textViable tissue formation is often observed in peripheral regions of tissue engineering scaffolds whereas the interior fails to support viable tissue. This could be attributed to the fact that as cells within the pores of the scaffold begin to proliferate and secrete extracellular matrix, they simultaneously begin to occlude the pores and decrease supply of nutrients to the interior. Since transport within the scaffold is mainly a function of diffusion, careful design of the diffusion characteristics of the scaffold is critical. These transport issues relate to oxygen and nutrient delivery, waste removal, protein transport and cell migration, which in turn are governed by scaffold porosity and permeability. The current study addresses the...
Oxygen is not only crucial for cell survival but also a determinant for cell fate and function. Howe...
The supply of nutrients and the removal of waste products play a major role in tissue engineering. F...
Tissue engineering (TE) is a rapidly evolving interdisciplinary field that joins together materials ...
textViable tissue formation is often observed in peripheral regions of tissue engineering scaffolds ...
Tissue Engineering holds the promise to repair damaged human tissues and organs by engineering tissu...
MasterThe aim of this study was to maximize an oxygen diffusion capability within three-dimensional ...
The aim of this study was to maximize oxygen diffusion within a three-dimensional scaffold in order ...
Tissue engineering scaffolds are designed to support tissue self-healing within physiological enviro...
Oxygen plays a key role in human mesenchymal stem cell growth. Without adequate oxygen (hypoxic cond...
Oxygen is necessary for maintaining cell proliferation and viability and extracellular matrix (ECM) ...
This research posits a fundamental change in design philosophy for tissue engineering scaffolds from...
The advance of rapid prototyping techniques has significantly improved control over the pore network...
Soft tissue engineering presents significant challenges compared to other tissue engineering discipl...
Scaffold tissue engineering has proven promising for regenerative medicine that could potentially ...
To validate the importance of uniformity in pore size and structure of a scaffold for tissue enginee...
Oxygen is not only crucial for cell survival but also a determinant for cell fate and function. Howe...
The supply of nutrients and the removal of waste products play a major role in tissue engineering. F...
Tissue engineering (TE) is a rapidly evolving interdisciplinary field that joins together materials ...
textViable tissue formation is often observed in peripheral regions of tissue engineering scaffolds ...
Tissue Engineering holds the promise to repair damaged human tissues and organs by engineering tissu...
MasterThe aim of this study was to maximize an oxygen diffusion capability within three-dimensional ...
The aim of this study was to maximize oxygen diffusion within a three-dimensional scaffold in order ...
Tissue engineering scaffolds are designed to support tissue self-healing within physiological enviro...
Oxygen plays a key role in human mesenchymal stem cell growth. Without adequate oxygen (hypoxic cond...
Oxygen is necessary for maintaining cell proliferation and viability and extracellular matrix (ECM) ...
This research posits a fundamental change in design philosophy for tissue engineering scaffolds from...
The advance of rapid prototyping techniques has significantly improved control over the pore network...
Soft tissue engineering presents significant challenges compared to other tissue engineering discipl...
Scaffold tissue engineering has proven promising for regenerative medicine that could potentially ...
To validate the importance of uniformity in pore size and structure of a scaffold for tissue enginee...
Oxygen is not only crucial for cell survival but also a determinant for cell fate and function. Howe...
The supply of nutrients and the removal of waste products play a major role in tissue engineering. F...
Tissue engineering (TE) is a rapidly evolving interdisciplinary field that joins together materials ...