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The implanted chondrocytes then divide and integrate with surrounding tissue and potentially generate hyaline-like cartilage. Another ACI technique, using "chondospheres", uses only chondrocytes and no matrix material. The cells grow in self-organized spheroid matrices which are implanted via injected fluid or inserted tissue matrix. [4]
Chondrocytes (/ ˈ k ɒ n d r ə s aɪ t,-d r oʊ-/, [1] from Greek χόνδρος (chondros) 'cartilage' and κύτος (kytos) 'cell') are the only cells found in healthy cartilage. They produce and maintain the cartilaginous matrix, which consists mainly of collagen and proteoglycans .
Autologous cultured chondrocytes on porcine collagen membrane (Maci) is a treatment to correct cartilage defects in the knee. [1] It is used to treat symptomatic, full-thickness cartilage defects of the knee with or without bone involvement.
The extracellular matrix secreted by chondroblasts is composed of fibers, collagen, hyaluronic acid, proteoglycans, glycoproteins, water, and a host of macromolecules. Within finished cartilage, collagen fibers compose 10-20% of the volume, water 65-80%, and the proteoglycan-hyaluronic acid aggregates the remaining portion.
Techniques such as the EELS-TALC [4] to enhance ACI and its next generation advancement called Matrix Assisted Chondrocyte Implantation (MACI) [5] with enabling chondrocytes to be tissue engineered with long term native knee cartilage phenotype maintenance in vitro and in vivo, [6] [7] with the engineered tissue construct containing stem cell progenitors [8] along with those expressing ...
Chondrocytes vary in size, shape and concentration depending on their location in articular cartilage. [5] Collagen: Collagen is a structural protein present in the extracellular matrix of cartilage. Collagen is composed of a triple helix structure of polypeptide chains and offers shear and tensile properties to the cartilage. [5]