Immobilisation causes longlasting matrix changes both in the immobilised and contralateral joint cartilage
Open Access
- 1 April 1997
- journal article
- other
- Published by Elsevier in Annals of the Rheumatic Diseases
- Vol. 56 (4) , 255-260
- https://doi.org/10.1136/ard.56.4.255
Abstract
OBJECTIVE The capacity of articular cartilage matrix to recover during 50 weeks of remobilisation after an atrophy caused by 11 weeks of immobilisation of the knee (stifle) joint in 90° flexion starting at the age of 29 weeks, was studied in young beagle dogs. METHODS Proteoglycan concentration (uronic acid) and synthesis ([35S]sulphate incorporation) were determined in six and three knee joint surface locations, respectively. Proteoglycans extracted from the cartilages were characterised by chemical determinations, gel filtration, and western blotting for chondroitin sulphate epitope 3B3. RESULTS The proteoglycan concentrations that were reduced in all sample sites immediately after the immobilisation, remained 14-28% lower than controls after 50 weeks of remobilisation in the patella, the summit of medial femoral condyle, and the superior femoropatellar surface. In the contralateral joint, there was a 49% increase of proteoglycans in the inferior femoropatellar surface after remobilisation, while a 34% decrease was simultaneously noticed on the summit of the medial femoral condyle. Total proteoglycan synthesis was not significantly changed after immobilisation or 50 weeks’ remobilisation in the treated or contralateral joint, compared with age matched controls. The chondroitin 6- to 4- sulphate ratio was reduced by immobilisation both in the radioactively labelled and the total tissue proteoglycans. In the remobilised joint, this ratio was restored in femur, while in tibia it remained at a level lower than controls. Neither immobilisation nor remobilisation induced epitopes recognised by the monoclonal antibody 3B3 on native (undigested) proteoglycans. CONCLUSION These results show that the depletion of proteoglycans observed after 11 weeks of immobilisation was not completely restored in certain surface sites after 50 weeks of remobilisation. The significant changes that developed in the contralateral joint during the remobilisation period give further support to the idea that a permanent alteration of matrix metabolism results even from a temporary modification of loading pattern in immature joints.Keywords
This publication has 37 references indexed in Scilit:
- Changes in cartilage composition and physical properties due to stromelysin degradationArthritis & Rheumatism, 1995
- Adaptation of canine femoral head articular cartilage to long distance running exercise in young beagles.Annals of the Rheumatic Diseases, 1993
- Proteoglycan alterations following immobilization and remobilization in the articular cartilage of young canine knee (stifle) jointJournal of Orthopaedic Research, 1990
- Levels of chondroitin‐6‐sulfate and nonaggregating proteoglycans at articular cartilage contact sites in the knees of young dogs subjected to moderate running exerciseArthritis & Rheumatism, 1989
- Biochemical changes in articular cartilage after joint immobilization by casting or external fixationJournal of Orthopaedic Research, 1989
- Partial restoration of immobilization‐induced softening of canine articular cartilage after remobilization of the knee (stifle) jointJournal of Orthopaedic Research, 1989
- In Vivo and in Vitro Stimulation of Chondrocyte Biosynthetic Activity in Early Experimental OsteoarthritisArthritis & Rheumatism, 1984
- Immobilization ameliorates chemically‐induced articular cartilage damageArthritis & Rheumatism, 1984
- Running Inhibits the Reversal of Atrophic Changes in Canine Knee Cartilage After Removal of a Leg CastArthritis & Rheumatism, 1981
- Osteoarthritis of the Knee in the Rabbit Produced by Immobilization::Attempts to Achieve a Reproducible Model for Studies on Pathogenesis and TherapyActa Orthopaedica, 1979