Bone regeneration is a highly complex physiological process regulated by several factors. In particular, bone-mimicking extracellular matrix and available osteogenic growth factors such as bone morphogenetic protein (BMP) have been regarded as key contributors for bone regeneration. In this study, we developed a biomimetic hybrid scaffold (CEGH) with sustained release of BMP-2 that would result in enhanced bone formation. This hybrid scaffold, composed of BMP-2-loaded cryoelectrospun poly(ε-caprolactone) (PCL) (CE) surrounded by a macroporous gelatin/heparin cryogel (GH), is designed to overcome the drawbacks of the relatively weak mechanical properties of cryogels and poor biocompatibility and hydrophobicity of electrospun PCL. The GH comp...
Human adipose-derived mesenchymal stem/stromal cells (Ad-MSCs) have great potential for bone tissue ...
The hypothesis of this study was that the extent of bone regeneration could be enhanced by using sca...
In the present study, a biomimetic three-dimensional hybrid scaffold has been designed considering t...
Osteoinduction can be enhanced by combining scaffolds with bone morphogenic protein-2 (BMP-2). Howev...
In vitro and in vivo approaches to investigate the ability to generate biomimetic scaffolds for bone...
peer-reviewedBone defects arising from injury and/or disease are a common and debilitating clinical ...
Bone is the second most commonly transplanted tissue in the United States. Limitations of current b...
Bone is the second most commonly transplanted tissue in the United States. Limitations of current b...
Designing biomaterials for bone-substitute applications is still a challenge regarding the natural c...
It is desirable to combine load-bearing and bone regeneration capabilities in a single bone tissue e...
Traumatisms, infections and bone disorders are main causes that affect bone homeostasis and produce ...
In tissue engineering, incorporation of bone morphogenetic protein-2 (BMP-2) into biomaterial scaffo...
The ability to deliver, over time, biologically active osteogenic growth factors by means of designe...
Poly-ε-caprolactone (PCL) is a promising synthetic material in bone tissue engineering (BTE). Partic...
In this study, a novel macroporous composite biomaterial consisting of gelatin-hydroxyapatite-calciu...
Human adipose-derived mesenchymal stem/stromal cells (Ad-MSCs) have great potential for bone tissue ...
The hypothesis of this study was that the extent of bone regeneration could be enhanced by using sca...
In the present study, a biomimetic three-dimensional hybrid scaffold has been designed considering t...
Osteoinduction can be enhanced by combining scaffolds with bone morphogenic protein-2 (BMP-2). Howev...
In vitro and in vivo approaches to investigate the ability to generate biomimetic scaffolds for bone...
peer-reviewedBone defects arising from injury and/or disease are a common and debilitating clinical ...
Bone is the second most commonly transplanted tissue in the United States. Limitations of current b...
Bone is the second most commonly transplanted tissue in the United States. Limitations of current b...
Designing biomaterials for bone-substitute applications is still a challenge regarding the natural c...
It is desirable to combine load-bearing and bone regeneration capabilities in a single bone tissue e...
Traumatisms, infections and bone disorders are main causes that affect bone homeostasis and produce ...
In tissue engineering, incorporation of bone morphogenetic protein-2 (BMP-2) into biomaterial scaffo...
The ability to deliver, over time, biologically active osteogenic growth factors by means of designe...
Poly-ε-caprolactone (PCL) is a promising synthetic material in bone tissue engineering (BTE). Partic...
In this study, a novel macroporous composite biomaterial consisting of gelatin-hydroxyapatite-calciu...
Human adipose-derived mesenchymal stem/stromal cells (Ad-MSCs) have great potential for bone tissue ...
The hypothesis of this study was that the extent of bone regeneration could be enhanced by using sca...
In the present study, a biomimetic three-dimensional hybrid scaffold has been designed considering t...