In this study, a novel therapeutic cell delivery methodology in the form of hydrogel encapsulating cell-laden microspheres was developed and investigated. As a model cell for cartilage tissue engineering, chondrocytes were successfully encapsulated in gelatin-based microspheres (mostly of diameter 50–100 μm, centred at 75–100 μm) with high cell viability during the formation of microspheres via a water-in-oil single emulsion process under a low temperature without any chemical treatment. These cell-laden microspheres were then encapsulated in alginate-based hydrogel constructs. By elevating the temperature to 37 °C, the cell-laden microspheres were completely dissolved within 2 days, resulting in the same number of same-sized spherical cavi...
Tissue engineering is a promising method for the regeneration of cartilage defects. Thisapproach gen...
This study investigates human chondrocyte expansion on four macroporous gelatine microcarriers (Cult...
A gelatin-based hydrogel scaffold with highly uniform pore size and biocompatibility was fabricated ...
In this study, a novel therapeutic cell delivery methodology in the form of hydrogel encapsulating c...
Autologous Chondrocyte Implantation (ACI), which culturing the patient’s own chondrocytes and then i...
The regeneration of injured or damaged tissues by cell delivery approaches requires the fabrication ...
Tissue engineering, or the development of three-dimensional (3D) macroscopic biological tissues in v...
Since the cell encapsulation technology has been used for many areas, such as cell delivery, cell...
Stem cell injections for the treatment of articular cartilage damage are a promising approach to ach...
Due to their invasiveness as well as the complex properties of articular cartilage current treatment...
Tissue engineering is a multidisciplinary field that combines cells, biomaterial scaffolds and envir...
A three-dimensional (3D) scaffolding system for chondrocytes culture has been produced by agglomerat...
Tissue engineering has shown vast advancement in alleviating the urgent need for donor organs. Three...
Developing tissue-engineered constructs for clinical use must satisfy the fundamental biologic param...
Hydrogels hold a macromolecular structure comparable to that of native tissues and thus are very att...
Tissue engineering is a promising method for the regeneration of cartilage defects. Thisapproach gen...
This study investigates human chondrocyte expansion on four macroporous gelatine microcarriers (Cult...
A gelatin-based hydrogel scaffold with highly uniform pore size and biocompatibility was fabricated ...
In this study, a novel therapeutic cell delivery methodology in the form of hydrogel encapsulating c...
Autologous Chondrocyte Implantation (ACI), which culturing the patient’s own chondrocytes and then i...
The regeneration of injured or damaged tissues by cell delivery approaches requires the fabrication ...
Tissue engineering, or the development of three-dimensional (3D) macroscopic biological tissues in v...
Since the cell encapsulation technology has been used for many areas, such as cell delivery, cell...
Stem cell injections for the treatment of articular cartilage damage are a promising approach to ach...
Due to their invasiveness as well as the complex properties of articular cartilage current treatment...
Tissue engineering is a multidisciplinary field that combines cells, biomaterial scaffolds and envir...
A three-dimensional (3D) scaffolding system for chondrocytes culture has been produced by agglomerat...
Tissue engineering has shown vast advancement in alleviating the urgent need for donor organs. Three...
Developing tissue-engineered constructs for clinical use must satisfy the fundamental biologic param...
Hydrogels hold a macromolecular structure comparable to that of native tissues and thus are very att...
Tissue engineering is a promising method for the regeneration of cartilage defects. Thisapproach gen...
This study investigates human chondrocyte expansion on four macroporous gelatine microcarriers (Cult...
A gelatin-based hydrogel scaffold with highly uniform pore size and biocompatibility was fabricated ...