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Natural polysaccharides are attractive compounds with which to build scaffolds for bone and cartilage tissue engineering.
Chitosan is bioactive, biocompatible, and possesses mechanical and functional properties that support bone and cartilage tissue regeneration.
Porous scaffolds, hydrogels, and fibers are the most commonly biomimetic structures used for bone and cartilage tissue engineering.
In this review, we present a summary of growth factor delivery carrier systems for bone and cartilage tissue engineering.
To develop an autologous research model of bone and cartilage tissue engineering, the authors sought to determine whether rat inguinal fat pads contain a similar population of osteochondrogenic precursor cells.
This study is part of a global project which aims at conceiving and characterizing implantable synthetic extracellular matrices seeded with multifunctional particles for bone and cartilage tissue engineering.
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We synthesized a novel porous scaffold, a collagen sponge incorporating a hydroxyapatite/chondroitinsulfate composite (pCol-HAp/ChS), containing materials which resemble extracellular matrices in bone and cartilage tissues, which needs high compressive strength for clinical use.
With this in mind and an increasing awareness of the crucial role of the subchondral bone in the pathogenesis of articular degeneration, new bi-layered constructs have been developed to reproduce the different biological and functional requirements for the growth of both bone and cartilage tissues, with the aim of providing a treatment to the entire osteochondral unit.
Persistent vascular activity correlates with further damage to bone and cartilage tissues even in patients on clinical remission.
The Wnt/β-catenin pathway is critical during the development of bone and cartilage tissues.
Serial sections of paraffin-embedded bone and cartilage tissues were cut and immunostained using an antibody for nitrotyrosine.
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bone and cartilage identification
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