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[Preprint]. 2024 Feb 5:2024.02.03.578756.
doi: 10.1101/2024.02.03.578756.

Prolonged airway explant culture enables study of health, disease, and viral pathogenesis

Prolonged airway explant culture enables study of health, disease, and viral pathogenesis

Rhianna E Lee-Ferris et al. bioRxiv. .

Update in

  • Prolonged airway explant culture enables study of health, disease, and viral pathogenesis.
    Lee-Ferris RE, Okuda K, Galiger JR, Schworer SA, Rogers TD, Dang H, Gilmore R, Edwards C, Crisp G, Nakano S, Cawley AM, Pickles RJ, Gallant SC, Crisci E, Rivier L, Hagood JS, O'Neal WK, Baric RS, Grubb BR, Boucher RC, Randell SH. Lee-Ferris RE, et al. Sci Adv. 2025 Apr 25;11(17):eadp0451. doi: 10.1126/sciadv.adp0451. Epub 2025 Apr 25. Sci Adv. 2025. PMID: 40279421 Free PMC article.

Abstract

In vitro models play a major role in studying airway physiology and disease. However, the native lung's complex tissue architecture and non-epithelial cell lineages are not preserved in these models. Ex vivo tissue models could overcome in vitro limitations, but methods for long-term maintenance of ex vivo tissue has not been established. We describe methods to culture human large airway explants, small airway explants, and precision-cut lung slices for at least 14 days. Human airway explants recapitulate genotype-specific electrophysiology, characteristic epithelial, endothelial, stromal and immune cell populations, and model viral infection after 14 days in culture. These methods also maintain mouse, rabbit, and pig tracheal explants. Notably, intact airway tissue can be cryopreserved, thawed, and used to generate explants with recovery of function 14 days post-thaw. These studies highlight the broad applications of airway tissue explants and their use as translational intermediates between in vitro and in vivo studies.

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