International audienceCartilage engineering remains a challenge due to the difficulties in creating an in vitro functional implant similar to the native tissue. An approach recently explored for the development of autologous replacements involves the differentiation of stem cells into chondrocytes. To initiate this chondrogenesis, a degree of compaction of the stem cells is required; hence, we demonstrated the feasibility of magnetically condensing cells, both within thick scaffolds and scaffold-free, using miniaturized magnetic field sources as cell attractors. This magnetic approach was also used to guide aggregate fusion and to build scaffold-free, organized, three-dimensional (3D) tissues several millimeters in size. In addition to havi...
Pulsed electromagnetic field therapy, or pulsed signal therapy, has shown efficacy in treating many ...
he fundamental elements of tissue regeneration are cells, biochemical signals and the three-dimensio...
An important topic in cartilage tissue engineering is the development of biomimetic scaffolds which ...
International audienceCartilage engineering remains a challenge due to the difficulties in creating ...
International audienceTissue engineering strategies, such as cellularized scaffolds approaches, have...
Chondrogenic commitments of mesenchymal stem cells (MSCs) require 3D cellular organization. Furtherm...
Articular cartilage is a complex orthopaedic tissue with zonal differences in cellularity, cell phen...
Stem cell therapy using mesenchymal stem/stromal cells (MSCs) represents a novel approach to treatin...
mbryonic stem (ES) cells are a potential source for cartilage tissue engineering because they provid...
TGF-β3 is enzymatically immobilized by transglutaminase-2 action to poly(l-lactic acid) microparticl...
mbryonic stem (ES) cells are a potential source for cartilage tissue engineering because they provid...
Publicado em "Journal of Tissue Engineering and Regenerative Medicine", vol. 7, supp. 1 (2013)The us...
Cell therapy combined with biomaterial scaffolds is used to treat cartilage defects. We hypothesized...
Cell density is one of the factors required in the preparation of engineered cartilage from mesenchy...
Osteoarthritis (OA) is a chronic disease normally caused by trauma or pathological disorder. Its sym...
Pulsed electromagnetic field therapy, or pulsed signal therapy, has shown efficacy in treating many ...
he fundamental elements of tissue regeneration are cells, biochemical signals and the three-dimensio...
An important topic in cartilage tissue engineering is the development of biomimetic scaffolds which ...
International audienceCartilage engineering remains a challenge due to the difficulties in creating ...
International audienceTissue engineering strategies, such as cellularized scaffolds approaches, have...
Chondrogenic commitments of mesenchymal stem cells (MSCs) require 3D cellular organization. Furtherm...
Articular cartilage is a complex orthopaedic tissue with zonal differences in cellularity, cell phen...
Stem cell therapy using mesenchymal stem/stromal cells (MSCs) represents a novel approach to treatin...
mbryonic stem (ES) cells are a potential source for cartilage tissue engineering because they provid...
TGF-β3 is enzymatically immobilized by transglutaminase-2 action to poly(l-lactic acid) microparticl...
mbryonic stem (ES) cells are a potential source for cartilage tissue engineering because they provid...
Publicado em "Journal of Tissue Engineering and Regenerative Medicine", vol. 7, supp. 1 (2013)The us...
Cell therapy combined with biomaterial scaffolds is used to treat cartilage defects. We hypothesized...
Cell density is one of the factors required in the preparation of engineered cartilage from mesenchy...
Osteoarthritis (OA) is a chronic disease normally caused by trauma or pathological disorder. Its sym...
Pulsed electromagnetic field therapy, or pulsed signal therapy, has shown efficacy in treating many ...
he fundamental elements of tissue regeneration are cells, biochemical signals and the three-dimensio...
An important topic in cartilage tissue engineering is the development of biomimetic scaffolds which ...