Intestinal Oxygenation

Intestinal oxygenation is the delivery and distribution of oxygen within the intestinal wall, where it supports epithelial metabolism, barrier integrity, and tissue function. Oxygen reaches the mucosa primarily through the intestinal microcirculation and diffuses across tissue gradients, while epithelial cells and resident microbes consume it, creating distinct oxygen conditions from the mucosal surface to the gut lumen. In medicine, assessing intestinal oxygenation can help identify tissue hypoxia and impaired perfusion associated with conditions such as intestinal ischemia, inflammation, and critical illness. Understanding these oxygen gradients also informs research on gut barrier dysfunction, host-microbe interactions, and strategies to protect intestinal tissue.

Intestinal Oxygenation - Related Videos

Research

JoVE Journal - Biology

A Protocol for Lentiviral Transduction and Downstream Analysis of Intestinal Organoids

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Cited by 81 •

2015

In this video protocol we give a step by step explanation of lentiviral transduction in organoids of primary intestinal epithelium and of processing and downstream analysis of these cultures by quantitative RT-PCR, RNA-microarray and immunohistochemistry.

Flow Cytometry Assay to Quantify Oxidative Stress: An Assay to Quantify Reactive Oxygen Species in Intestinal Organoids Using Fluorogenic Probes

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2025

This video demonstrates a flow cytometry assay to quantify the ROS levels in 3D intestinal organoids obtained from GFP-expressing transgenic mice. This method provides an in vitro experimental model to investigate the efficacy of test compounds on ROS production.

Fluorescent Probe Imaging Assay: A Technique to Visualize Oxidative Stress in the Reactive Oxygen Species Inducer-Treated Cultured Intestinal Organoid Cells

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2025

This video describes the technique of visualizing oxidative stress in cultured organoids. This work helps in understanding the level of oxidative stress due to ROS accumulation in the various cell types present in an organoid after treatment with different ROS modulators.

Cerebral Blood Oxygenation Measurement Based on Oxygen-dependent Quenching of Phosphorescence

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Cited by 28 •

2011

We present an experimental procedure for measuring the partial pressure of oxygen (pO2) in cerebral vasculature based on oxygen-dependent quenching of phosphorescence. Animal preparation and imaging procedures were outlined for both large field of view CCD-based imaging of pO2 in rats and 2-photon excitation based imaging of pO2 in mice.

Education

JoVE Science Education - Advanced Biology

Detecting Reactive Oxygen Species

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2023

Reactive oxygen species are chemically active, oxygen-derived molecules capable of oxidizing other molecules. Because of their reactive nature, there are many deleterious effects associated with unchecked ROS production, including structural damage to DNA and other biological molecules. However, ROS can also be mediators of physiological signaling. There is accumulating evidence that ROS play significant roles in everything from activation of transcription factors to the mediation of...

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