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Inhibition of pleural mesothelial cell collagen synthesis by nitric oxide
M W Owens1, S A Milligan, M B Grisham
1Department of Medicine, Overton Brooks VAMC, Shreveport, LA 71101-4295, USA.
Abstract:
The pleural mesothelial cell has a critical role in repairing the mesothelium after injury via its ability to produce connective tissue macromolecules. We have recently shown that proinflammatory cytokines and lipopolysaccharide induce pleural mesothelial cells to produce nitric oxide. The present study examined the effect of nitric oxide on pleural mesothelial cell protein synthesis. Rat pleural mesothelial cells were exposed to various combinations of tumor necrosis factor, interleukin-1, interferon-gamma, and lipopolysaccharide or to the nitric oxide donors: 6-morpholino-sydnonimine, S-nitroso-N-acetyl-D,L-penicillamine, sodium nitroprusside, and spermine-NO adduct for 24-48 h. Nitrate and nitrite (an index of nitric oxide production) and not collagen and noncollagen protein production (uptake of 3H-proline into collagenase-sensitive protein) were then determined. Net collagen production was significantly inhibited by the cytokine-lipopolysaccharide combinations tested. Collagen inhibition paralleled the time course of increased nitric oxide production. The inhibition of collagen production was also significantly reversed by the addition of NG-nitro-L-arginine methyl ester, and was reproduced by the addition of a 5:1 molar excess of L-arginine to NG-nitro-L-arginine methyl ester. Additionally, nitric oxide-generating compounds significantly inhibited collagen production in a dose-dependent manner compared to unexposed control cells. Net collagen production was inhibited to a greater degree than noncollagen protein synthesis. These results suggest that nitric oxide may be a significant mediator of PMC collagen production during conditions of significant pleural inflammation.
Insights
Nitric oxide significantly inhibits collagen production in pleural mesothelial cells, suggesting it mediates collagen synthesis during pleural inflammation. This finding is crucial for understanding mesothelial repair mechanisms.
Area of Science:
- Cell Biology
- Biochemistry
- Immunology
Background:
- Pleural mesothelial cells (PMCs) are vital for mesothelial repair through connective tissue macromolecule production.
- Pro-inflammatory cytokines and lipopolysaccharide (LPS) induce nitric oxide (NO) production in PMCs.
- The impact of NO on PMC protein synthesis, particularly collagen, remains to be fully elucidated.
Purpose of the Study:
- To investigate the effect of nitric oxide on pleural mesothelial cell protein synthesis.
- To determine if NO mediates the inhibition of collagen production in PMCs.
Main Methods:
- Rat PMCs were exposed to pro-inflammatory cytokines (TNF, IL-1, IFN-γ), LPS, or NO-donating compounds.
- Nitrate/nitrite levels (NO production index) and 3H-proline uptake into collagenase-sensitive protein (collagen production) were measured.
- The effects of NO inhibition (NG-nitro-L-arginine methyl ester) and L-arginine were assessed.
Main Results:
- Cytokine-LPS combinations significantly inhibited net collagen production.
- Collagen inhibition correlated with increased NO production and was reversed by NO synthesis inhibition.
- NO-generating compounds dose-dependently inhibited collagen production more than noncollagen protein synthesis.
Conclusions:
- Nitric oxide significantly inhibits collagen production in pleural mesothelial cells.
- NO may act as a key mediator of collagen synthesis inhibition during pleural inflammation.
- These findings contribute to understanding mesothelial cell responses to inflammatory stimuli.