The mechanics of the cellular microenvironment can be as critical as biochemistry in directing cell behavior. Many commonly utilized materials derived from extra-cellular-matrix create excellent scaffolds for cell growth, however, evaluating the relative mechanical and biochemical effects independently in 3D environments has been difficult in frequently used biopolymer matrices. Here we present 3D sodium alginate hydrogel microenvironments over a physiological range of stiffness (E=1.85 to 5.29kPa), with and without RGD binding sites or collagen fibers. We use confocal microscopy to measure the growth of multi-cellular aggregates (MCAs), of increasing metastatic potential in different elastic moduli of hydrogels, with and without bin...
New strategies are being developed to grow tissues and organs for transplantation from cells and bio...
The tumour microenvironment (TME) plays a significant role in cancer progression. Compared to bioch...
AbstractThis study adopts a combined computational and experimental approach to determine the mechan...
The mechanics of the cellular microenvironment can be as critical as biochemistry in directing cell ...
Three-dimensional (3D) cell cultures represent fundamental tools for the comprehension of cellular p...
Our bodies are immensely complex structures, with various systems, organs, and processes that are no...
The loss or failure of human tissues or organs is a frequent and costly problem in terms of life and...
Tissue Engineering is evolving as one of the most promising therapies in regenerative medicine. Biom...
Engineering synthetic hydrogels on a molecular basis to introduce natural features that are importan...
Three-dimensional (3D) cell culture employing encapsulation technologies represents the most advanta...
Different biomaterials are studied for purposes of tissue engineering, drug development and many fie...
Hydrogels have been widely used in biomedical applications such as scaffolds for tissue engineering,...
Hydrogels are increasingly used as a cell encapsulation and transplantation device. The successful u...
Three-dimensional (3D) cell culture employing encapsulation technologies represents the most advanta...
Mechanical stiffness and degradability are important material parameters in tissue engineering. The ...
New strategies are being developed to grow tissues and organs for transplantation from cells and bio...
The tumour microenvironment (TME) plays a significant role in cancer progression. Compared to bioch...
AbstractThis study adopts a combined computational and experimental approach to determine the mechan...
The mechanics of the cellular microenvironment can be as critical as biochemistry in directing cell ...
Three-dimensional (3D) cell cultures represent fundamental tools for the comprehension of cellular p...
Our bodies are immensely complex structures, with various systems, organs, and processes that are no...
The loss or failure of human tissues or organs is a frequent and costly problem in terms of life and...
Tissue Engineering is evolving as one of the most promising therapies in regenerative medicine. Biom...
Engineering synthetic hydrogels on a molecular basis to introduce natural features that are importan...
Three-dimensional (3D) cell culture employing encapsulation technologies represents the most advanta...
Different biomaterials are studied for purposes of tissue engineering, drug development and many fie...
Hydrogels have been widely used in biomedical applications such as scaffolds for tissue engineering,...
Hydrogels are increasingly used as a cell encapsulation and transplantation device. The successful u...
Three-dimensional (3D) cell culture employing encapsulation technologies represents the most advanta...
Mechanical stiffness and degradability are important material parameters in tissue engineering. The ...
New strategies are being developed to grow tissues and organs for transplantation from cells and bio...
The tumour microenvironment (TME) plays a significant role in cancer progression. Compared to bioch...
AbstractThis study adopts a combined computational and experimental approach to determine the mechan...