Osteoporosis is a skeletal disease characterized by bone loss and bone microarchitectural deterioration. The combination of smart materials and stem cells represents a new therapeutic approach. In the present study, highly porous scaffolds are prepared by combining the conducting polymer PEDOT:PSS with collagen type I, the most abundant protein in bone. The inclusion of collagen proves to be an effective way to modulate their mechanical properties and it induces an increase in scaffolds’ electrochemical impedance. The biomimetic scaffolds support neural crest-derived stem cell osteogenic differentiation, with no need for scaffold pre-conditioning contrarily to other reports
Electrospun scaffolds are widely used for various biomedical applications. In this study, we prepare...
Electrospun scaffolds are widely used for various biomedical applications. In this study, we prepare...
Electrospun scaffolds are widely used for various biomedical applications. In this study, we prepare...
Abstract: Osteoporosis is a skeletal disease characterized by bone loss and bone microarchitectural ...
© 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...
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...
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
Conjugated polymers have been increasingly considered for the design of conductive materials in the ...
Tissue scaffolds allowing the behaviour of the cells that reside on them to be controlled are of par...
Considering the well-known phenomenon of enhancing bone healing by applying electromagnetic stimulat...
Electrospun scaffolds are widely used for various biomedical applications. In this study, we prepare...
Electrospun scaffolds are widely used for various biomedical applications. In this study, we prepare...
Electrospun scaffolds are widely used for various biomedical applications. In this study, we prepare...
Electrospun scaffolds are widely used for various biomedical applications. In this study, we prepare...
Abstract: Osteoporosis is a skeletal disease characterized by bone loss and bone microarchitectural ...
© 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...
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...
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
Conjugated polymers have been increasingly considered for the design of conductive materials in the ...
Tissue scaffolds allowing the behaviour of the cells that reside on them to be controlled are of par...
Considering the well-known phenomenon of enhancing bone healing by applying electromagnetic stimulat...
Electrospun scaffolds are widely used for various biomedical applications. In this study, we prepare...
Electrospun scaffolds are widely used for various biomedical applications. In this study, we prepare...
Electrospun scaffolds are widely used for various biomedical applications. In this study, we prepare...
Electrospun scaffolds are widely used for various biomedical applications. In this study, we prepare...