Literature DB >> 1556673

Human osteoarthritic cartilage is synthetically more active but in culture less vital than normal cartilage.

F P Lafeber1, H van Roy, B Wilbrink, O Huber-Bruning, J W Bijlsma.   

Abstract

The proteoglycan turnover of human osteoarthritic (OA) cartilage was compared to that of normal (N) cartilage. The cartilage was obtained postmortem from human femoral knee condyles. Short term cultures were compared to longterm cultures, and proteoglycan synthesis rate, content and release determined. Proteoglycan synthesis rate, determined shortly after collection of the cartilage, was higher in OA cartilage than in N cartilage. After longterm culture, the initially higher proteoglycan synthesis rate of OA cartilage became lower than that of N cartilage. An increased percentage release of proteoglycans from OA cartilage compared to N cartilage was apparent both shortly after collection of the cartilage and after culture. Thus, although OA cartilage in vivo is synthetically more active, in vitro it has an increased catabolic and a decreased anabolic activity, from which we conclude that OA cartilage is less vital than N cartilage.

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Year:  1992        PMID: 1556673

Source DB:  PubMed          Journal:  J Rheumatol        ISSN: 0315-162X            Impact factor:   4.666


  8 in total

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3.  Local changes in proteoglycan synthesis during culture are different for normal and osteoarthritic cartilage.

Authors:  F P Lafeber; P M van der Kraan; H L van Roy; E L Vitters; O Huber-Bruning; W B van den Berg; J W Bijlsma
Journal:  Am J Pathol       Date:  1992-06       Impact factor: 4.307

4.  Regulation of xylosyltransferase I gene expression by interleukin 1β in human primary chondrocyte cells: mechanism and impact on proteoglycan synthesis.

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Authors:  Monique E R van Meegeren; Goris Roosendaal; Nathalie W D Jansen; Floris P J G Lafeber; Simon C Mastbergen
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6.  Elevated Levels of Cartilage Oligomeric Matrix Protein during In Vitro Cartilage Matrix Generation Decrease Collagen Fibril Diameter.

Authors:  Y M Bastiaansen-Jenniskens; A C W de Bart; W Koevoet; K M B Jansen; J A N Verhaar; G J V M van Osch; J DeGroot
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8.  Enhanced Extracellular Matrix Breakdown Characterizes the Early Distraction Phase of Canine Knee Joint Distraction.

Authors:  Michelle Teunissen; Alberto Miranda Bedate; Katja Coeleveld; Frank M Riemers; Björn P Meij; Floris P J G Lafeber; Marianna A Tryfonidou; Simon C Mastbergen
Journal:  Cartilage       Date:  2021-05-20       Impact factor: 4.634

  8 in total

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