Effects of PARP-1 Deficiency and Histamine H4 Receptor Inhibition in an Inflammatory Model of Lung Fibrosis in Mice

Mariaconcetta Durante1, Silvia Sgambellone1, Cecilia Lanzi2

  • 1Section of Pharmacology, Department of Neurosciences, Psychology, Drug Research and Child Health (NEUROFARBA), University of Florence, Florence, Italy.

Insights

This study reveals that inhibiting Poly(ADP-ribose) polymerase-1 (PARP-1) and Histamine H4 receptors (H4Rs) reduces lung fibrosis. Targeting these pathways offers a potential new treatment for pulmonary fibrosis.

Area of Science:

  • Pulmonary Medicine
  • Pharmacology
  • Immunology

Background:

  • Pulmonary fibrosis, a frequent interstitial lung disease, lacks effective therapies.
  • Poly(ADP-ribose) polymerases (PARP) are involved in DNA repair and apoptosis, with PARP-1 deficiency showing reduced lung fibrosis.
  • Histamine H4 receptors (H4Rs) are implicated in inflammatory and immune responses, with ligands impacting lung inflammation and oxidative stress.

Purpose of the Study:

  • To investigate the interaction between PARP-1 and H4Rs in a bleomycin-induced lung fibrosis model.
  • To evaluate the therapeutic potential of targeting H4Rs in conjunction with PARP-1 inhibition for pulmonary fibrosis.

Main Methods:

  • Utilized PARP-1 deficient (PARP-1-/-) and wild-type (WT) mice treated with bleomycin.
  • Administered H4R antagonist (JNJ7777120) or agonist (VUF8430) and assessed airway resistance, PARylated protein levels, oxidative stress, and inflammatory/fibrotic markers.
  • Analyzed histological changes, pro-inflammatory cytokines (IL-1β, TNF-α), regulatory cytokine (IL-10), pro-fibrotic cytokine (TGF-β), and alpha-smooth muscle actin (αSMA) deposition.

Main Results:

  • JNJ7777120 treatment in PARP-1-/- mice reduced PARylated protein, oxidative stress, and MPO levels.
  • H4R antagonist administration significantly decreased IL-1β and TNF-α, while increasing IL-10, indicating anti-inflammatory effects.
  • JNJ7777120 treatment decreased airway smooth muscle thickness, goblet cell number, collagen deposition, TGF-β production, and αSMA, suggesting reduced airway remodeling.

Conclusions:

  • PARylation is critical for pulmonary fibrosis pathogenesis.
  • PARP-1 and H4Rs are jointly involved in inflammatory and fibrotic processes.
  • Combined H4R antagonism and PARP-1 inhibition demonstrate anti-inflammatory, anti-fibrotic, and airway remodeling benefits, suggesting clinical relevance for idiopathic pulmonary fibrosis treatment.

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