Nebulized curcumin protects neonatal lungs from antenatal insult in rats

Cyril Guillier1,2,3, Diane Carrière1,2,3, Julien Pansiot1,4

  • 1Institut National de la Santé Et de la Recherche Médicale (INSERM) U1141, Paris, France.

Insights

Nebulized curcumin prevents abnormal lung development in rat pups with intrauterine growth restriction (IUGR). This treatment targets pathways involved in lung development, offering a promising strategy for bronchopulmonary dysplasia (BPD).

Area of Science:

  • Pulmonology
  • Developmental Biology
  • Pharmacology

Background:

  • Intrauterine growth restriction (IUGR) is linked to bronchopulmonary dysplasia (BPD), a major complication of prematurity.
  • PPARγ is crucial for lung development and is dysregulated in IUGR models.
  • Antenatal low-protein diet (LPD) in rats mimics BPD-related alveolarization disorders.

Purpose of the Study:

  • To investigate the potential of nebulized curcumin, a PPARγ agonist, in preventing IUGR-induced abnormal lung development.
  • To assess curcumin's effects on lung alveolarization and associated molecular pathways in a rat model.

Main Methods:

  • Rat pups were exposed to LPD or control diet and treated with nebulized curcumin or vehicle from postnatal days 1-5.
  • Lung morphometric analyses (mean linear intercept, radial alveolar count) were performed at postnatal day 21.
  • Immunohistochemistry and microarray analyses were conducted to evaluate PPARγ pathway regulators and gene expression.

Main Results:

  • LPD induced abnormal alveolarization, evidenced by increased mean linear intercept in rat pups.
  • Curcumin treatment significantly prevented LPD-induced alveolarization defects.
  • Curcumin normalized FABP4 expression and prevented profibrotic pathway activation in LPD-exposed animals.

Conclusions:

  • Nebulized curcumin effectively prevents lung alveolarization disorders in IUGR rat pups.
  • Curcumin targets key pathways involved in lung development, showing promise for BPD prevention.
  • Early curcumin intervention is a potential therapeutic strategy for IUGR-related lung complications.

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