Culturing three-dimensional (3D) tissues with an appropriate microenvironment is a critical and fundamental technology in broad areas of cutting-edge bioengineering research. In addition, many technologies have engineered tissue functions. However, an effective system for transporting nutrients, waste, or oxygen to affect the functions of cell tissues has not been reported. In this study, we introduce a novel system that employs diffusion and convection to enhance transportation. To demonstrate the concept of the proposed system, three layers of normal human dermal fibroblast cell sheets are used as a model tissue, which is cultured on a general dish or porous collagen scaffold with perfusable channels for three days with and without the pe...
International audienceOver the last decade hydrogels, and more recently porous hydrogels, have shown...
Cells cultured on 2-Dimensional (2D) and 3-Dimensional (3D) substrates generally display significant...
DoctorRecent advances in tissue engineering and regenerative medicine offer new therapeutic opportun...
Objective: Three dimensional cell and tissue culture outcomes depend on mechanical forcesin their en...
Sufficient nutrient and oxygen transport is a potent modulator of cell proliferation in in vitro tis...
Clinicians have made practical efforts for over 100 years in replacing damaged tissues and organs. H...
Synthetic materials are known to initiate clinical complications such as inflammation, stenosis, and...
Synthetic materials are known to initiate clinical complications such as inflammation, stenosis, and...
This study presents a novel approach for threedimensional (3D) cell culture using a two-component sy...
The field of tissue engineering aims to provide solutions for the regeneration of organs and tissues...
Functional tissues generated under in vitro conditions are urgently needed in biomedical research. H...
Many of the findings in cell biology have come from cultures of cells grown in flat receptacles, but...
Tissue engineering aims at restoring or regenerating a damaged tissue. Often the tissue recreation o...
Limitations to nutrient transport provide a challenge to the development of 3D tissue-engineered con...
In order to fabricate an ideal scaffold to mimic the dermis skin layer, the scaffold must have the m...
International audienceOver the last decade hydrogels, and more recently porous hydrogels, have shown...
Cells cultured on 2-Dimensional (2D) and 3-Dimensional (3D) substrates generally display significant...
DoctorRecent advances in tissue engineering and regenerative medicine offer new therapeutic opportun...
Objective: Three dimensional cell and tissue culture outcomes depend on mechanical forcesin their en...
Sufficient nutrient and oxygen transport is a potent modulator of cell proliferation in in vitro tis...
Clinicians have made practical efforts for over 100 years in replacing damaged tissues and organs. H...
Synthetic materials are known to initiate clinical complications such as inflammation, stenosis, and...
Synthetic materials are known to initiate clinical complications such as inflammation, stenosis, and...
This study presents a novel approach for threedimensional (3D) cell culture using a two-component sy...
The field of tissue engineering aims to provide solutions for the regeneration of organs and tissues...
Functional tissues generated under in vitro conditions are urgently needed in biomedical research. H...
Many of the findings in cell biology have come from cultures of cells grown in flat receptacles, but...
Tissue engineering aims at restoring or regenerating a damaged tissue. Often the tissue recreation o...
Limitations to nutrient transport provide a challenge to the development of 3D tissue-engineered con...
In order to fabricate an ideal scaffold to mimic the dermis skin layer, the scaffold must have the m...
International audienceOver the last decade hydrogels, and more recently porous hydrogels, have shown...
Cells cultured on 2-Dimensional (2D) and 3-Dimensional (3D) substrates generally display significant...
DoctorRecent advances in tissue engineering and regenerative medicine offer new therapeutic opportun...