Murine Tissue Analysis

Murine tissue analysis is the systematic examination of mouse organs and tissues to measure their molecular composition, structure, and biochemical activity. In biochemistry, researchers typically preserve tissue samples, homogenize them to release cellular contents, and separate or extract proteins, nucleic acids, lipids, or metabolites before quantifying targets with methods such as spectrophotometry, immunoblotting, chromatography, or enzyme activity assays. These analyses connect molecular changes with organ function, disease mechanisms, toxicological responses, and treatment effects, supporting validation of animal models and identification of biomarkers for translational research.

Murine Tissue Analysis - Related Videos

Research

JoVE Journal - Bioengineering

Isolation of Murine Adipose Tissue-derived Microvascular Fragments as Vascularization Units for Tissue Engineering

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Cited by 58 •

2017

We present a protocol to isolate adipose tissue-derived microvascular fragments that represent promising vascularization units. They can be rapidly isolated, do not require in vitro processing and, thus, may be used for one-step prevascularization in different fields of tissue engineering.

Isolation of Leukocytes from the Murine Tissues at the Maternal-Fetal Interface

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Cited by 44 •

2015

Described herein is a protocol to isolate and analyze the infiltrating leukocytes of tissues at the maternal-fetal interface (uterus, decidua, and placenta) of mice. This protocol maintains the integrity of most cell surface markers and yields enough viable cells for downstream applications including flow cytometry analysis.

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.

Preparing a Single-Cell Suspension of Immune Cells from Murine Brain Tissue

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2025

The video demonstrates the preparation of a single-cell suspension of immune cells from a murine brain tissue. It involves enzymatic digestion to release cells from the brain tissue, followed by density gradient centrifugation to isolate the immune cells based on their densities to obtain the single-cell suspension.

Engineering Skeletal Muscle Tissues from Murine Myoblast Progenitor Cells and Application of Electrical Stimulation

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Cited by 40 •

2013

Engineered muscle tissue has great potential in regenerative medicine, as disease model and also as an alternative source for meat. Here we describe the engineering of a muscle construct, in this case from mouse myoblast progenitor cells, and the stimulation by electrical pulses.

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