Related Experiment Video
Updated: Jun 10, 2026

Immunocompetent Alveolus-on-Chip Model for Studying Alveolar Mucosal Immune Responses
Published on: May 31, 2024
Particle-induced indentation of the alveolar epithelium caused by surface tension forces
S M Mijailovich1, M Kojic, A Tsuda
1Molecular and Integrative Physiological Sciences, Dept. of Environmental Health, Harvard School of Public Health, 665 Huntington Ave., Bldg. I, Rm. 1010D, Boston, MA 02115, USA. smijailo@hsph.harvard.edu
Abstract:
Physical contact between an inhaled particle and alveolar epithelium at the moment of particle deposition must have substantial effects on subsequent cellular functions of neighboring cells, such as alveolar type-I, type-II pneumocytes, alveolar macrophage, as well as afferent sensory nerve cells, extending their dendrites toward the alveolar septal surface. The forces driving this physical insult are born at the surface of the alveolar air-liquid layer. The role of alveolar surfactant submerging a hydrophilic particle has been suggested by Gehr and Schürch's group (e.g., Respir Physiol 80: 17-32, 1990). In this paper, we extended their studies by developing a further comprehensive and mechanistic analysis. The analysis reveals that the mechanics operating in the particle-tissue interaction phenomena can be explained on the basis of a balance between surface tension force and tissue resistance force; the former tend to move a particle toward alveolar epithelial cell surface, the latter to resist the cell deformation. As a result, the submerged particle deforms the tissue and makes a noticeable indentation, which creates unphysiological stress and strain fields in tissue around the particle. This particle-induced microdeformation could likely trigger adverse mechanotransduction and mechanosensing pathways, as well as potentially enhancing particle uptake by the cells.
Related Concept Videos
Alveoli and Alveolar Ducts
Factors Affecting Pulmonary Ventilation
Alveolar Surface Tension
The alveolar fluid lines the luminal surface of the alveoli and exerts a force called surface tension. This force is caused by the polar water molecules in the liquid being more strongly attracted to each...
Pressure Relationships in Thoracic Cavity
Breathing Mechanisms
Both intra-alveolar and intrapleural pressures rely on specific lung properties. The ability to breathe—allowing air to enter the lungs during...
Breathing
Chronic Obstructive Pulmonary Disease II: Emphysema
Atelectasis II: Pathophysiology

