The design of biomimetic nanomaterials that can directly influence the behavior of cells and facilitate the regeneration of tissues and organs has become an active area of research. Here, the production of materials based on nano-hydroxyapatite composites in scaffolds with nanofibrous and nanoporous topographies, designed to mimic the native bone matrix for applications in bone tissue engineering, is reported. Human mesenchymal stem cells grown on these nanocomposites are stimulated to rapidly produce bone minerals in situ, even in the absence of osteogenic supplements in the cell-culture medium. Nanocomposites comprising type I collagen and nano-hydroxyapatite are found to be especially efficient at inducing mineralization. When subcutaneo...
Recently the replacement of bone tissue by graft materials and products of tissue engineering with c...
Recently the replacement of bone tissue by graft materials and products of tissue engineering with c...
Recently the replacement of bone tissue by graft materials and products of tissue engineering with c...
Nanostructured materials are gaining new impetus owing to the advancements in material fabrication t...
The development of a new family of implantable bioinspired materials is a focal point of bone tissue...
Bone tissue engineering strategies are emerging as attractive alternatives to autografts and allogra...
The development of a new family of implantable bioinspired materials is a focal point of bone tissue...
Bone tissue, by definition, is an organic-inorganic nanocomposite, where metabolically active cells ...
Bone tissue engineering strategies are emerging as attractive alternatives to autografts and allogra...
Bone tissue engineering strategies are emerging as attractive alternatives to autografts and allogra...
Bone tissue engineering strategies are emerging as attractive alternatives to autografts and allogra...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
Background/Objective: As the bone engineering field moves away from nonviable implants to more bioco...
The aim was to construct a composite structure for bone tissue substitute on the basis of a degradab...
Recently the replacement of bone tissue by graft materials and products of tissue engineering with c...
Recently the replacement of bone tissue by graft materials and products of tissue engineering with c...
Recently the replacement of bone tissue by graft materials and products of tissue engineering with c...
Nanostructured materials are gaining new impetus owing to the advancements in material fabrication t...
The development of a new family of implantable bioinspired materials is a focal point of bone tissue...
Bone tissue engineering strategies are emerging as attractive alternatives to autografts and allogra...
The development of a new family of implantable bioinspired materials is a focal point of bone tissue...
Bone tissue, by definition, is an organic-inorganic nanocomposite, where metabolically active cells ...
Bone tissue engineering strategies are emerging as attractive alternatives to autografts and allogra...
Bone tissue engineering strategies are emerging as attractive alternatives to autografts and allogra...
Bone tissue engineering strategies are emerging as attractive alternatives to autografts and allogra...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
Background/Objective: As the bone engineering field moves away from nonviable implants to more bioco...
The aim was to construct a composite structure for bone tissue substitute on the basis of a degradab...
Recently the replacement of bone tissue by graft materials and products of tissue engineering with c...
Recently the replacement of bone tissue by graft materials and products of tissue engineering with c...
Recently the replacement of bone tissue by graft materials and products of tissue engineering with c...