Strategies to engineer bone have focused on the use of natural or synthetic degradable materials as scaffolds for cell transplantation or as substrates to guide bone regeneration. The basic requirements of the scaffold material are biocompatibility, degradability, mechanical integrity, and osteoconductivity. A major design problem is satisfying each of these requirements with a single scaffold material. This study addresses this problem by describing an approach to combine the biocompatibility and degradability of a polymer scaffold with the osteoconductivity and mechanical reinforcement of a bonelike mineral film. We report the nucleation and growth of a continuous carbonated apatite mineral on the interior pore surfaces of a porous, degra...
Biodegradable and biocompatible polymeric scaffolds have been recently introduced for tissue regener...
Scaffolds are crucial to tissue engineering/regeneration. In this work, a technique combining a uniq...
Biodegradable and biocompatible polymeric scaffolds have been recently introduced for tissue regener...
Abstract: Strategies to engineer bone have focused on the use of natural or synthetic degradable mat...
A biomimetic approach involving the self-assembly of mineral within the pores of three-dimensional p...
Inorganic–organic hybrid materials designed to facilitate bone tissue regeneration use a calcium pho...
Engineering new bone tissue with cells and a synthetic extracellular matrix (scaffolding) represents...
Bone tissue engineering is a rapidly developing area. Engineering bone typically uses an artificial ...
Highly porous poly( L -lactic acid)/apatite composites were prepared through in situ formation of ...
Objectives: The aim of the study was to answer the questions whether poly (L-lactide-co-glycolide) s...
Current bone graft substitutes, such as calcium phosphate and metals, do not have proper mechanical ...
Current bone graft substitutes, such as calcium phosphate and metals, do not have proper mechanical ...
This paper presents the results of a study of the production of porous biodegradable composite mater...
Bone tissue engineering could provide an alternative to conventional treatments for fracture nonunio...
Biomaterial and scaffold development underpins the advancement of tissue engineering. Traditional sc...
Biodegradable and biocompatible polymeric scaffolds have been recently introduced for tissue regener...
Scaffolds are crucial to tissue engineering/regeneration. In this work, a technique combining a uniq...
Biodegradable and biocompatible polymeric scaffolds have been recently introduced for tissue regener...
Abstract: Strategies to engineer bone have focused on the use of natural or synthetic degradable mat...
A biomimetic approach involving the self-assembly of mineral within the pores of three-dimensional p...
Inorganic–organic hybrid materials designed to facilitate bone tissue regeneration use a calcium pho...
Engineering new bone tissue with cells and a synthetic extracellular matrix (scaffolding) represents...
Bone tissue engineering is a rapidly developing area. Engineering bone typically uses an artificial ...
Highly porous poly( L -lactic acid)/apatite composites were prepared through in situ formation of ...
Objectives: The aim of the study was to answer the questions whether poly (L-lactide-co-glycolide) s...
Current bone graft substitutes, such as calcium phosphate and metals, do not have proper mechanical ...
Current bone graft substitutes, such as calcium phosphate and metals, do not have proper mechanical ...
This paper presents the results of a study of the production of porous biodegradable composite mater...
Bone tissue engineering could provide an alternative to conventional treatments for fracture nonunio...
Biomaterial and scaffold development underpins the advancement of tissue engineering. Traditional sc...
Biodegradable and biocompatible polymeric scaffolds have been recently introduced for tissue regener...
Scaffolds are crucial to tissue engineering/regeneration. In this work, a technique combining a uniq...
Biodegradable and biocompatible polymeric scaffolds have been recently introduced for tissue regener...