Embryonic Lung Dissection

Embryonic lung dissection is a laboratory technique for isolating and examining developing lung tissue, making it possible to study how respiratory structures form and organize. It works by carefully removing embryonic lungs with fine instruments, often under a stereomicroscope, while preserving the airway tree and surrounding tissue for observation or downstream analysis. In biology, the method supports investigation of branching morphogenesis, epithelial and mesenchymal interactions, tissue growth, and developmental abnormalities. Comparing specimens across developmental stages or experimental conditions can reveal how cellular processes shape organ formation and inform research on congenital lung disease and regenerative strategies.

Embryonic Lung Dissection - Related Videos

Research

JoVE Journal - Biology

Immunostaining of Dissected Zebrafish Embryonic Heart

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Cited by 35 •

2012

A rapid way to conduct immunostaining of zebrafish embryonic heart is described. Compared to the whole mount immunostaining approach, this method dramatically increases the penetration of the antibodies, which allows obtaining high resolution images that reveal cellular/subcellular structures in the heart within a much reduced processing time.

Research

JoVE Journal - Biology
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Mouse Embryonic Lung Culture, A System to Evaluate the Molecular Mechanisms of Branching

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Cited by 32 •

2010

Early embryonic lung organ culture is a very useful system to study epithelial-mesenchymal interactions. Both epithelial and mesenchymal morphogenesis proceeds under specific conditions that can be readily manipulated in this system.

Dissection and Culture of Mouse Embryonic Kidney

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Cited by 4 •

2017

This protocol describes a method for isolating and culturing metanephric rudiments from mouse embryos.

Dissection and Culture of Commissural Neurons from Embryonic Spinal Cord

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Cited by 42 •

2010

This video demonstrates a method to dissect and culture commissural neurons from E13 rat dorsal spinal cord. Dissociated commissural neurons are useful to study the cellular and molecular mechanisms of axon growth and guidance.

Dissection, Culture, and Analysis of Xenopus laevis Embryonic Retinal Tissue

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Cited by 6 •

2012

Xenopus laevis provides an ideal model system for studying cell fate specification and physiological function of individual retinal cells in primary cell culture. Here we present a technique for dissecting retinal tissues and generating primary cell cultures that are imaged for calcium activity and analyzed by in situ hybridization.

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