's role in regulating tissu...
AbstractEmbryoid bodies (EBs) generated from embryonic stem cells are used to study processes of dif...
Embryoid bodies (EBs) generated from embryonic stem cells are used to study processes of differentia...
Embryoid bodies (EBs) generated from embryonic stem cells are used to study processes of differentia...
Cell encapsulation systems must ensure the diffusion of molecules to avoid the formation of necrotic...
Cell encapsulation is a widely used technique in the field of Tissue Engineering and Regenerative Me...
The stem cell niche organization and dynamics provide valuable cues for the development of mimetic e...
There is a demonstrated clinical need for alternatives of autologous fresh bone graft with excellent...
Extraordinary capabilities underlie the potential use of immune cells, particularly macrophages, in ...
The reconstruction of bone defects based on cell-seeded constructs requires a functional microvascul...
Fabrication of vascularized large-scale constructs for regenerative medicine remains elusive since m...
Addressing the problem of vascularization is of vital importance when engineering three-dimensional ...
Inspired by the native co-existence of multiple cell types and from the concept of deconstructing th...
Introduction Bone regeneration remains a challenging milestone in orthopedic research. Inspired by...
Cells with differentiation potential into mesodermal types are the focus of emerging bone tissue eng...
Traditional tissue engineering devices commonly neglect the immune system's role in regulating tissu...
AbstractEmbryoid bodies (EBs) generated from embryonic stem cells are used to study processes of dif...
Embryoid bodies (EBs) generated from embryonic stem cells are used to study processes of differentia...
Embryoid bodies (EBs) generated from embryonic stem cells are used to study processes of differentia...
Cell encapsulation systems must ensure the diffusion of molecules to avoid the formation of necrotic...
Cell encapsulation is a widely used technique in the field of Tissue Engineering and Regenerative Me...
The stem cell niche organization and dynamics provide valuable cues for the development of mimetic e...
There is a demonstrated clinical need for alternatives of autologous fresh bone graft with excellent...
Extraordinary capabilities underlie the potential use of immune cells, particularly macrophages, in ...
The reconstruction of bone defects based on cell-seeded constructs requires a functional microvascul...
Fabrication of vascularized large-scale constructs for regenerative medicine remains elusive since m...
Addressing the problem of vascularization is of vital importance when engineering three-dimensional ...