Remaining challenges in auricular cartilage tissue engineering include acquiring sufficient amounts of regeneration-competent cells and subsequent production of high quality neocartilage. Progenitor cells are a resident subpopulation of native cartilage, displaying a high proliferative and cartilage-forming capacity, yet their potential for regenerative medicine is vastly understudied. In this study, human auricular cartilage progenitor cells were newly identified in healthy cartilage and, importantly, in microtia- impaired chondral remnants. Their cartilage repair potential was assessed via in vitro 3D culture upon encapsulation in a gelatin-based hydrogel, and subsequent biochemical, mechanical and histological analyses. Auricular cartila...
Currently, patients with external ear deformities rely on hyaline cartilage grafts or silicone prost...
Bioengineering of the human auricle remains a significant challenge, where the complex and unique sh...
In the repair of cartilage defects, autologous tissue offers the advantage of lasting biocompatibili...
Remaining challenges in auricular cartilage tissue engineering include acquiring sufficient amounts ...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
Regenerative medicine strategies have the potential to substitute surgical techniques for reconstruc...
Children suffering from microtia have few options for auricular reconstruction. Tissue engineering a...
Cartilage has limited regenerative capability, hence its repair in patients with congenital malforma...
Children suffering from microtia have few options for auricular reconstruction. Tissue engineering a...
The reconstruction of auricular deformities is a very challenging surgical procedure that could bene...
Recent advances in regenerative medicine place us in a unique position to improve the quality of eng...
Recent advances in regenerative medicine place us in a unique position to improve the quality of eng...
Recent advances in regenerative medicine place us in a unique position to improve the quality of eng...
Recent advances in regenerative medicine place us in a unique position to improve the quality of eng...
Microtia is a congenital external ear malformation that can seriously influence the psychological an...
Currently, patients with external ear deformities rely on hyaline cartilage grafts or silicone prost...
Bioengineering of the human auricle remains a significant challenge, where the complex and unique sh...
In the repair of cartilage defects, autologous tissue offers the advantage of lasting biocompatibili...
Remaining challenges in auricular cartilage tissue engineering include acquiring sufficient amounts ...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
Regenerative medicine strategies have the potential to substitute surgical techniques for reconstruc...
Children suffering from microtia have few options for auricular reconstruction. Tissue engineering a...
Cartilage has limited regenerative capability, hence its repair in patients with congenital malforma...
Children suffering from microtia have few options for auricular reconstruction. Tissue engineering a...
The reconstruction of auricular deformities is a very challenging surgical procedure that could bene...
Recent advances in regenerative medicine place us in a unique position to improve the quality of eng...
Recent advances in regenerative medicine place us in a unique position to improve the quality of eng...
Recent advances in regenerative medicine place us in a unique position to improve the quality of eng...
Recent advances in regenerative medicine place us in a unique position to improve the quality of eng...
Microtia is a congenital external ear malformation that can seriously influence the psychological an...
Currently, patients with external ear deformities rely on hyaline cartilage grafts or silicone prost...
Bioengineering of the human auricle remains a significant challenge, where the complex and unique sh...
In the repair of cartilage defects, autologous tissue offers the advantage of lasting biocompatibili...