Worldwide, over 20 million patients suffer from bone disorders annually. Bone scaffolds are designed to integrate into host tissue without causing adverse reactions. Recently, chitosan, an easily available natural polymer, has been considered a suitable scaffold for bone tissue growth as it is a biocompatible, biodegradable, and non-toxic material with antimicrobial activity and osteoinductive capacity. In this work, chitosan was covalently and selectively biofunctionalized with two suitably designed bioactive synthetic peptides: a Vitronectin sequence (HVP) and a BMP-2 peptide (GBMP1a). Nuclear magnetic resonance (NMR), X-ray photoelectron spectroscopy (XPS), and Fourier transform infrared spectroscopy (FT-IR) investigations highlighted th...
In recent years, bone tissue engineering (BTE), as a multidisciplinary field, has shown considerable...
The current standard of care for bone reconstruction, whether secondary to injury, nonunion, cancer ...
Background: There are considerable socioeconomic costs associated with bone defects, making regenera...
Worldwide, over 20 million patients suffer from bone disorders annually. Bone scaffolds are designed...
Worldwide, over 20 million patients suffer from bone disorders annually. Bone scaffolds are designed...
Hybrid biomaterials allow for the improvement of the biological properties of materials and have bee...
The present work is focused on the design of a bioactive chitosan-based scaffold functionalized with...
The combination of tissue-engineered bone scaffolds with osteogenic induction molecules is an import...
The clinical translation of bioactive scaffolds for the treatment of large segmental bone defects ha...
Bioengineering products can help bone tissue regeneration. OBJECTIVE: There is an ongoing research f...
Recently, bone tissue engineering emerged as a viable therapeutic alternative, comprising bone impla...
Two cell-binding domains from FGF-2 (fibroblast growth factor-2) were shown to increase cell attachm...
Chitosan scaffolds were modified with RGDS (Arg–Gly–Asp–Ser) in the present work via an imide-bond f...
Realizing the clinical potential of human induced pluripotent stem cells (hiPSCs) in bone regenerati...
In recent years, bone tissue engineering which involves cells, three-dimensional (3-D) matrix and/or...
In recent years, bone tissue engineering (BTE), as a multidisciplinary field, has shown considerable...
The current standard of care for bone reconstruction, whether secondary to injury, nonunion, cancer ...
Background: There are considerable socioeconomic costs associated with bone defects, making regenera...
Worldwide, over 20 million patients suffer from bone disorders annually. Bone scaffolds are designed...
Worldwide, over 20 million patients suffer from bone disorders annually. Bone scaffolds are designed...
Hybrid biomaterials allow for the improvement of the biological properties of materials and have bee...
The present work is focused on the design of a bioactive chitosan-based scaffold functionalized with...
The combination of tissue-engineered bone scaffolds with osteogenic induction molecules is an import...
The clinical translation of bioactive scaffolds for the treatment of large segmental bone defects ha...
Bioengineering products can help bone tissue regeneration. OBJECTIVE: There is an ongoing research f...
Recently, bone tissue engineering emerged as a viable therapeutic alternative, comprising bone impla...
Two cell-binding domains from FGF-2 (fibroblast growth factor-2) were shown to increase cell attachm...
Chitosan scaffolds were modified with RGDS (Arg–Gly–Asp–Ser) in the present work via an imide-bond f...
Realizing the clinical potential of human induced pluripotent stem cells (hiPSCs) in bone regenerati...
In recent years, bone tissue engineering which involves cells, three-dimensional (3-D) matrix and/or...
In recent years, bone tissue engineering (BTE), as a multidisciplinary field, has shown considerable...
The current standard of care for bone reconstruction, whether secondary to injury, nonunion, cancer ...
Background: There are considerable socioeconomic costs associated with bone defects, making regenera...