Assessing cell morphology and function, as well as biomaterial performance in cell cultures, is one of the key challenges in cell biology and tissue engineering (TE) research. In TE, there is an urgent need for methods to image actual three-dimensional (3D) cell cultures and access the living cells. This is difficult using established optical microscopy techniques such as wide-field or confocal microscopy. To address the problem, we have developed a new protocol using Optical Projection Tomography (OPT) to extract quantitative and qualitative measurements from hydrogel cell cultures. Using our tools, we demonstrated the method by analyzing cell response in three different hydrogel formulations in 3D with 1.5 mm diameter samples of: gellan g...
Techniques for cellular encapsulation within three-dimensional (3D) structures, such as bioprinting ...
Hydrogels have been used as synthetic mimics of 3D extracellular matrices (ECM) and their physical p...
The goal of tissue engineering is to create the functional engineered tissue to replace or repair th...
Assessing cell morphology and function, as well as biomaterial performance in cell cultures, is one ...
3D cell culturing has become attractive in biology and tissue engineering laboratories as it mimics ...
The microstructure and permeability are crucial factors for the development of hydrogels for tissue ...
Current issues in both tissue engineering and cell biology deal with cell behavior extensively in 3D...
Imaging technologies for three-dimensional (3D) analyses are needed for acceleration of progress in ...
Advances in cell biology and tissue engineering rely heavily on performing 2D cell culture experimen...
In the field of tissue engineering, there is a need for methods that allow assessing the performance...
Gellan gum is a hydrogel with potential for soft tissue engineering but a quick and thorough method ...
An Optical Projection Tomography (OPT) system was developed and optimized to image 3D tissue enginee...
Materials that are evaluated for bioengineering purposes are carefully tested to evaluate cellular i...
This Master’s thesis addresses the issue of the possibility of the imaging and analysis of the live ...
To promote the transition of cell cultures from 2D to 3D, hydrogels are needed to biomimic the extra...
Techniques for cellular encapsulation within three-dimensional (3D) structures, such as bioprinting ...
Hydrogels have been used as synthetic mimics of 3D extracellular matrices (ECM) and their physical p...
The goal of tissue engineering is to create the functional engineered tissue to replace or repair th...
Assessing cell morphology and function, as well as biomaterial performance in cell cultures, is one ...
3D cell culturing has become attractive in biology and tissue engineering laboratories as it mimics ...
The microstructure and permeability are crucial factors for the development of hydrogels for tissue ...
Current issues in both tissue engineering and cell biology deal with cell behavior extensively in 3D...
Imaging technologies for three-dimensional (3D) analyses are needed for acceleration of progress in ...
Advances in cell biology and tissue engineering rely heavily on performing 2D cell culture experimen...
In the field of tissue engineering, there is a need for methods that allow assessing the performance...
Gellan gum is a hydrogel with potential for soft tissue engineering but a quick and thorough method ...
An Optical Projection Tomography (OPT) system was developed and optimized to image 3D tissue enginee...
Materials that are evaluated for bioengineering purposes are carefully tested to evaluate cellular i...
This Master’s thesis addresses the issue of the possibility of the imaging and analysis of the live ...
To promote the transition of cell cultures from 2D to 3D, hydrogels are needed to biomimic the extra...
Techniques for cellular encapsulation within three-dimensional (3D) structures, such as bioprinting ...
Hydrogels have been used as synthetic mimics of 3D extracellular matrices (ECM) and their physical p...
The goal of tissue engineering is to create the functional engineered tissue to replace or repair th...