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Published on: November 6, 2014
Inhibition of osteoblast differentiation by tumor necrosis factor-alpha
1Division of Endocrinology and Metabolism, Emory University School of Medicine and Veterans Affairs Medical Center, Atlanta, Georgia 30033, USA.
Abstract:
Tumor necrosis factor-alpha (TNF-alpha) has a key role in skeletal disease in which it promotes reduced bone formation by mature osteoblasts and increased osteoclastic resorption. Here we show that TNF inhibits differentiation of osteoblasts from precursor cells. TNF-alpha treatment of fetal calvaria precursor cells, which spontaneously differentiate to the osteoblast phenotype over 21 days, inhibited differentiation as shown by reduced formation of multilayered, mineralizing nodules and decreased secretion of the skeletal-specific matrix protein osteocalcin. The effect of TNF was dose dependent with an IC50 of 0.6 ng/ml, indicating a high sensitivity of these precursor cells. Addition of TNF-alpha from days 2-21, 2-14, 7-14, and 7-10 inhibited nodule formation but addition of TNF after day 14 had no effect. Partial inhibition of differentiation was observed with addition of TNF on only days 7-8, suggesting that TNF could act during a critical period of phenotype selection. Growth of cells on collagen-coated plates did not prevent TNF inhibition of differentiation, suggesting that inhibition of collagen deposition into matrix by proliferating cells could not, alone, explain the effect of TNF. Northern analysis revealed that TNF inhibited the expression of insulin-like growth factor I (IGF-I). TNF had no effect on expression of the osteogenic bone morphogenic proteins (BMPs-2, -4, and -6), or skeletal LIM protein (LMP-1), as determined by semiquantitative RT-PCR. Addition of IGF-I or BMP-6 to fetal calvaria precursor cell cultures enhanced differentiation but could not overcome TNF inhibition, suggesting that TNF acted downstream of these proteins in the differentiation pathway. The clonal osteoblastic cell line, MC3T3-E1-14, which acquires the osteoblast phenotype spontaneously in postconfluent culture, was also studied. TNF inhibited differentiation of MC3T3-E1-14 cells as shown by failure of mineralized matrix formation in the presence of calcium and phosphate. TNF was not cytotoxic to either cell type as shown by continued attachment and metabolism in culture, trypan blue exclusion, and Alamar Blue cytotoxicity assay. These results demonstrate that TNF-alpha is a potent inhibitor of osteoblast differentiation and suggest that TNF acts distal to IGF-I, BMPs, and LMP-1 in the progression toward the osteoblast phenotype.
Insights
Tumor necrosis factor-alpha (TNF-alpha) significantly inhibits osteoblast differentiation from precursor cells, impacting bone formation. This potent inhibitor acts downstream of key growth factors, revealing new therapeutic targets for skeletal diseases.
Area of Science:
- Cell Biology
- Skeletal Biology
- Molecular Biology
Background:
- Tumor necrosis factor-alpha (TNF-alpha) plays a critical role in skeletal diseases by promoting bone resorption and inhibiting bone formation.
- Understanding the precise mechanisms by which TNF-alpha affects osteoblast development is crucial for developing targeted therapies.
Purpose of the Study:
- To investigate the effect of TNF-alpha on the differentiation of osteoblasts from precursor cells.
- To elucidate the molecular pathways through which TNF-alpha exerts its inhibitory effects on osteogenesis.
Main Methods:
- Primary fetal calvaria precursor cells and MC3T3-E1-14 osteoblastic cells were treated with varying concentrations of TNF-alpha.
- Osteoblast differentiation was assessed by measuring mineralized nodule formation and osteocalcin secretion.
- Gene expression analysis using Northern blot and RT-PCR was performed for key skeletal proteins, including IGF-I, BMPs, and LMP-1.
Main Results:
- TNF-alpha potently inhibited osteoblast differentiation in a dose-dependent manner (IC50 = 0.6 ng/ml).
- Inhibition occurred during a critical window of differentiation (days 7-10) and was associated with reduced expression of insulin-like growth factor I (IGF-I).
- TNF-alpha did not affect the expression of BMPs or LMP-1 and acted downstream of IGF-I and BMP-6 signaling.
Conclusions:
- TNF-alpha is a potent inhibitor of osteoblast differentiation from precursor cells.
- The inhibitory action of TNF-alpha is mediated through pathways distal to IGF-I, BMPs, and LMP-1.
- These findings highlight TNF-alpha as a significant factor in skeletal pathologies and suggest potential therapeutic strategies targeting its downstream effects.
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