Tissue scaffolds allowing the behaviour of the cells that reside on them to be controlled are of particular interest for tissue engineering. Herein we describe biomineralized conducting polymer-based bone tissue scaffolds that facilitate the electrical stimulation of human mesenchymal stem cells, resulting in enhancement of their differentiation towards osteogenic outcomes
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
Mesenchymal stem cells (MSCs) have a great potential in the field of tissue engineering and regenera...
Tissue scaffolds allowing the behaviour of the cells that reside within them to be controlled are of...
Osteoporosis is a skeletal disease characterized by bone loss and bone microarchitectural deteriorat...
The influences of physical stimuli such as surface elasticity, topography, and chemistry over mesenc...
Abstract: Osteoporosis is a skeletal disease characterized by bone loss and bone microarchitectural ...
Tissue scaffolds allowing the behaviour of the cells that reside on them to be controlled are of par...
© Copyright Materials Research Society 2020. Osteoporosis is a skeletal disease characterized by bon...
AbstractOsteoporosis is a skeletal disease characterized by bone loss and bone microarchitectural de...
Human Mesenchymal Stem cells (hMSCs) have the unique potential to differentiate into multiple cell t...
Human Mesenchymal Stem cells (hMSCs) have the unique potential to differentiate into multiple cell t...
Directing differential cellular response by manipulating the physical characteristics of the materia...
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
Mesenchymal stem cells (MSCs) have a great potential in the field of tissue engineering and regenera...
Tissue scaffolds allowing the behaviour of the cells that reside within them to be controlled are of...
Osteoporosis is a skeletal disease characterized by bone loss and bone microarchitectural deteriorat...
The influences of physical stimuli such as surface elasticity, topography, and chemistry over mesenc...
Abstract: Osteoporosis is a skeletal disease characterized by bone loss and bone microarchitectural ...
Tissue scaffolds allowing the behaviour of the cells that reside on them to be controlled are of par...
© Copyright Materials Research Society 2020. Osteoporosis is a skeletal disease characterized by bon...
AbstractOsteoporosis is a skeletal disease characterized by bone loss and bone microarchitectural de...
Human Mesenchymal Stem cells (hMSCs) have the unique potential to differentiate into multiple cell t...
Human Mesenchymal Stem cells (hMSCs) have the unique potential to differentiate into multiple cell t...
Directing differential cellular response by manipulating the physical characteristics of the materia...
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
Mesenchymal stem cells (MSCs) have a great potential in the field of tissue engineering and regenera...