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Flow Cytometry Analysis of Immune Cell Subsets within the Murine Spleen, Bone Marrow, Lymph Nodes and Synovial Tissue in an Osteoarthritis Model
Published on: April 24, 2020
[The pathogenesis of joint destruction in chronic polyarthritis]
1Abteilung Pathologie, Universität Ulm.
Abstract:
Joint destruction, a hallmark of rheumatoid arthritis, is described with respect to different mechanisms: destruction by inflammatory cells of the synovial fluid, pannus tissue and even ischemic bone necroses. Destruction via the synovial fluid is due to polymorphonuclear neutrophils (PMN) that can invade the pannus-free cartilage surface. In the absence of anti-proteases as a result of direct contact between the PMN and cartilage, enzymatic degradation can occur. Pannus tissue usually develops from the synovial insertion. Increased cellular proliferation in this area leads to a superficial pannus tissue that covers the cartilage (Fig. 4b); granulation tissue from the synovial insertion can destroy cortical bone and invade the subchondral tissue. The problem of isolated subchondral inflammatory foci is briefly discussed. The effector cells of cartilage destruction are identified as macrophages, PMN, and mast cells -cells that produce or activate destructive enzymes. Bone destruction is due to osteoclasts and even macrophages. Acute destruction via the granulation tissue may be followed by defect healing-scar tissue or chondroid metaplastic tissue can be present in the final stages of the disease. Ischemic bone necrosis leading to pseudocysts may also contribute to joint destruction.
Insights
Rheumatoid arthritis causes joint destruction through inflammatory cells, pannus tissue, and bone necrosis. Understanding these mechanisms is key to managing RA joint damage.
Area of Science:
- Rheumatology
- Immunology
- Pathology
Context:
- Rheumatoid arthritis (RA) is characterized by significant joint destruction.
- The pathological processes involve complex interactions between inflammatory cells and joint tissues.
Purpose:
- To elucidate the diverse mechanisms driving joint destruction in rheumatoid arthritis.
- To identify the cellular players and pathways involved in cartilage and bone erosion.
Summary:
- Joint destruction in RA results from inflammatory cells (macrophages, polymorphonuclear neutrophils, mast cells) in synovial fluid and pannus tissue.
- Mechanisms include enzymatic degradation of cartilage by inflammatory cells and bone erosion by osteoclasts and macrophages.
- Ischemic bone necrosis and granulation tissue invasion also contribute to joint damage, with potential for scar tissue or metaplastic tissue formation during healing.
Impact:
- Provides a comprehensive overview of RA-induced joint destruction pathways.
- Highlights the cellular effectors and enzymatic processes underlying cartilage and bone erosion.
- Informs potential therapeutic strategies targeting specific mechanisms of joint damage in RA.
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