Tracheomalacia Reduces Aerosolized Drug Delivery to the Lung

Chamindu C Gunatilaka1,2, Christopher McKenzie3, Erik B Hysinger2,4

  • 1Center for Pulmonary Imaging Research, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio, USA.

Insights

Neonates with dynamic tracheal collapse (tracheomalacia) receive less aerosolized medication to their lungs. Larger particles deposit in the airway, suggesting smaller particles may improve drug delivery in these infants.

Area of Science:

  • Pediatric Pulmonology
  • Medical Imaging
  • Computational Fluid Dynamics

Background:

  • Neonates with respiratory issues often receive aerosolized medications.
  • Dynamic tracheal collapse (tracheomalacia) is a common comorbidity in neonates.
  • The impact of tracheomalacia on aerosolized drug delivery is not well understood.

Purpose of the Study:

  • To quantify the effect of neonatal tracheomalacia on aerosolized drug delivery.
  • To compare drug delivery efficiency in neonates with and without tracheomalacia.

Main Methods:

  • Recruited 14 infants (7 with TM, 7 without TM).
  • Acquired respiratory-gated 3D ultrashort echo time MRI for airway and lung imaging.
  • Used computational fluid dynamics simulations based on patient-specific MRI data to model airflow and particle transport.

Main Results:

  • Less aerosolized drug reached distal airways in infants with TM (33% vs. 47% particle mass through main bronchi, p=0.013).
  • Higher particle deposition on airway surfaces in infants with TM (48% vs. 25%, p=0.003).
  • Larger particles (>2 μm) showed significantly greater deposition in TM subjects (p≤0.025).

Conclusions:

  • Neonatal patients with tracheomalacia receive less aerosolized medication to the lungs.
  • Current treatment may be inadequate for infants with lung disease and TM.
  • Smaller aerosolized particles may improve drug delivery in neonates with TM by reducing airway deposition.

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