Murine Intestine

The murine intestine is the small and large intestinal tract of mice, a widely used biological system for studying digestion, barrier function, immunity, and disease. Its epithelial cells absorb nutrients and form tight junctions that regulate permeability, while intestinal microbes interact with immune and host cells to influence tissue homeostasis and inflammation. In medicine, murine intestinal models support research on inflammatory bowel disease, infection, cancer, drug responses, and microbiome-host interactions. Findings from these models can clarify disease mechanisms and guide therapeutic development, although differences between mouse and human intestinal physiology must be considered when translating results.

Murine Intestine - Related Videos

Research

JoVE Journal - Bioengineering

Tissue Engineering of the Intestine in a Murine Model

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Cited by 29 •

2012

This article and the accompanying video present our protocol for generating tissue-engineered intestine in the mouse, using an organoid units-on-scaffold approach.

Intestinal Crypts Isolation: A Method to Isolate Whole Crypts from Small Intestine of Murine Model

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2023

In this video, we demonstrate a technique to isolate whole crypts from a mouse’s small intestine. The isolated whole crypts can be used to propagate long-lived and self-renewing 3D organoids in vitro.

Murine Model of Intestinal Ischemia-reperfusion Injury

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Cited by 52 •

2016

Here we describe the detailed procedure of intestinal ischemia-reperfusion in mice which results in reproducible injury without mortality to encourage the standardization of this technique across the field. This model of intestinal ischemia-reperfusion injury can be utilized to study the cellular and molecular mechanisms of injury and regeneration.

Isolation and Flow Cytometric Characterization of Murine Small Intestinal Lymphocytes

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Cited by 55 •

2016

There is growing interest in the quantitative characterization of intestinal lymphocytes owing to increasing recognition that these cells play a critical role in a variety of intestinal and systemic diseases. In this protocol, we describe how to isolate single cell populations from different small-intestinal compartments for subsequent flow cytometric characterization.

Fluorescence-mediated Tomography for the Detection and Quantification of Macrophage-related Murine Intestinal Inflammation

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Cited by 2 •

2017

Target-specific probes represent an innovative tool for analyzing molecular mechanisms, such as protein expression in various types of disease (e.g., inflammation, infection, and tumorigenesis). In this study, we describe a quantitative three-dimensional tomographic assessment of intestinal macrophage infiltration in a murine model of colitis using F4/80-specific fluorescence-mediated tomography.

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