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TNF-alpha inactivation of collagen receptors: implications for fibroblast function and fibrosis
D H Chou1, W Lee, C A McCulloch
1MRC Group in Periodontal Physiology, Faculty of Dentistry, University of Toronto, Toronto, Ontario, Canada.
Abstract:
TNF-alpha inhibits collagen synthesis and at high concentrations stimulates collagenase synthesis in fibroblasts. As fluid from chronic inflammatory lesions contains significant levels of TNF-alpha, it is puzzling why these lesions exhibit dense accumulations of disorganized collagen. In this study we determined if low concentrations of TNF-alpha may inhibit the collagen phagocytic pathway in fibroblasts and thereby contribute to fibrosis. Collagen phagocytosis was measured by flow cytometric assessment of internalized, fluorescent collagen beads. TNF-alpha induced a dose-dependent reduction (optimal dose: 40% at 10 ng/ml; p<0.001) in the proportion of phagocytic cells and a twofold reduction of the number of internalized beads per cell but did not alter the total number of vital cells. TNF-alpha reduced by twofold the degradation of collagen films. Fluid flow shear-force assays demonstrated that TNF-alpha caused a 72% reduction (p < 0.05) in strong binding of collagen-coated beads to cells indicating that TNF-alpha may inactivate receptors and inhibit collagen binding. Furthermore, TNF-alpha reduced cell contact area with collagen substrates by threefold and inhibited reattachment of trypsinized cells by fourfold. Although levels of collagen receptors were increased by TNF-alpha (53% increase in alpha(2) (beta)1 integrin; p<0.001, 20% increase in alpha(1)beta(1)), the receptors were inactivated by the cytokine. The reduced phagocytic activity of TNF-alpha-treated cells was restored to control levels by treatment with the integrin-activating Abs A16G6 and JBS2. TNF-alpha inhibited focal adhesion formation and phosphotyrosine staining in focal adhesions. These effects were replicated by the tyrosine kinase inhibitor genistein, which also inhibited phagocytosis. Collectively, these data indicate that TNF-alpha inhibits adherence and phagocytosis of collagen. These effects are mediated by a reduction in the strength of alpha(2)beta(1) integrin binding to collagen, possibly through tyrosine kinases in focal adhesions. At low concentrations of TNF-alpha (10 ng/ml) that are found in the periphery of chronic inflammatory lesions, we suggest that inhibition of the collagen phagocytic pathway may contribute to fibrosis.
Insights
Tumor necrosis factor-alpha (TNF-alpha) at low concentrations inhibits fibroblast collagen phagocytosis and adherence, potentially contributing to fibrosis in chronic inflammatory lesions. This cytokine inactivates collagen receptors, impairing collagen clearance.
Area of Science:
- Cell Biology
- Immunology
- Biochemistry
Background:
- Tumor necrosis factor-alpha (TNF-alpha) is present in chronic inflammatory lesions.
- TNF-alpha typically inhibits collagen synthesis and stimulates collagenase synthesis.
- The accumulation of disorganized collagen in lesions despite TNF-alpha presence is puzzling.
Purpose of the Study:
- To investigate if low concentrations of TNF-alpha inhibit the collagen phagocytic pathway in fibroblasts.
- To determine if this inhibition contributes to fibrosis.
Main Methods:
- Collagen phagocytosis was measured using fluorescent collagen beads and flow cytometry.
- Collagen degradation was assessed using collagen films.
- Cell-matrix interactions were analyzed via fluid flow shear-force assays, cell contact area measurements, and reattachment assays.
- Expression and activation of collagen receptors (integrins) were evaluated.
- Focal adhesion formation and tyrosine kinase activity were assessed.
Main Results:
- TNF-alpha dose-dependently reduced collagen phagocytosis by fibroblasts (40% reduction at 10 ng/ml).
- TNF-alpha decreased collagen degradation and inhibited strong binding of collagen beads to cells by inactivating collagen receptors, specifically alpha(2)beta(1) integrin.
- TNF-alpha reduced cell contact with collagen substrates and inhibited cell reattachment, effects mediated by tyrosine kinases in focal adhesions.
Conclusions:
- Low concentrations of TNF-alpha inhibit fibroblast adherence and phagocytosis of collagen.
- This inhibition is mediated by the inactivation of alpha(2)beta(1) integrin, likely through tyrosine kinase pathways.
- Inhibition of collagen phagocytosis by TNF-alpha may be a significant factor in the development of fibrosis in chronic inflammatory conditions.