Cartilage has limited self-regenerative capacity. Tissue engineering can offer promising solutions for reconstruction of missing or damaged cartilage. A major challenge herein is to define an appropriate cell source that is capable of generating a stable and functional matrix. This study evaluated the performance of culture-expanded human chondrocytes from ear (EC), nose (NC) and articular joint (AC), as well as bone-marrow-derived and adipose-tissue-derived mesenchymal stem cells both in vitro and in vivo. All cells (≥ 3 donors per source) were culture-expanded, encapsulated in alginate and cultured for 5 weeks. Subsequently, constructs were implanted subcutaneously for 8 additional weeks. Before and after implantation, glycosaminoglycan (...
Cell-based therapy is being considered as a promising approach to regenerate damaged cartilage. Thou...
BackgroundMicrotia is an inherited condition that results in varying degrees of external ear deformi...
International audienceObjective: The long-term performance of cell-seeded matrix-based cartilage con...
Abstract Cartilage has limited self-regenerative capacity. Tissue engineering can offer promising s...
Abstract Cartilage has limited self-regenerative capacity. Tissue engineering can offer promising s...
The goal of this study was to evaluate human epiphyseal chondroprogenitor cells (ECPs) as a potentia...
Articular cartilage is often used for research on cartilage tissue engineering. However, ear cartila...
Articular cartilage is often used for research on cartilage tissue engineering. However, ear cartila...
Background: Cartilage tissue engineering can offer promising solutions for restoring cartilage defec...
Background: Cartilage tissue engineering can offer promising solutions for restoring cartilage defec...
Background: Cartilage tissue engineering can offer promising solutions for restoring cartilage defec...
Thesis (M.A.)--Boston UniversityOsteoarthritis (OA) is a major concern among healthcare providers as...
Alginate/chitosan polysaccharide capsules were encapsulated with human bone marrow cells (HBMC), art...
The use of mesenchymal stromal stem cells (MSCs) in the field of tissue engineering for cartilage re...
International audienceObjective: The long-term performance of cell-seeded matrix-based cartilage con...
Cell-based therapy is being considered as a promising approach to regenerate damaged cartilage. Thou...
BackgroundMicrotia is an inherited condition that results in varying degrees of external ear deformi...
International audienceObjective: The long-term performance of cell-seeded matrix-based cartilage con...
Abstract Cartilage has limited self-regenerative capacity. Tissue engineering can offer promising s...
Abstract Cartilage has limited self-regenerative capacity. Tissue engineering can offer promising s...
The goal of this study was to evaluate human epiphyseal chondroprogenitor cells (ECPs) as a potentia...
Articular cartilage is often used for research on cartilage tissue engineering. However, ear cartila...
Articular cartilage is often used for research on cartilage tissue engineering. However, ear cartila...
Background: Cartilage tissue engineering can offer promising solutions for restoring cartilage defec...
Background: Cartilage tissue engineering can offer promising solutions for restoring cartilage defec...
Background: Cartilage tissue engineering can offer promising solutions for restoring cartilage defec...
Thesis (M.A.)--Boston UniversityOsteoarthritis (OA) is a major concern among healthcare providers as...
Alginate/chitosan polysaccharide capsules were encapsulated with human bone marrow cells (HBMC), art...
The use of mesenchymal stromal stem cells (MSCs) in the field of tissue engineering for cartilage re...
International audienceObjective: The long-term performance of cell-seeded matrix-based cartilage con...
Cell-based therapy is being considered as a promising approach to regenerate damaged cartilage. Thou...
BackgroundMicrotia is an inherited condition that results in varying degrees of external ear deformi...
International audienceObjective: The long-term performance of cell-seeded matrix-based cartilage con...