Multifunctional nanofibrous scaffolds for effective bone tissue engineering (BTE) application must incorporate factors to promote neovascularization and tissue regeneration. In this study, silica-coated gold nanoparticles Au(SiO2) were tested for their ability to promote differentiation of human mesenchymal stem cells (hMSCs) into osteoblasts. Biocompatible poly-ε-caprolactone (PCL), PCL/silk fibroin (SF) and PCL/SF/Au(SiO2) loaded nanofibrous scaffolds were first fabricated by an electrospinning method. Electrospun nanofibrous scaffolds were characterized for fiber architecture, porosity, pore size distribution, fiber wettability and the relevant mechanical properties using field emission scanning electron microscopy (FESEM), porosimetry, ...
© 2018 Elsevier B.V. Although growth factors and drugs (BMP-2, dexamethasone, etc.) have been widely...
Objective(s): In this study, the effect of electrospun fiber orientation on proliferation and differ...
Bone transplants are used to treat fractures and increase new tissue development in bone tissue engi...
The strategy of incorporating bioactive inorganic nanomaterials without side effects as osteoinducti...
Bone grafts are increasingly used for correcting bone fractures defects. Massive implants usually re...
Hybrid biocomposite nanofibrous structures that mimics native extracellular matrix have been extensi...
Novel silicate nanoplatelets that induce osteogenic differentiation of human mesenchymal stem cells ...
First published online 15 Aug 2014Herein, we evaluate the influence of a PLL–HA bilayer on the surfa...
Silica nanoparticles were applied onto the fiber surface of an interbonded three-dimensional polycap...
The development of a new family of implantable bioinspired materials is a focal point of bone tissue...
The development of functional scaffolds with improved osteogenic potential is important for successf...
The critical role of silica in bone homeostasis has motivated the development of silica-based biomat...
The development of a new family of implantable bioinspired materials is a focal point of bone tissue...
Silica nonwoven fabrics (SNFs) with enough mechanical strength are candidates as implantable scaffol...
Greiner J, Gottschalk M, Fokin N, et al. Natural and synthetic nanopores directing osteogenic differ...
© 2018 Elsevier B.V. Although growth factors and drugs (BMP-2, dexamethasone, etc.) have been widely...
Objective(s): In this study, the effect of electrospun fiber orientation on proliferation and differ...
Bone transplants are used to treat fractures and increase new tissue development in bone tissue engi...
The strategy of incorporating bioactive inorganic nanomaterials without side effects as osteoinducti...
Bone grafts are increasingly used for correcting bone fractures defects. Massive implants usually re...
Hybrid biocomposite nanofibrous structures that mimics native extracellular matrix have been extensi...
Novel silicate nanoplatelets that induce osteogenic differentiation of human mesenchymal stem cells ...
First published online 15 Aug 2014Herein, we evaluate the influence of a PLL–HA bilayer on the surfa...
Silica nanoparticles were applied onto the fiber surface of an interbonded three-dimensional polycap...
The development of a new family of implantable bioinspired materials is a focal point of bone tissue...
The development of functional scaffolds with improved osteogenic potential is important for successf...
The critical role of silica in bone homeostasis has motivated the development of silica-based biomat...
The development of a new family of implantable bioinspired materials is a focal point of bone tissue...
Silica nonwoven fabrics (SNFs) with enough mechanical strength are candidates as implantable scaffol...
Greiner J, Gottschalk M, Fokin N, et al. Natural and synthetic nanopores directing osteogenic differ...
© 2018 Elsevier B.V. Although growth factors and drugs (BMP-2, dexamethasone, etc.) have been widely...
Objective(s): In this study, the effect of electrospun fiber orientation on proliferation and differ...
Bone transplants are used to treat fractures and increase new tissue development in bone tissue engi...