Bone and articular cartilage are incredibly tough tissues with the ability to withstand repetitive stress throughout an individual’s lifetime. Unfortunately, their ability to heal after injury is finite, resulting in impaired function and degeneration. Despite considerable advances in modern surgical management, such as the use of auto- and allografting, the associated limitations with these approaches has motivated the development of alternative therapeutic interventions to replace or repair bone and cartilage, including tissue-engineered (TE) biomaterials. In relation to bone, a major obstacle to the in vivo use of biomaterials is ensuring an adequate blood supply to meet the metabolic demands of seeded o r invading cells following implan...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Tissue engineering and regenerative medicine have significant potential to treat bone pathologies by...
Bone and articular cartilage are incredibly tough tissues with the ability to withstand repetitive s...
Bone and articular cartilage are incredibly tough tissues with the ability to withstand repetitive s...
Tissue engineering (TE) applies scientific and clinical techniques to restore and regenerate tissues...
Smooth articular cartilage is vital for the pain free movement of the joint, therefore the formation...
Tissue engineering (TE) applies scientific and clinical techniques to restore and regenerate tissues...
Introduction: Restoring defects of load-bearing connective tissues such as articular cartilage resul...
Osteoarthritis and osteochondral injuries, caused by damage to both the articular cartilage and the ...
Tissue engineering is the combination of cells, biomaterials and growth factors to stimulate the reg...
Although bone has an intrinsic capacity for self repair, the healing of large bone defects that typi...
Although bone has an intrinsic capacity for self repair, the healing of large bone defects that typi...
Damaged cartilage tissue has no functional replacement alternatives and current therapies for bone i...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Tissue engineering and regenerative medicine have significant potential to treat bone pathologies by...
Bone and articular cartilage are incredibly tough tissues with the ability to withstand repetitive s...
Bone and articular cartilage are incredibly tough tissues with the ability to withstand repetitive s...
Tissue engineering (TE) applies scientific and clinical techniques to restore and regenerate tissues...
Smooth articular cartilage is vital for the pain free movement of the joint, therefore the formation...
Tissue engineering (TE) applies scientific and clinical techniques to restore and regenerate tissues...
Introduction: Restoring defects of load-bearing connective tissues such as articular cartilage resul...
Osteoarthritis and osteochondral injuries, caused by damage to both the articular cartilage and the ...
Tissue engineering is the combination of cells, biomaterials and growth factors to stimulate the reg...
Although bone has an intrinsic capacity for self repair, the healing of large bone defects that typi...
Although bone has an intrinsic capacity for self repair, the healing of large bone defects that typi...
Damaged cartilage tissue has no functional replacement alternatives and current therapies for bone i...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Tissue engineering and regenerative medicine have significant potential to treat bone pathologies by...