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Updated: Jun 5, 2026

Oropharyngeal Administration of Bleomycin in the Murine Model of Pulmonary Fibrosis
Published on: May 9, 2025
GW0742, a high affinity PPAR-β/δ agonist reduces lung inflammation induced by bleomycin instillation in mice
M Galuppo1, R Di Paola, E Mazzon
1Department of Clinical and Experimental Medicine and Pharmacology, School of Medicine, University of Messina, Italy.
Abstract:
Peroxisome Proliferator-Activated Receptor β/δ belongs to a family of ligand-activated transcription factors. Recent data have clarified its metabolic roles and enhanced the potential role of this receptor as a pharmacological target. Moreover, although its role in acute inflammation remains unclear, being the nuclear receptor PPAR β/δ widely expressed in many tissues, including the vascular endothelium, we assume that the infiltration of PMNs into tissues, a prominent feature in inflammation, may also be related to PPAR β/δ. Mice subjected to intratracheal instillation of bleomycin (BLEO, 1 mg/kg), a glycopeptide produced by the bacterium Streptomyces verticillus, develop lung inflammation and injury characterized by a significant neutrophil infiltration and tissue oedema. Therefore, the aim of this study is to investigate the effects of GW0742, a synthetic high affinity PPAR β/δ agonist, and its possible role in preventing the advance of inflammatory and apoptotic processes induced by bleomycin, that long-term leads to the appearance of pulmonary fibrosis. Our data showed that GW0742-treatment (0.3 mg/Kg, 10 percent DMSO, i.p.) has therapeutic effects on pulmonary damage, decreasing many inflammatory and apoptotic parameters detected by measurement of: 1) cytokine production; 2) leukocyte accumulation, indirectly measured as decrease of myeloperoxidase (MPO) activity; 3) IkBα degradation and NF-kB nuclear translocation; 4) ERK phosphorylation; 5) stress oxidative by NO formation due to iNOS expression; 6) nitrotyrosine and PAR localization; 7) the degree of apoptosis, evaluated by Bax and Bcl-2 balance, FAS ligand expression and TUNEL staining. Taken together, our results clearly show that GW0742 reduces the lung injury and inflammation due to the intratracheal BLEO--instillation in mice.
Insights
The study shows that GW0742, a PPAR β/δ agonist, effectively reduces lung inflammation and injury caused by bleomycin in mice. This highlights its therapeutic potential for inflammatory lung diseases.
Area of Science:
- Molecular Biology
- Immunology
- Pharmacology
Background:
- Peroxisome Proliferator-Activated Receptor β/δ (PPAR β/δ) is a nuclear receptor with known metabolic roles.
- Its function in acute inflammation and potential as a therapeutic target are under investigation.
- PPAR β/δ is widely expressed, including in vascular endothelium, suggesting a role in inflammatory cell infiltration.
Purpose of the Study:
- To investigate the effects of the PPAR β/δ agonist GW0742 on bleomycin-induced lung inflammation and injury in mice.
- To determine if GW0742 can prevent inflammatory and apoptotic processes that may lead to pulmonary fibrosis.
Main Methods:
- Mice were intratracheally instilled with bleomycin (BLEO) to induce lung inflammation.
- Mice received GW0742 treatment (0.3 mg/Kg).
- Inflammatory and apoptotic markers were assessed, including cytokine production, myeloperoxidase (MPO) activity, NF-kB pathway activation, ERK phosphorylation, oxidative stress markers, and apoptosis indicators (Bax/Bcl-2, TUNEL staining).
Main Results:
- GW0742 treatment significantly reduced pulmonary damage induced by bleomycin.
- Key inflammatory parameters, including cytokine production and leukocyte accumulation (decreased MPO activity), were lowered.
- GW0742 inhibited key inflammatory signaling pathways (NF-kB, ERK) and reduced oxidative stress and apoptosis markers.
Conclusions:
- GW0742 demonstrates significant therapeutic effects against bleomycin-induced lung injury and inflammation in mice.
- The PPAR β/δ agonist effectively mitigates inflammatory and apoptotic processes in the lung.
- These findings support the potential of PPAR β/δ agonists as a treatment strategy for inflammatory lung conditions.

