New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2- hydroxyethyl methacrylate) (PHEMA), and a natural polymer, gelatin, with a ceramic component, nanohydroxyapatite (ID nHAp) dopped with metal ions. The combination of a synthetic polymer, to be able to tune the structure and the physicochemical and mechanical properties, and a natural polymer, to ensure the specific biological functions of the scaffold, with inorganic filler was applied. The goal was to make a new material with superior properties for applications in the biomedical field which mimics as closely as possible the native bone extracellular matrix (ECM). Biodegrad able PHEMA hydrogel was obtained by crosslinking HEMA by poly(β-amino est...
Bioactive synthetic hydrogels have emerged as promising materials because they can provide molecular...
The demand of new strategies for the induction of bone regeneration is continuously increasing. Biom...
Biodegradable and biocompatible polymeric scaffolds have been recently introduced for tissue regener...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
Hydrogel scaffolding biomaterials are one of the most attractive polymeric biomaterials for regenera...
New materials that mimic natural bone properties, matching functional, mechanical, and biological pr...
Gelatin hydrogels have great potential in regenerative medicine but their weak mechanical properties...
Bioactive synthetic hydrogels have emerged as promising materials because they can provide molecular...
The demand of new strategies for the induction of bone regeneration is continuously increasing. Biom...
Biodegradable and biocompatible polymeric scaffolds have been recently introduced for tissue regener...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
Hydrogel scaffolding biomaterials are one of the most attractive polymeric biomaterials for regenera...
New materials that mimic natural bone properties, matching functional, mechanical, and biological pr...
Gelatin hydrogels have great potential in regenerative medicine but their weak mechanical properties...
Bioactive synthetic hydrogels have emerged as promising materials because they can provide molecular...
The demand of new strategies for the induction of bone regeneration is continuously increasing. Biom...
Biodegradable and biocompatible polymeric scaffolds have been recently introduced for tissue regener...