Mechanical Tissue Disruption

Mechanical tissue disruption is a laboratory method that physically breaks tissue into smaller fragments or a homogenate, enabling access to cells, microbes, proteins, and nucleic acids within complex biological samples. Cutting, grinding, blending, or bead beating applies shear, compression, and friction to rupture extracellular structures and, in some cases, cell membranes; the selected force and temperature help preserve or release the target material. In immunology and infection research, disrupted tissue supports immune-cell isolation, pathogen detection, microbial recovery, and analysis of inflammatory molecules. Standardized processing improves sample uniformity and can clarify how infections alter tissue structure, cellular composition, and host responses.

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JoVE EoE - Bacterial Growth and Techniques

Mechanical Disruption of Individual Worms to Assess Variability in Host-Bacteria Interactions

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2025

Source: Taylor, M. N. et al. Using Single-Worm Data to Quantify Heterogeneity in Caenorhabditis elegans-Bacterial Interactions. J. Vis. Exp. (2022)This video demonstrates the quantification of intestinal bacterial load variability in individual Caenorhabditis elegans through mechanical disruption. It outlines the steps for sample preparation, mechanical disruption, serial dilution, and colony counting to assess differences in intestinal bacterial load among individual worms.

Sensing of Barrier Tissue Disruption with an Organic Electrochemical Transistor

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Cited by 5 •

2014

The Organic Electrochemical Transistor is integrated with live cells and used to monitor ion flux across the gastrointestinal epithelial barrier. In this study, an increase in ion flux, related to disruption of tight junctions, induced by the presence of the calcium chelator EGTA (ethylene glycol-bis(beta-aminoethyl ether)-N,N,N',N'-tetra acetic acid), is measured.

Mechanical Dissociation: A Method to Obtain Viable Cells from a Tissue

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2023

This video describes the non-enzymatic dissociation of fresh human tissue to obtain viable cells. The technique is used for qualitative and quantitative analysis of CD45 positive cells (lymphocytes/leukocytes) present in various normal and malignant human tissues.

Design of a Biaxial Mechanical Loading Bioreactor for Tissue Engineering

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Cited by 24 •

2013

We designed a novel mechanical loading bioreactor that can apply uniaxial or biaxial mechanical strain to a cartilage biocomposite prior to transplantation into an articular cartilage defect.

Impact Indentation for Assessing the Mechanical Properties of a Mouse Brain Tissue

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2025

Source: Canovic, E. P., et. al., Characterizing Multiscale Mechanical Properties of Brain Tissue Using Atomic Force Microscopy, Impact Indentation, and Rheometry. J. Vis. Exp. (2016)The video demonstrates using impact indentation to measure the mechanical properties of a hydrated mouse brain tissue, including stiffness, energy dissipation, and damping, through probe displacement and velocity analysis.

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