This study investigated the potential of amniotic fluid stem cells (AFSCs) to synthesize mineralized extracellular matrix (ECM) within different porous scaffolds of collagen, poly-D,L-lactic acid (PDLLA), and silk fibroin. The AFSCs were initially differentiated by using an osteogenic medium in two-dimensional culture, and expression of specific bone proteins and the physiologic mineral production by the AFSCs were analyzed. In particular, during differentiation process, AFSCs expressed proteins like Runt-related transcription factor 2 (Runx2), Osterix, Osteopontin, and Osteocalcin with a sequential expression, analogous to those occurring during osteoblast differentiation, and produced extracellular calcium stores. AFSCs were then cultured...
Silk fibroin is an important polymer for scaffold designs, forming biocompatible and mechanically ro...
Tissue engineering strategies usually require cell isolation and combination with a suitable biomate...
The use of extracellular matrix materials as scaffolds for the repair and regeneration of tissues is...
This study investigated the potential of amniotic fluid stem cells (AFSCs) to synthesize mineralized...
Insufficient availability of osteogenic cells limits bone regeneration through cell-based therapies....
In tissue engineering, stem cells have become an ideal cell source that can differentiate into most ...
AbstractCell based therapies for bone regeneration are an exciting emerging technology, but the avai...
The main aim of this study was the comparative evaluation of fibroin scaffolds combined with human s...
Bone tissue engineering strategies require cells with high proliferative and osteogenic potential as...
AbstractThe repair of skeletal defects remains a substantial economic and biomedical burden. The ext...
Mesenchymal stem cells are present in many tissues of the human body, including amniotic fluid (AF) ...
Human amniotic fluid-derived stem cells (hAFCs) are pluripotent fetal cells capable of differentiati...
To investigate the potential of human amniotic mesenchymal cells (hAMC) serving as seeding cells in ...
Fast remineralization of bone defects by means of tissue engineering is one of many targets in ortho...
New technologies in orthopedic and maxillofacial surgery are generating an increasing demand of biom...
Silk fibroin is an important polymer for scaffold designs, forming biocompatible and mechanically ro...
Tissue engineering strategies usually require cell isolation and combination with a suitable biomate...
The use of extracellular matrix materials as scaffolds for the repair and regeneration of tissues is...
This study investigated the potential of amniotic fluid stem cells (AFSCs) to synthesize mineralized...
Insufficient availability of osteogenic cells limits bone regeneration through cell-based therapies....
In tissue engineering, stem cells have become an ideal cell source that can differentiate into most ...
AbstractCell based therapies for bone regeneration are an exciting emerging technology, but the avai...
The main aim of this study was the comparative evaluation of fibroin scaffolds combined with human s...
Bone tissue engineering strategies require cells with high proliferative and osteogenic potential as...
AbstractThe repair of skeletal defects remains a substantial economic and biomedical burden. The ext...
Mesenchymal stem cells are present in many tissues of the human body, including amniotic fluid (AF) ...
Human amniotic fluid-derived stem cells (hAFCs) are pluripotent fetal cells capable of differentiati...
To investigate the potential of human amniotic mesenchymal cells (hAMC) serving as seeding cells in ...
Fast remineralization of bone defects by means of tissue engineering is one of many targets in ortho...
New technologies in orthopedic and maxillofacial surgery are generating an increasing demand of biom...
Silk fibroin is an important polymer for scaffold designs, forming biocompatible and mechanically ro...
Tissue engineering strategies usually require cell isolation and combination with a suitable biomate...
The use of extracellular matrix materials as scaffolds for the repair and regeneration of tissues is...