Insights into the Cellular and Molecular Mechanisms behind the Antifibrotic Effects of Nerandomilast

Dennis Reininger1, Felix Wolf1, Christoph H Mayr1

  • 1Immunology & Respiratory Diseases Research and.

Insights

Nerandomilast, a phosphodiesterase 4B inhibitor, reduces lung fibrosis by decreasing myofibroblast activity and improving endothelial barrier function. This drug shows potential for treating idiopathic pulmonary fibrosis (IPF).

Area of Science:

  • Pulmonary Medicine
  • Pharmacology
  • Cell Biology

Background:

  • Idiopathic pulmonary fibrosis (IPF) is a complex lung disease requiring multifaceted therapeutic strategies.
  • Targeting multiple cell types and signaling pathways is crucial for effective IPF treatment.

Purpose of the Study:

  • To investigate the antifibrotic effects of nerandomilast, a phosphodiesterase 4B (PDE4B) inhibitor.
  • To evaluate nerandomilast's impact on myofibroblasts (MFs) and endothelial cells in IPF models.

Main Methods:

  • Utilized cytokine-stimulated human IPF lung fibroblasts (IPF-HLF) and RNA-sequencing to assess MF contractility and differentiation.
  • Employed a 3D microfluidic chip with human microvascular endothelial cells to evaluate endothelial barrier integrity and monocyte adhesion.
  • Assessed nerandomilast's efficacy in an in vivo mouse model of acute lung injury.

Main Results:

  • Nerandomilast significantly inhibited MF contractility and marker expression in IPF-HLF cells.
  • Activated cAMP and G-protein-coupled receptor (GPCR) signaling while inhibiting mitogen-activated protein kinase (MAPK) and transforming growth factor beta (TGFβ) signaling.
  • Reduced microvascular permeability, monocyte adhesion, and inflammatory markers in both in vitro and in vivo models.

Conclusions:

  • Nerandomilast promotes MF dedifferentiation and reduces contractility by modulating TGFβ, MAPK phosphatase-1, and GPCR signaling.
  • The drug mitigates vascular dysfunction by enhancing endothelial junctions and reducing adhesion molecule expression.
  • Nerandomilast demonstrates significant therapeutic potential for IPF, offering insights into its cellular and molecular mechanisms.

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