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Relationship among biomechanical, biochemical, and cellular changes associated with osteoarthritis

Journal

CRITICAL REVIEWS IN BIOMEDICAL ENGINEERING
Volume 29, Issue 4, Pages 373-391

Publisher

BEGELL HOUSE INC
DOI: 10.1615/CritRevBiomedEng.v29.i4.10

Keywords

collagen; proteoglycans; collagenase; metalloproteinase; interleukin-1; fibrillation; osteoarthritis; fatigue

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Articular cartilage that lines the surface of long bones is a multilayered material. The superficial layer consists of collagen fibrils and chondrocytes that run parallel to the joint surface. In the deeper layers, the collagen fibrils are more randomly arranged and support vertical units termed chondrons containing rows of chondrocytes. In the deepest layers, the collagen fibrils run almost vertically and ultimately insert into the underlying subchondral bone. Osteoarthritis (OA) is a disease that affects articular cartilage and is characterized by enzymatic and mechanical breakdown of the extracellular matrix, leading to cartilage degeneration, exposure of subchondral bone, pain, and limited joint motion. Changes in mechanical properties of articular cartilage associated with CA include decreases in modulus and ultimate tensile strength. These changes parallel the changes observed after enzymatic degradation of either collagen or proteoglycans in cartilage. Results of recent viscoelastic studies on articular cartilage suggest that the elastic modulus of collagen and fibril lengths decrease in CA and are associated with a loss of the superficial zone and a decreased ability of articular cartilage to store elastic energy during locomotion. It is suggested that osteoarthritic changes to cartilage involve enzymatic degradation of matrix components and fibril. fragmentation that is promoted by subsequent mechanical loading.

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