In bone regenerative strategies, the controlled release of growth factors is one of the main aspects for successful tissue regeneration. Recent trends in the drug delivery field increased the interest in the development of biodegradable systems able to protect and transport active agents. In the present study, we designed degradable poly(lactic-co-glycolic)acid (PLGA) nanocarriers suitable for the release of Transforming Growth Factor-beta 1 (TGF-β1), a key molecule in the management of bone cells behaviour. Spherical TGF-β1-containing PLGA (PLGA_TGF-β1) nanoparticles (ca.250 nm) exhibiting high encapsulation efficiency (ca.64%) were successfully synthesized. The TGF-β1 nanocarriers were subsequently combined with type I collagen for the fa...
The combination of supportive biomaterials and bioactive factors to stimulate endogenous progenitor ...
3D printing has revolutionized pharmaceutical research, with applications encompassing tissue regene...
Our research was designed to evaluate the effect on bone regeneration with 3-dimensional (3D) printe...
In bone regenerative strategies, the controlled release of growth factors is one of the main aspects...
In recent times, tremendous progress has been evidenced by the advancements in various methods of ge...
Additive manufacturing is a rising field in bone tissue engineering. Additive fabrication offers rep...
Bone repair and regeneration can be enhanced through implantation of biocompatible and biodegradable...
Bone-tissue regeneration induced by biomimetic bioactive materials is the most promising approach al...
Bone-tissue regeneration is a growing field, where nanostructured-bioactive materials are designed t...
AbstractA novel therapeutic scaffolding system of engineered nanocarriers within a foam matrix for t...
Although a lot of research has been performed, large segmental bone defects caused by trauma, infect...
Although bone has an intrinsic capacity for self repair, the healing of large bone defects that typi...
Repair of skeletal defects resulting from traumatic insult, tumor ablation, or congenital deformitie...
The osteochondral interface of an arthritic joint is notoriously difficult to regenerate due to its ...
The osteochondral interface of an arthritic joint is notoriously difficult to regenerate due to its ...
The combination of supportive biomaterials and bioactive factors to stimulate endogenous progenitor ...
3D printing has revolutionized pharmaceutical research, with applications encompassing tissue regene...
Our research was designed to evaluate the effect on bone regeneration with 3-dimensional (3D) printe...
In bone regenerative strategies, the controlled release of growth factors is one of the main aspects...
In recent times, tremendous progress has been evidenced by the advancements in various methods of ge...
Additive manufacturing is a rising field in bone tissue engineering. Additive fabrication offers rep...
Bone repair and regeneration can be enhanced through implantation of biocompatible and biodegradable...
Bone-tissue regeneration induced by biomimetic bioactive materials is the most promising approach al...
Bone-tissue regeneration is a growing field, where nanostructured-bioactive materials are designed t...
AbstractA novel therapeutic scaffolding system of engineered nanocarriers within a foam matrix for t...
Although a lot of research has been performed, large segmental bone defects caused by trauma, infect...
Although bone has an intrinsic capacity for self repair, the healing of large bone defects that typi...
Repair of skeletal defects resulting from traumatic insult, tumor ablation, or congenital deformitie...
The osteochondral interface of an arthritic joint is notoriously difficult to regenerate due to its ...
The osteochondral interface of an arthritic joint is notoriously difficult to regenerate due to its ...
The combination of supportive biomaterials and bioactive factors to stimulate endogenous progenitor ...
3D printing has revolutionized pharmaceutical research, with applications encompassing tissue regene...
Our research was designed to evaluate the effect on bone regeneration with 3-dimensional (3D) printe...