Mesenchymal stem cells (MSCs) represent multipotent stromal cells that can differentiate into a variety of cell types, including osteoblasts (bone cells), chondrocytes (cartilage cells), and adipocytes (fat cells). Their multi-potency provides a great promise as a cell source for tissue engineering and cell-based therapy for many diseases, particularly bone diseases and bone formation. To be able to direct and modulate the differentiation of MSCs into the desired cell types in situ in the tissue, nanotechnology is introduced and used to facilitate or promote cell growth and differentiation. These nano-materials can provide a fine structure and tuneable surface in nanoscales to help the cell adhesion and promote the cell growth and different...
The development of homogenously nano-patterned chemically modified surfaces that can be used to init...
Stem cells, either neural [NSCs] or mesenchymal [MSCs], possess tremendous untapped potential for ce...
As our population ages, there is a greater need for a suitable supply of engineered tissues to addre...
Mesenchymal stem cells (MSCs) represent multipotent stromal cells that can differentiate into a vari...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
In this project the influences on human adult mesenchymal stem cells using nanomechanical stimulatio...
A key tenet of bone tissue engineering is the development of scaffold materials that can stimulate s...
In this project the influences on human adult mesenchymal stem cells using nanomechanical stimulatio...
Mesenchymal stem cells (MSCs) are adult stem cells which show differentiation capabilities toward va...
A key tenet of bone tissue engineering is the development of scaffold materials that can stimulate s...
It is likely that mesenchymal stem cells will find use in many autologous regenerative therapies. Ho...
It is likely that mesenchymal stem cells will find use in many autologous regenerative therapies. Ho...
Stem cells are known for their potential to repair damaged tissues. The adhesion, growth and differe...
Out of their niche environment, adult stem cells, such as mesenchymal stem cells (MSCs), spontaneous...
As our population ages, there is a greater need for a suitable supply of engineered tissues to addre...
The development of homogenously nano-patterned chemically modified surfaces that can be used to init...
Stem cells, either neural [NSCs] or mesenchymal [MSCs], possess tremendous untapped potential for ce...
As our population ages, there is a greater need for a suitable supply of engineered tissues to addre...
Mesenchymal stem cells (MSCs) represent multipotent stromal cells that can differentiate into a vari...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
In this project the influences on human adult mesenchymal stem cells using nanomechanical stimulatio...
A key tenet of bone tissue engineering is the development of scaffold materials that can stimulate s...
In this project the influences on human adult mesenchymal stem cells using nanomechanical stimulatio...
Mesenchymal stem cells (MSCs) are adult stem cells which show differentiation capabilities toward va...
A key tenet of bone tissue engineering is the development of scaffold materials that can stimulate s...
It is likely that mesenchymal stem cells will find use in many autologous regenerative therapies. Ho...
It is likely that mesenchymal stem cells will find use in many autologous regenerative therapies. Ho...
Stem cells are known for their potential to repair damaged tissues. The adhesion, growth and differe...
Out of their niche environment, adult stem cells, such as mesenchymal stem cells (MSCs), spontaneous...
As our population ages, there is a greater need for a suitable supply of engineered tissues to addre...
The development of homogenously nano-patterned chemically modified surfaces that can be used to init...
Stem cells, either neural [NSCs] or mesenchymal [MSCs], possess tremendous untapped potential for ce...
As our population ages, there is a greater need for a suitable supply of engineered tissues to addre...