Background Surface properties of biocompatible scaffolds can be easily modified using bioactive molecules to control stem cell differentiation into the osteogenic lineage. An innovative solution is the use of a polydopamine coating as linking strategy to bind signal molecules capable of directing stem cell differentiation towards the bone lineage. This simple approach can offer a solution for the fabrication of osteoinductive materials with improved efficacy in the field of bone tissue engineering. Aim of the study. Design a bioactive scaffold coated with polydopamine as spongy material to adsorb dexamethasone and induce osteogenic differentiation of human adipose mesenchymal stem cell (hASCs). Results and discussion. In this study, a...
To investigate the potential application of bone marrow stromal cells (BMSCs) and an injectable sodi...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
Hydrogel surface properties can be modified to form bioactive interfaces to modulate the osteogenic ...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
The present work is focused on the development of gelatin-based scaffolds crosslinked through carbod...
The present work is focused on the development of gelatin-based scaffolds crosslinked through carbod...
Introduction: Physical and mechanical properties of ceramic-based scaffolds can be modulated by intr...
Traumatisms, infections and bone disorders are main causes that affect bone homeostasis and produce ...
Surface coating is the simplest surface modification. However, bioactive molecules can not spread we...
Abstract Background A novel biodegradable scaffold including gelatin (G), chitooligosaccharide (COS)...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
This study reports on the development of a scaffold with a gradient of bioactive solid signal embedd...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
To investigate the potential application of bone marrow stromal cells (BMSCs) and an injectable sodi...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
Hydrogel surface properties can be modified to form bioactive interfaces to modulate the osteogenic ...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
The present work is focused on the development of gelatin-based scaffolds crosslinked through carbod...
The present work is focused on the development of gelatin-based scaffolds crosslinked through carbod...
Introduction: Physical and mechanical properties of ceramic-based scaffolds can be modulated by intr...
Traumatisms, infections and bone disorders are main causes that affect bone homeostasis and produce ...
Surface coating is the simplest surface modification. However, bioactive molecules can not spread we...
Abstract Background A novel biodegradable scaffold including gelatin (G), chitooligosaccharide (COS)...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
This study reports on the development of a scaffold with a gradient of bioactive solid signal embedd...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
To investigate the potential application of bone marrow stromal cells (BMSCs) and an injectable sodi...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...