Tracheal Allograft

A tracheal allograft is a donor-derived segment of trachea transplanted into another person to reconstruct or replace a damaged, narrowed, or absent airway. Its success depends on preserving airway structure while establishing blood flow to the graft and controlling the recipient’s immune response, since donor tissues can trigger rejection; preparation may include cryopreservation or decellularization to modify these challenges. In medicine, tracheal allografts offer a potential solution for complex long-segment airway defects caused by trauma, cancer, congenital abnormalities, or severe stenosis. Research continues to improve graft viability, reduce immunosuppression, and support durable airway healing.

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Research

JoVE EoE - Large Animal Models

Tracheal Cannulation in Rabbit Model: A Procedure to Insert Tracheal Cannula into the Rabbit Trachea

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2025

This video demonstrates the surgical creation of an opening in the rabbit trachea to insert a tracheal cannula for artificially ventilating the lungs.

Direct Tracheal Instillation of Solutes into Mouse Lung

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Cited by 54 •

2010

Intratracheal instillations deliver solutes directly into the lungs. This procedure targets the delivery of the instillate into the distal regions of the lung, and is therefore often incorporated in studies aimed at studying alveoli. We provide a detailed survival protocol for performing intratracheal instillations in mice.

In vitro Measurements of Tracheal Constriction Using Mice

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Cited by 15 •

2012

Transgenic mice have been extremely useful in ascribing physiological function to genes. As such, research in general, and functional studies of airway, in particular, have undergone a remarkable shift toward murine models. Here we provide protocols for in vitro trachea constriction studies to evaluate smooth muscle function in murine airway.

Examination of Drosophila Larval Tracheal Terminal Cells by Light Microscopy

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Cited by 11 •

2013

Here, we present a method for light microscopy analysis of tracheal terminal cells in Drosophila larvae. This method allows for quick examination of branch and lumen morphology in whole animals and would be useful for analysis of individual mutants or screens for mutations affecting terminal cell development.

Label-Free Neutrophil Separation from Tracheal Secretion Using Spiral Microfluidics Channel

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2025

This video demonstrates separating neutrophils from tracheal secretions using a microfluidic device with spiral channels. The device achieves efficient separation based on cell size by utilizing varying thicknesses and trapezoidal-shaped channels. The interplay between forces results in large neutrophils accumulating near the inner wall while erythrocytes and mucin aggregates remain near the outer wall, ensuring effective neutrophil separation.

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