Mucosal Thickness

Mucosal thickness is the depth of the mucous membrane lining body passages and cavities, an anatomical feature that influences barrier protection, secretion, and absorption. It reflects the combined structure of the epithelial layer, underlying connective tissue, and associated glands, and varies according to tissue location and physiological demands. In biology, measuring mucosal thickness helps researchers compare normal and diseased tissues, assess responses to inflammation or injury, and evaluate changes associated with development, aging, or treatment. Because mucosa separates internal tissues from environmental exposure, its thickness provides useful insight into tissue function, integrity, and adaptation.

Mucosal Thickness - Related Videos

Research

JoVE Journal - Immunology and Infection

Murine Full-thickness Skin Transplantation

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Cited by 41 •

2017

Murine full-thickness skin transplantation is a well-established model to study rejection in an alloimmune setting. Here, we provide a tutorial of each step involved in performing a BALB/c-->C57BL/6 full-thickness skin transplant.

Quantification of Immune Mediator Levels in Human Mucosal Lining Fluid

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2025

This video demonstrates the quantification of immune mediator levels in neonatal human nasal mucosal lining fluid extract. An electrochemiluminescence-based multiplex assay system measures these mediators by evaluating the intensity of emitted light when they are excited.

Education

JoVE Core - Anatomy and Physiology

Mucosal Barrier of the Stomach

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2024

The gastric glands contain parietal cells that secrete hydrochloric acid (HCl) for digestion. The cells secrete HCl because it is highly corrosive and essential for breaking down food. To achieve this, they secrete hydrogen and chloride ions into the lumen of the gastric glands, which combine to form HCl. Within parietal cells, carbonic acid is first formed through the reaction of water and carbon dioxide. The dissociation of carbonic acid releases bicarbonate and hydrogen ions. The bicarbonate...

Production, Characterization and Potential Uses of a 3D Tissue-engineered Human Esophageal Mucosal Model

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Cited by 3 •

2015

This manuscript describes the production, characterization and potential uses of a tissue engineered 3D esophageal construct prepared from normal primary human esophageal fibroblast and squamous epithelial cells seeded within a de-cellularized porcine scaffold. The results demonstrate the formation of a mature stratified epithelium similar to the normal human esophagus.

Heterotopic Mucosal Engrafting Procedure for Direct Drug Delivery to the Brain in Mice

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Cited by 5 •

2014

A mouse model of human endoscopic skull base reconstruction has been developed that creates a semipermeable interface between the brain and nose using nasal mucosal grafts. This method allows researchers to study delivery to the central nervous system of high molecular weight therapeutics which are otherwise excluded by the blood-brain barrier when administered systemically.

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