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An Intravital Microscopy-Based Approach to Assess Intestinal Permeability and Epithelial Cell Shedding Performance
Published on: December 3, 2020
An Intravital Microscopy-Based Approach to Assess Intestinal Permeability and Epithelial Cell Shedding Performance
Luz Dc Martínez-Sánchez1, Rashmita Pradhan1, Phuong A Ngo1
1Medical Clinic 1, University of Erlangen-Nuremberg, University Hospital of Erlangen.
Insights
Intravital confocal microscopy enables real-time gut imaging to observe epithelial cell shedding and barrier leakage in live animals. This technique enhances understanding of intestinal permeability and cell extrusion mechanisms.
Area of Science:
- Gastroenterology and Immunology
- Microscopy and Imaging Technologies
Background:
- Intravital microscopy offers real-time visualization of dynamic biological processes within living organisms.
- Understanding intestinal epithelial barrier function and cell dynamics is crucial for diagnosing and treating gastrointestinal disorders.
Purpose of the Study:
- To present a protocol for intravital confocal microscopy of the mouse gut for real-time observation of epithelial cell shedding and barrier leakage.
- To highlight the potential of this technique in studying intestinal permeability and cellular mechanisms.
Main Methods:
- Anesthetized mice undergo topical staining of the intestinal mucosa with acriflavine and rhodamine-B dextran.
- The stained intestinal tissue is mounted and imaged using a confocal microscope for real-time observation.
Main Results:
- The technique allows direct, real-time visualization of epithelial cell shedding events in the gut.
- It enables the identification of intestinal barrier leakage, complementing other non-invasive methods.
Conclusions:
- This intravital microscopy protocol provides a powerful tool for studying intestinal epithelial cell extrusion and barrier function in real-time.
- The approach can be adapted to visualize other dynamic cellular processes in various tissues, advancing biological research.
Abstract:
Intravital microscopy of the gut using confocal imaging allows real time observation of epithelial cell shedding and barrier leakage in living animals. Therefore, the intestinal mucosa of anesthetized mice is topically stained with unspecific staining (acriflavine) and a fluorescent tracer (rhodamine-B dextran), mounted on a saline solution-rinsed plate and directly imaged using a confocal microscope. This technique can complement other non-invasive techniques to identify leakage of intestinal permeability, such as transmucosal passage of orally administered tracers. Besides this, the approach presented here allows the direct observation of cell shedding events at real-time. In combination with appropriate fluorescent reporter mice, this approach is suitable for shedding light into cellular and molecular mechanisms controlling intestinal epithelial cell extrusion, as well as to other biological processes. In the last decades, interesting studies using intravital microscopy have contributed to knowledge on endothelial permeability, immune cell gut homing, immune-epithelial communication and invasion of luminal components, among others. Together, the protocol presented here would not only help increase the understanding of mechanisms controlling epithelial cell extrusion, but could also be the basis for the developmental of other approaches to be used as instruments to visualize other highly dynamic cellular process, even in other tissues. Among technical limitations, optical properties of the specific tissue, as well as the selected imaging technology and microscope configuration, would in turn, determine the imaging working distance, and resolution of acquired images.
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