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Pentoxifylline attenuates nitrogen mustard-induced acute lung injury, oxidative stress and inflammation
Vasanthi R Sunil1, Kinal N Vayas1, Jessica A Cervelli1
1Department of Pharmacology and Toxicology, Rutgers University Ernest Mario School of Pharmacy, Piscataway, NJ, United States.
Abstract:
Nitrogen mustard (NM) is a toxic alkylating agent that causes damage to the respiratory tract. Evidence suggests that macrophages and inflammatory mediators including tumor necrosis factor (TNF)α contribute to pulmonary injury. Pentoxifylline is a TNFα inhibitor known to suppress inflammation. In these studies, we analyzed the ability of pentoxifylline to mitigate NM-induced lung injury and inflammation. Exposure of male Wistar rats (150-174 g; 8-10 weeks) to NM (0.125 mg/kg, i.t.) resulted in severe histopathological changes in the lung within 3d of exposure, along with increases in bronchoalveolar lavage (BAL) cell number and protein, indicating inflammation and alveolar-epithelial barrier dysfunction. This was associated with increases in oxidative stress proteins including lipocalin (Lcn)2 and heme oxygenase (HO)-1 in the lung, along with pro-inflammatory/cytotoxic (COX-2(+) and MMP-9(+)), and anti-inflammatory/wound repair (CD163+ and Gal-3(+)) macrophages. Treatment of rats with pentoxifylline (46.7 mg/kg, i.p.) daily for 3d beginning 15 min after NM significantly reduced NM-induced lung injury, inflammation, and oxidative stress, as measured histologically and by decreases in BAL cell and protein content, and levels of HO-1 and Lcn2. Macrophages expressing COX-2 and MMP-9 also decreased after pentoxifylline, while CD163+ and Gal-3(+) macrophages increased. This was correlated with persistent upregulation of markers of wound repair including pro-surfactant protein-C and proliferating nuclear cell antigen by Type II cells. NM-induced lung injury and inflammation were associated with alterations in the elastic properties of the lung, however these were largely unaltered by pentoxifylline. These data suggest that pentoxifylline may be useful in treating acute lung injury, inflammation and oxidative stress induced by vesicants.
Insights
Pentoxifylline treatment reduced nitrogen mustard-induced lung injury and inflammation in rats. This drug mitigated oxidative stress and promoted wound repair mechanisms in the lungs.
Area of Science:
- Toxicology
- Pulmonary Medicine
- Pharmacology
Background:
- Nitrogen mustard (NM) causes significant respiratory tract damage.
- Macrophages and tumor necrosis factor-alpha (TNFα) are key mediators in NM-induced pulmonary injury.
- Pentoxifylline is a known TNFα inhibitor with anti-inflammatory properties.
Purpose of the Study:
- To evaluate the efficacy of pentoxifylline in mitigating nitrogen mustard-induced lung injury and inflammation.
- To analyze the effects of pentoxifylline on oxidative stress and macrophage polarization in the context of NM exposure.
Main Methods:
- Male Wistar rats were exposed to nitrogen mustard (NM) via intratracheal instillation.
- Rats were treated with pentoxifylline intraperitoneally, starting 15 minutes after NM exposure.
- Lung histopathology, bronchoalveolar lavage (BAL) fluid analysis, oxidative stress markers (Lcn2, HO-1), and macrophage phenotypes (COX-2, MMP-9, CD163, Gal-3) were assessed.
Main Results:
- NM exposure caused severe lung injury, inflammation, and increased oxidative stress markers.
- Pentoxifylline treatment significantly reduced NM-induced lung injury, BAL cell/protein content, and oxidative stress.
- Pentoxifylline modulated macrophage populations, decreasing pro-inflammatory types and increasing anti-inflammatory/wound repair types, promoting markers of lung repair.
Conclusions:
- Pentoxifylline effectively mitigates acute lung injury, inflammation, and oxidative stress induced by nitrogen mustard.
- The therapeutic effect of pentoxifylline involves the modulation of macrophage polarization and promotion of wound repair mechanisms.
- Pentoxifylline shows potential as a treatment for vesicant-induced acute lung injury.
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