Immunohistological study on collagen in cartilage-bone metamorphosis and degenerative osteoarthrosis |
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Authors: | S Gay P K Müller C Lemmen K Remberger K Matzen K Kühn |
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Institution: | (1) Max-Planck-Institut für Biochemie, Abteilung Bindegewebsforschung, Pathologisches Institut, Orthopädische Klinik und Poliklinik der Universität München, Germany |
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Abstract: | Summary Synthesis of collagen by chondrocytes was studied by immunofluorescence using antibodies specific for type I, II and III collagen. The following tissues and culture conditions were chosen for this immunohistological study: normal articular cartilage, epiphyseal growth cartilage, cartilage undergoing osteoarthrotic degeneration, suspension culture and monolayer culture. While type II collagen is the unique collagen all over hyaline cartilage, type I collagen is produced by hypertrophic chondrocytes in the growth plate. In addition, chondrocytes in osteoarthrotic areas of articular cartilage synthesize type I collagen. Under in vitro culture conditions, chondrocytes initially produce type II collagen and synthesize later on type I collagen. The change of synthesis from type II to type I collagen is more rapid in monolayer than in suspension culture. It is concluded that the presence of matrix compounds and the cellmatrix interaction as well are necessary to maintain synthesis of type II collagen in chondrocytes. Alterations in the cell-matrix interactions are shown to occur in the hypertrophic zone of the epiphyseal growth plate, in cartilage undergoing osteoarthrotic degeneration as well as in chondrocytes grown in culture. Thus, change in the control of gene activity may subsequently lead to change in collagen synthesis. It is possible that the synthesis of type I collagen, which cannot fulfil the physiological function of a structural element in cartilageneous tissue, is a crucial factor in the process of osteoarthrosis. Abbreviations EDTA
Ethylendiaminetetraacetate
- FITC
Fluoresceine isothiocyanate
This investigation was supported by grants of the Deutsche Forschungsgemeinschaft, Mu 378/4, Re 388/1 and SFB 51 |
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Keywords: | Cartilage-bone metamorphosis Osteoarthrosis Chondrocytes Collagen-synthesis Immunofluorescence |
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