Many nanoscale materials have been developed to investigate the effects on stem cell differentiations via topographical and chemical cues for applications in tissue engineering and regenerative medicine. The use of plant viruses as cell supporting substrates has been of particular interest due to the rapid induction of bone marrow derived mesenchymal stem cells (BMSCs) towards osteogenic cells. In this study, the role of Tobacco mosaic virus (TMV) and its early effects on osteoinduction with particular emphasis on the regulation of bone morphogenetic protein-2 (BMP2) was examined. We observed that the cells on the virus substrate immediately aggregated and formed bone-like nodules within 24 hours. An immediate increase in BMP2 gene and prot...
Mesenchymal stem cells (MSCs) represent multipotent stromal cells that can differentiate into a vari...
We produced and isolated tobacco mosaic virus-like particles (TMV VLPs) from bacteria, which are dev...
Nanotopographic cues from biomaterials exert powerful effects on the osteogenic differentiation of m...
Many nanoscale materials have been developed to investigate the effects on stem cell differentiation...
Cell substrate interactions play a vital role in governing crucial cell functions such as adhesion, ...
Bone marrow stromal cells (BMSCs) have the potential to differentiate into osteoblasts, chondrocytes...
One key aspect of tissue engineering is to develop biomimetic scaffolding materials that can modulat...
Viruses are monodispersed biomacromolecules with well-defined 3-D structures at the nanometer level....
For tissue engineering and regenerative medicine, it is important to understand factors directing th...
Bone tissue engineering, gene therapy based on human mesenchymal stem cells (MSCs) and silk fibroin ...
One of the major research directions of tissue engineering is to develop artificial scaffolds that c...
Plant viruses have been highlighted among material research due to their well-defined structures in ...
Plant virus nanoparticles (VNPs) have many unique advantages, including their ability to self-assemb...
This research focused on developing and using plant virus based scaffolds to understand substrate co...
Osteoporosis is a systemic skeletal disorder characterized by excessive osteoclastic bone resorption...
Mesenchymal stem cells (MSCs) represent multipotent stromal cells that can differentiate into a vari...
We produced and isolated tobacco mosaic virus-like particles (TMV VLPs) from bacteria, which are dev...
Nanotopographic cues from biomaterials exert powerful effects on the osteogenic differentiation of m...
Many nanoscale materials have been developed to investigate the effects on stem cell differentiation...
Cell substrate interactions play a vital role in governing crucial cell functions such as adhesion, ...
Bone marrow stromal cells (BMSCs) have the potential to differentiate into osteoblasts, chondrocytes...
One key aspect of tissue engineering is to develop biomimetic scaffolding materials that can modulat...
Viruses are monodispersed biomacromolecules with well-defined 3-D structures at the nanometer level....
For tissue engineering and regenerative medicine, it is important to understand factors directing th...
Bone tissue engineering, gene therapy based on human mesenchymal stem cells (MSCs) and silk fibroin ...
One of the major research directions of tissue engineering is to develop artificial scaffolds that c...
Plant viruses have been highlighted among material research due to their well-defined structures in ...
Plant virus nanoparticles (VNPs) have many unique advantages, including their ability to self-assemb...
This research focused on developing and using plant virus based scaffolds to understand substrate co...
Osteoporosis is a systemic skeletal disorder characterized by excessive osteoclastic bone resorption...
Mesenchymal stem cells (MSCs) represent multipotent stromal cells that can differentiate into a vari...
We produced and isolated tobacco mosaic virus-like particles (TMV VLPs) from bacteria, which are dev...
Nanotopographic cues from biomaterials exert powerful effects on the osteogenic differentiation of m...