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March 18, 2026American Journal of Respiratory Cell and Molecular Biology0 citations

Pirfenidone and its Derivative: Novel Bronchodilators and Leukocyte Airway Inflammation Inhibitors

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YXYan XiePAPeter W. AbelTXTianzhou Xing

Key Points

  • The research aims to discover novel bronchodilators to combat airway inflammation and hyperresponsiveness in asthma.
  • Screened Sigma LOPAC1280 compound library using β2-agonist-desensitized lung slices.
  • Evaluated the effects of pirfenidone and its derivative CXN-8 on airway relaxation in various models.
  • Assessed the in vivo efficacy through acute and chronic administration in mouse models.
  • CXN-8 demonstrated 50-fold greater potency compared to pirfenidone with effective airway relaxation.
  • Both compounds significantly reduced airway resistance and hyperresponsiveness in sensitized mice.
  • Chronic treatment decreased inflammatory cell infiltration and airway remodeling indicators.

Abstract

Abstract Asthma, a chronic airway inflammatory disease, manifests as excessive obstruction of the airways and airway hyperresponsiveness (AHR) due to airway smooth muscle (ASM) contraction. Conventional bronchodilator treatments, such as β2-adrenergic receptor (β2-AR) agonists, often lose efficacy due to receptor desensitization, while corticosteroid-resistant neutrophilic airway inflammation remains a major challenge in severe asthma. To identify novel bronchodilators, we screened the Sigma LOPAC1280 compound library using β2-agonist-desensitized precision-cut lung slices (PCLS) as an ex vivo model and identified pirfenidone (PFD), an FDA-approved drug for idiopathic pulmonary fibrosis, as a novel bronchodilator. We then developed CXN-8, a more potent PFD derivative. Both compounds produced rapid, concentration-dependent airway relaxation in human, mouse, and rat PCLS preconstricted with multiple bronchoconstrictors, and maintained efficacy under β2-AR-insensitive conditions. CXN-8 was ∼50-fold more potent than PFD while achieving comparable maximal relaxation, with EC50 values ranging from 0.8-4.7 μM across the different bronchoconstrictors. Mechanistically, PFD and CXN-8 suppressed RhoA-mediated Ca2 + sensitization by restoring myosin light chain phosphatase activity, which reduced phosphorylation of myosin regulatory light chain (MLC20) and promoted ASM relaxation. In vivo, acute oral administration of PFD (300 mg/kg) or CXN-8 (15 mg/kg) reduced airway resistance and AHR in house dust mite-sensitized mice. Chronic oral treatment (daily, Days 14-24) further attenuated airway inflammation and remodeling, decreasing eosinophil and neutrophil infiltration, Th2 and Th17 cytokines, ASM thickening, and peribronchial collagen deposition. Collectively, these findings identify PFD and CXN-8 as dual-acting bronchodilator and anti-inflammatory agents that also alleviate airway remodeling, offering a promising therapeutic strategy for β2-agonist-insensitive and corticosteroid-resistant asthma.

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Cite This Study

Xie et al. (2026) studied this question.

synapsesocial.com/papers/69ba43694e9516ffd37a4a0bhttps://doi.org/10.1093/ajrcmb/aanag047
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1B77-09 At2R Agonists, C21 and Nac, Modulate Secretion of Ecm Proteins From Human Precision Cut Lung Slices, Under Conditions Mimicking Idiopathic Pulmonary Fibrosis2026
  2. 2Pirfenidone Attenuates Hyperoxia-induced Lung Injury and Pulmonary Hypertension in a Mouse Model of Bronchopulmonary Dysplasia in Newborn Mice2026
  3. 3Clearing the Pulmonary Traffic Jam With Dual‐Enzyme Inhalable Nanoparticles Restore Airflow and Reverse Fibrotic Remodeling2026
  4. 4Pirfenidone Alleviates Inflammation and Fibrosis of Acute Respiratory Distress Syndrome by Modulating the Transforming Growth Factor-β/Smad Signaling Pathway2024 · 4 citations
  5. 5Late-breaking abstract: Preclinical evaluation of an inhibitor of cytosolic phospholipase A <sub>2</sub> α for the treatment of asthma2011