PARP inhibition by olaparib or gene knockout blocks asthma-like manifestation in mice by modulating CD4(+) T cell

Mohamed A Ghonim1,2, Kusma Pyakurel3, Salome V Ibba4

  • 1The Stanley Scott Cancer Center, School of Medicine, Louisiana State University Health Sciences Center, 1700 Tulane Ave, New Orleans, LA, 70112, USA. mghoni@lsuhsc.edu.

Abstract

Insights

Olaparib, a PARP inhibitor, effectively reduced allergic airway inflammation and hyperresponsiveness in asthma models. This suggests PARP inhibition is a promising therapeutic strategy for human asthma.

Area of Science:

  • Immunology
  • Pharmacology
  • Respiratory Medicine

Background:

  • Asthma treatment resistance necessitates novel therapeutic approaches.
  • Poly(ADP-ribose) polymerase (PARP) plays a critical role in experimental asthma.
  • Olaparib, a PARP inhibitor, is approved for clinical cancer trials.

Purpose of the Study:

  • To evaluate olaparib's efficacy in mitigating established allergic airway inflammation and hyperresponsiveness in asthma models.
  • To investigate the therapeutic potential of PARP inhibition in asthma.

Main Methods:

  • Ovalbumin (OVA)-induced mouse models of asthma were utilized.
  • Wild-type and PARP-1 knockout mice were sensitized and challenged with OVA.
  • Olaparib or saline was administered intraperitoneally post-challenge.

Main Results:

  • Olaparib significantly reduced airway eosinophilia, mucus production, and hyperresponsiveness.
  • Olaparib suppressed Th2 cytokines (IL-4, IL-5, IL-13) and IgE, while increasing Th1 cytokine (IFN-γ).
  • PARP inhibition modulated CD4+ T cell populations, increasing regulatory T cells.

Conclusions:

  • PARP inhibition demonstrates potential as a therapeutic strategy for asthma.
  • Olaparib is a potential candidate for clinical trials in human asthma patients.

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