Background: Articular cartilage injuries have poor repair capacity, leading to progressive joint damage, and cannot be restored predictably by either conventional treatments or advanced therapies based on implantation of articular chondrocytes. Compared with articular chondrocytes, chondrocytes derived from the nasal septum have superior and more reproducible capacity to generate hyaline-like cartilage tissues, with the plasticity to adapt to a joint environment. We aimed to assess whether engineered autologous nasal chondrocyte-based cartilage grafts allow safe and functional restoration of knee cartilage defects. Methods: In a first-in-human trial, ten patients with symptomatic, post-traumatic, full-thickness cartilage lesions (2–6 cm2...
Nasal chondrocytes (NCs) have a higher and more reproducible chondrogenic capacity than articular ch...
Background: Articular cartilage is a complex structure that allows for low frictional gliding and ef...
Nasal chondrocytes (NCs) have a higher and more reproducible chondrogenic capacity than articular ch...
Abstract Background Spontaneous recovery from articular cartilage injury is difficult, and the ongoi...
Articular cartilage has a very limited self-repair capacity and once damaged, it undergoes irreversi...
Autologous native cartilage from the nasal septum, ear, or rib is the standard material for surgical...
Background: Chondrocyte-based cell therapy to repair cartilage has been used for >25 years despit...
Osteoarthritis (OA) is the most prevalent joint disorder, causing pain and disability predominantly ...
Osteoarthritis (OA) is the most prevalent joint disorder, causing pain and disability predominantly ...
Osteoarthritis (OA) is the most prevalent joint disorder, causing pain and disability predominantly ...
Nasal cartilage pathologies are common; for example, up to 80% of people are afflicted by deviated n...
We investigated whether nasal chondrocytes (NC) can be used to generate composite constructs with pr...
Nasal cartilage pathologies are common; for example, up to 80% of people are afflicted by deviated n...
Articular cartilage is a very specialized tissue with outstanding load-bearing capacity. It consists...
Tissue engineering is a new biotechnological field that has emerged recently, providing an alternati...
Nasal chondrocytes (NCs) have a higher and more reproducible chondrogenic capacity than articular ch...
Background: Articular cartilage is a complex structure that allows for low frictional gliding and ef...
Nasal chondrocytes (NCs) have a higher and more reproducible chondrogenic capacity than articular ch...
Abstract Background Spontaneous recovery from articular cartilage injury is difficult, and the ongoi...
Articular cartilage has a very limited self-repair capacity and once damaged, it undergoes irreversi...
Autologous native cartilage from the nasal septum, ear, or rib is the standard material for surgical...
Background: Chondrocyte-based cell therapy to repair cartilage has been used for >25 years despit...
Osteoarthritis (OA) is the most prevalent joint disorder, causing pain and disability predominantly ...
Osteoarthritis (OA) is the most prevalent joint disorder, causing pain and disability predominantly ...
Osteoarthritis (OA) is the most prevalent joint disorder, causing pain and disability predominantly ...
Nasal cartilage pathologies are common; for example, up to 80% of people are afflicted by deviated n...
We investigated whether nasal chondrocytes (NC) can be used to generate composite constructs with pr...
Nasal cartilage pathologies are common; for example, up to 80% of people are afflicted by deviated n...
Articular cartilage is a very specialized tissue with outstanding load-bearing capacity. It consists...
Tissue engineering is a new biotechnological field that has emerged recently, providing an alternati...
Nasal chondrocytes (NCs) have a higher and more reproducible chondrogenic capacity than articular ch...
Background: Articular cartilage is a complex structure that allows for low frictional gliding and ef...
Nasal chondrocytes (NCs) have a higher and more reproducible chondrogenic capacity than articular ch...