[EN] Purpose: To study the influence of scaffold properties on the organization of ¿in vivo¿ cartilage regeneration. Our hypothesis is that stress transmission to the cells seeded inside the scaffold pores or surrounding it, which is highly dependent on the scaffold properties, determine differentiation of both mesenchymal cells and dedifferentiated autologous chondrocytes. Methods: Four series of porous scaffolds made of different polyacrylate polymers, previously seeded with cultured rabbit chondrocytes or without cells preseeded, were implanted in cartilage defects in rabbits. Subchondral bone was always injured during the surgery in order to allow blood to reach the implantation site and fill scaffold pores. Results: Three months after ...
Despite the fact that mesenchymal stem cells (MSC) offer clinical potential for osteoarthritis appli...
SummaryObjectiveIt was hypothesized that controlled, scaffold removal in engineered cartilage constr...
An important tenet in designing scaffolds for regenerative medicine consists in mimicking the dynami...
[EN] This study examines a biocompatible scaffold series of random copolymer networks P(EA-HEA) made...
Background: Cartilage tissue engineering using synthetic scaffolds allows maintaining mechanical int...
SummaryObjectiveThe natural repair of osteochondral defects can be enhanced with biocompatible, biod...
SummaryObjectiveTo investigate whether two different multiphasic implants could initiate and sustain...
A model is proposed to assess mechanical behaviour of tissue engineering scaffolds and predict their...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2007.Includ...
Association of biomaterials with autologous cells can provide a new generation of implantable device...
Cartilage has a poor regenerative capacity. Tissue-engineering approaches using porous scaffolds see...
Cartilage has a poor regenerative capacity. Tissue-engineering approaches using porous scaffolds see...
Scaffolds for articular cartilage repair have to be optimally biodegradable with simultaneous promot...
Articular cartilage is an incredibly tough tissue owing to its ability to withstand repetitive compr...
Introduction: The effect of scaffold pore size and interconnectivity is undoubtedly a crucial factor...
Despite the fact that mesenchymal stem cells (MSC) offer clinical potential for osteoarthritis appli...
SummaryObjectiveIt was hypothesized that controlled, scaffold removal in engineered cartilage constr...
An important tenet in designing scaffolds for regenerative medicine consists in mimicking the dynami...
[EN] This study examines a biocompatible scaffold series of random copolymer networks P(EA-HEA) made...
Background: Cartilage tissue engineering using synthetic scaffolds allows maintaining mechanical int...
SummaryObjectiveThe natural repair of osteochondral defects can be enhanced with biocompatible, biod...
SummaryObjectiveTo investigate whether two different multiphasic implants could initiate and sustain...
A model is proposed to assess mechanical behaviour of tissue engineering scaffolds and predict their...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2007.Includ...
Association of biomaterials with autologous cells can provide a new generation of implantable device...
Cartilage has a poor regenerative capacity. Tissue-engineering approaches using porous scaffolds see...
Cartilage has a poor regenerative capacity. Tissue-engineering approaches using porous scaffolds see...
Scaffolds for articular cartilage repair have to be optimally biodegradable with simultaneous promot...
Articular cartilage is an incredibly tough tissue owing to its ability to withstand repetitive compr...
Introduction: The effect of scaffold pore size and interconnectivity is undoubtedly a crucial factor...
Despite the fact that mesenchymal stem cells (MSC) offer clinical potential for osteoarthritis appli...
SummaryObjectiveIt was hypothesized that controlled, scaffold removal in engineered cartilage constr...
An important tenet in designing scaffolds for regenerative medicine consists in mimicking the dynami...