Silica nonwoven fabrics (SNFs) with enough mechanical strength are candidates as implantable scaffolds. Culture of cells therein is expected to affect the proliferation and differentiation of the cells through cell–cell and cell–SNF interactions. In this study, we examined three-dimensional (3D) SNFs as a scaffold of mesenchymal stem cells (MSCs) for bone tissue engineering applications. The interconnected highly porous microstructure of 3D SNFs is expected to allow omnidirectional cell–cell interactions, and the morphological similarity of a silica nanofiber to that of a fibrous extracellular matrix can contribute to the promotion of cell functions. 3D SNFs were prepared by the sol–gel process, and their mechanical properties were characte...
Numerous challenges remain in the successful clinical translation of cell-based therapies for muscul...
This in vitro study was conducted to evaluate the ability of two types of constructs of bioactive, s...
Using scaffolds with autologous stem cells is a golden strategy for the treatment of bone defects. I...
Silica nonwoven fabrics (SNFs) with enough mechanical strength are candidates as implantable scaffol...
In cartilage tissue engineering, three-dimensional (3D) scaffolds provide native extracellular matri...
Evaluations of the osteoblast-like cell responses and osteoconductivity of a non-woven silica gel fa...
Multifunctional nanofibrous scaffolds for effective bone tissue engineering (BTE) application must i...
Osteogenic differentiation is a tightly regulated process dependent on the stimuli provided by the m...
Osteogenic differentiation is a tightly regulated process dependent on the stimuli provided by the m...
Bone marrow and Adipose tissue are now recognized as an important source of postnatal mesenchymal st...
The aim was to construct a composite structure for bone tissue substitute on the basis of a degradab...
Bone tissue engineering success strongly depends on our ability to develop new materials combining o...
Ceramic-derived materials have shown enhanced osteogenic potential for bone tissue engineering appli...
Mesenchymal stem cells can be isolated from a variety of different sources, each having their own pe...
Three-dimensional elastic nanofibers (3D eNFs) can offer a suitable 3D dynamic microenvironment and ...
Numerous challenges remain in the successful clinical translation of cell-based therapies for muscul...
This in vitro study was conducted to evaluate the ability of two types of constructs of bioactive, s...
Using scaffolds with autologous stem cells is a golden strategy for the treatment of bone defects. I...
Silica nonwoven fabrics (SNFs) with enough mechanical strength are candidates as implantable scaffol...
In cartilage tissue engineering, three-dimensional (3D) scaffolds provide native extracellular matri...
Evaluations of the osteoblast-like cell responses and osteoconductivity of a non-woven silica gel fa...
Multifunctional nanofibrous scaffolds for effective bone tissue engineering (BTE) application must i...
Osteogenic differentiation is a tightly regulated process dependent on the stimuli provided by the m...
Osteogenic differentiation is a tightly regulated process dependent on the stimuli provided by the m...
Bone marrow and Adipose tissue are now recognized as an important source of postnatal mesenchymal st...
The aim was to construct a composite structure for bone tissue substitute on the basis of a degradab...
Bone tissue engineering success strongly depends on our ability to develop new materials combining o...
Ceramic-derived materials have shown enhanced osteogenic potential for bone tissue engineering appli...
Mesenchymal stem cells can be isolated from a variety of different sources, each having their own pe...
Three-dimensional elastic nanofibers (3D eNFs) can offer a suitable 3D dynamic microenvironment and ...
Numerous challenges remain in the successful clinical translation of cell-based therapies for muscul...
This in vitro study was conducted to evaluate the ability of two types of constructs of bioactive, s...
Using scaffolds with autologous stem cells is a golden strategy for the treatment of bone defects. I...