Literature DB >> 20153826

Matrix metalloproteinase-3 in articular cartilage is upregulated by joint immobilization and suppressed by passive joint motion.

Daniel J Leong1, Xiang I Gu, Yonghui Li, Jonathan Y Lee, Damien M Laudier, Robert J Majeska, Mitchell B Schaffler, Luis Cardoso, Hui B Sun.   

Abstract

Both underloading and overloading of joints can lead to articular cartilage degradation, a process mediated in part by matrix metalloproteinases (MMPs). Here we examine the effects of reduced loading of rat hindlimbs on articular cartilage expression of MMP-3, which not only digests matrix components but also activates other proteolytic enzymes. We show that hindlimb immobilization resulted in elevated MMP-3 mRNA expression at 6h that was sustained throughout the 21day immobilization period. MMP-3 upregulation was higher in the medial condyle than the lateral, and was greatest in the superficial cartilage zone, followed by middle and deep zones. These areas also showed decreases in safranin O staining, consistent with reduced cartilage proteoglycan content, as early as 7days after immobilization. One hour of daily moderate mechanical loading, applied as passive joint motion, reduced the MMP-3 and ADAMTS-5 increases that resulted from immobilization, and also prevented changes in safranin O staining. Intra-articular injections of an MMP-3 inhibitor, N-isobutyl-N-(4-methoxyphenylsulfonyl)-glycylhydroxamic acid (NNGH), dampened the catabolic effects of a 7day immobilization period, indicating a likely requirement for MMP-3 in the regulation of proteoglycan levels through ADAMTS-5. These results suggest that biomechanical forces have the potential to combat cartilage destruction and can be critical in developing effective therapeutic strategies. Copyright (c) 2010 International Society of Matrix Biology. Published by Elsevier B.V. All rights reserved.

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Year:  2010        PMID: 20153826      PMCID: PMC2902573          DOI: 10.1016/j.matbio.2010.02.004

Source DB:  PubMed          Journal:  Matrix Biol        ISSN: 0945-053X            Impact factor:   11.583


  45 in total

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Review 4.  Normal and pathological adaptations of articular cartilage to joint loading.

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  30 in total

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Review 4.  Mechanical loading: bone remodeling and cartilage maintenance.

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Review 5.  Homeostatic mechanisms in articular cartilage and role of inflammation in osteoarthritis.

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7.  Physiological loading of joints prevents cartilage degradation through CITED2.

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Review 8.  Mechanotransduction and cartilage integrity.

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10.  Inhibiting Matrix Metalloproteinase 3 Ameliorates Neuronal Loss in the Ganglion Cell Layer of Rats in Retinal Ischemia/Reperfusion.

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