Related Experiment Video
Updated: Jan 28, 2026

Establishing Human Lung Organoids and Proximal Differentiation to Generate Mature Airway Organoids
Published on: March 23, 2022
A Three-Dimensional Model of Human Lung Airway Tree to Study Therapeutics Delivery in the Lungs
Antonio Copploe1, Morteza Vatani2, Jae-Won Choi2
1Department of Biomedical Engineering, The University of Akron, 260 S. Forge St., Akron, OH, 44325, USA.
Abstract:
Surfactant instillation into the lungs is used to treat several respiratory disorders such as neonatal respiratory distress syndrome (NRDS). The success of the treatments significantly depends on the uniformity of distribution of the instilled surfactant in airways. This is challenging to directly evaluate due to the inaccessibility of lung airways and great difficulty with imaging them. To tackle this problem, we developed a 3D physical model of human lung airway tree. Using a defined set of principles, we first generated computational models of eight generations of neonates' tracheobronchial tree comprising the conducting zone airways. Similar to native lungs, these models contained continuously-branching airways that rotated in the 3D space and reduced in size with increase in the generation number. Then, we used additive manufacturing to generate physical airway tree models that precisely replicated the computational designs. We demonstrated the utility of the physical models to study surfactant delivery in the lungs and showed the effect of orientation of the airway tree in the gravitational field on the distribution of instilled surfactant between the left and right lungs and within each lung. Our 3D lung airway tree model offers a novel tool for quantitative studies of therapeutics delivery.
Related Concept Videos
Lung Capacity
Pleura of the Lungs
Gross Anatomy of the Lungs
The Tree of Life - Bacteria, Archaea, Eukaryotes
Survival Tree
Building a Survival Tree
Constructing a...
The Bronchial Tree
The trachea, commonly known as the windpipe, is a tube that connects the larynx (voice box) to the bronchi. At a point called the carina, it bifurcates into two primary bronchi. The right primary bronchus is wider, shorter, and more vertical than the left primary...

