Literature DB >> 6696774

Immobilization ameliorates chemically-induced articular cartilage damage.

J M Williams, K D Brandt.   

Abstract

We have previously shown that immobilization protects against the development of mechanically-induced osteoarthritis following-anterior cruciate ligament transection in dogs. Herein, we examine the effect of immobilization of the leg on the chemically-induced degeneration of femoral articular cartilage caused by intraarticular injection of iodoacetate in guinea pigs. One week after the injection, cartilage from animals which were not immobilized exhibited a decrease in Safranin O staining and a 10-20% reduction in the number of chondrocytes. Three weeks after injection, cell death and loss of Safranin O staining had progressed, and surface fibrillation and osteophytes had developed. Articular cartilage from the contralateral (uninjected) knees of guinea pigs which received iodoacetate, and from knees of animals which were immobilized for 1 week but did not receive iodoacetate, was histologically and histochemically normal. However, specimens from 2 of 4 untreated knees which were immobilized for 3 weeks showed a reduction in Safranin O staining. Immobilization of the knee did not alter the loss of Safranin O staining seen after intraarticular iodoacetate injection, but did reduce the depletion of chondrocytes (P less than 0.05). Furthermore, neither osteophytes nor fibrillation developed in any of the animals which were constrained after iodoacetate injection. Thus, immobilization was clearly protective in this model of chemically-induced cartilage injury.

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Year:  1984        PMID: 6696774     DOI: 10.1002/art.1780270213

Source DB:  PubMed          Journal:  Arthritis Rheum        ISSN: 0004-3591


  12 in total

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Review 4.  Activity vs. rest in the treatment of bone, soft tissue and joint injuries.

Authors:  J A Buckwalter
Journal:  Iowa Orthop J       Date:  1995

5.  Exercise increases osteophyte formation and diminishes fibrillation following chemically induced articular cartilage injury.

Authors:  J M Williams; K D Brandt
Journal:  J Anat       Date:  1984-12       Impact factor: 2.610

6.  The OARSI histopathology initiative - recommendations for histological assessments of osteoarthritis in the guinea pig.

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7.  Immobilisation causes longlasting matrix changes both in the immobilised and contralateral joint cartilage.

Authors:  M O Jortikka; R I Inkinen; M I Tammi; J J Parkkinen; J Haapala; I Kiviranta; H J Helminen; M J Lammi
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9.  Calcitonin gene-related peptide, substance P and GAP-43/B-50 immunoreactivity in the normal and arthrotic knee joint of the mouse.

Authors:  P Buma; C Verschuren; D Versleyen; P Van der Kraan; A B Oestreicher
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10.  Osteophytes and fracture calluses share developmental milestones and are diminished by unloading.

Authors:  Allison W Hsia; Armaun J Emami; Franklin D Tarke; Hailey C Cunningham; Priscilla M Tjandra; Alice Wong; Blaine A Christiansen; Nicole M Collette
Journal:  J Orthop Res       Date:  2017-11-22       Impact factor: 3.494

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