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Updated: Oct 7, 2026

Generation of Airway Epithelial Cell Air-Liquid Interface Cultures from Human Pluripotent Stem Cells
Published on: June 14, 2022
Third harmonic generation microscopy reveals structure and mucus dynamics in human airway epithelium models
Doyoung Kim1, Alexandra Latshaw1, Marta Balkota2
1Department of Applied Physics, Université de Genève, Rue de l'Ecole-de-Médecine 20, 1205 Genève, Switzerland.
Abstract:
Airway epithelium is the primary interface between human body and the external environment, acting as a physical and functional barrier. In vitro airway models that reproduce the epithelium architecture are valuable tools for studying infection, inflammation, and transport processes. In this work, we present a label-free, non-invasive method to visualize and measure mucociliary transport in air-liquid human models using third-harmonic generation (THG) microscopy with an optical parametric amplifier laser source at 1,300 nm. By exploiting the intrinsic nonlinear contrast at optical heterogeneities, THG provides high-resolution images of both epithelial structures and the overlying mucus layer without fluorescence staining or sample processing as recently shown for other lung-tissue environments. Time-lapse THG imaging reveals depth-dependent transport dynamics within the mucus, offering new insights into mucociliary transport. Our approach offers a physiologically relevant way to assess mucociliary function in vitro and could support studies on respiratory diseases, drug delivery and epithelial remodeling.

