Damage-associated molecular patterns in the pathogenesis of osteoarthritis: potentially novel therapeutic targets

被引:0
作者
John H. Rosenberg
Vikrant Rai
Matthew F. Dilisio
Devendra K. Agrawal
机构
[1] Creighton University School of Medicine,Department of Clinical and Translational Science
[2] Creighton University School of Medicine,Department of Orthopedic Surgery
来源
Molecular and Cellular Biochemistry | 2017年 / 434卷
关键词
Osteoarthritis; Cartilage damage; Damage-associated molecular patterns (DAMPs); Alarmins; Inflammation; Targeted therapy;
D O I
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学科分类号
摘要
Osteoarthritis (OA) is a chronic disease that degrades the joints and is often associated with increasing age and obesity. The two most common sites of OA in adults are the knee and hip joints. Increased mechanical stress on the joint from obesity can cause the articular cartilage to degrade and release damage-associated molecular patterns (DAMPs). These DAMPs are involved in various molecular pathways that interact with nuclear factor-kappa B and result in the transcription of inflammatory cytokines and activation of matrix metalloproteinases that progressively destroy cartilage. This review focuses on the interactions and contribution to the pathogenesis and progression of OA through the DAMPs: high-mobility group box 1 (HMGB-1), the receptor for advanced glycation end-products (RAGE), the alarmin proteins S100A8 and S100A9, and heparan sulfate. HMGB-1 is released from damaged or necrotic cells and interacts with toll-like receptors (TLRs) and RAGE to induce inflammatory signals, as well as behave as an inflammatory cytokine to activate innate immune cells. RAGE interacts with HMGB-1, advanced glycation end-products, and innate immune cells to increase local inflammation. The alarmin proteins are released following cell damage and interact through TLRs to increase local inflammation and cartilage degradation. Heparan sulfate has been shown to facilitate the binding of HMGB-1 to RAGE and could play a role in the progression of OA. Targeting these DAMPs may be the potential therapeutic strategies for the treatment of OA.
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页码:171 / 179
页数:8
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  • [1] Yucesoy B(2015)Occupational and genetic risk factors for osteoarthritis: a review Work 50 261-273
  • [2] Charles LE(2013)Role of inflammation in the pathogenesis of osteoarthritis: latest findings and interpretations Ther Adv Musculoskelet Dis 5 77-94
  • [3] Baker B(2003)High mobility group box chromosomal protein 1 as a nuclear protein, cytokine, and potential therapeutic target in arthritis Arthritis Rheum 48 876-881
  • [4] Burchfiel CM(2010)Soluble receptor for advanced glycation end products (sRAGE) in plasma and synovial fluid is inversely associated with disease severity of knee osteoarthritis Clin Biochem 43 1133-1137
  • [5] Sokolove J(2012)Alarmins S100A8 and S100A9 elicit a catabolic effect in human osteoarthritic chondrocytes that is dependent on toll-like receptor 4 Arthritis Rheum 64 1477-1487
  • [6] Lepus CM(2010)S100A8 and S100A9 in experimental osteoarthritis Arthritis Res Ther 12 R16-S67
  • [7] Ulloa L(2012)Weight loss and obesity in the treatment and prevention of osteoarthritis Am Acad Phys Med Rehabil 4 S59-1832
  • [8] Batliwalla FM(2014)Current and future impact of osteoarthritis on health care: a population-based study with projections to year 2032 Osteoarthr Cartil 22 1826-35
  • [9] Andersson U(2016)Baseline ambulatory knee kinematics are associated with changes in cartilage thickness in osteoarthritic patients over 5 years J Biomech 24 27-482
  • [10] Gregersen PK(2016)Osteoarthritis year in review 2015: mechanics Osteoarthr Cartil 29 462-9