Trypsin Dissociation

Trypsin dissociation is a laboratory technique that uses the proteolytic enzyme trypsin to release adherent cells from culture vessels or tissue fragments, enabling their collection and study. Under controlled conditions, trypsin cleaves proteins that mediate cell attachment to extracellular matrix and neighboring cells; neutralization or removal of the enzyme limits damage to cell-surface proteins and preserves viability. In cancer research, this process helps generate single-cell suspensions from tumor-derived cultures for passaging, counting, phenotypic analysis, drug-response testing, and molecular assays. Careful control of exposure time and handling supports consistent cell recovery and reliable experimental results.

Trypsin Dissociation - Related Videos

Research

JoVE Journal - Biology

Trypsinizing and Subculturing Mammalian Cells

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Cited by 7 •

2008

As cells reach confluency, they must be subcultured or passaged. This video will demonstrate a procedure for subculturing both adherent and suspension cells.

Trypsin Digest Protocol to Analyze the Retinal Vasculature of a Mouse Model

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Cited by 59 •

2013

Trypsin digest is one of the most commonly used methods to analyze retinal vasculature. This manuscript describes the method in detail, including key alterations to optimize the technique and remove the non-vascular tissue while preserving the overall architecture of the vessels.

Visualizing Trypsin-Activated Rotavirus Infection Using a Plaque Assay

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2026

Source: Philip, A. A., et. al., Simplified Reverse Genetics Method to Recover Recombinant Rotaviruses Expressing Reporter Proteins. J. Vis. Exp. (2020)This video demonstrates a plaque assay technique to monitor rotavirus infection in epithelial cells. Trypsin activation enhances viral entry, and staining highlights viable cells, enabling visualization of infection-induced plaques.

Preparation of Dissociated Mouse Cortical Neuron Cultures

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Cited by 146 •

2007

This video shows a procedure for generating neuronal cultures from late embryo and early postnatal mouse cortex. These cultures can be used for immunocytochemistry, biochemistry, electrophysiology, calcium and sodium imaging and provide a platform to study the neuronal development of transgenic animals that carry a postnatal lethal gene mutation.

A Technique for Harvesting and Dissociating Dorsal Root Ganglia for Neuronal Cultures

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2025

This video demonstrates a method for harvesting neurons from the dorsal root ganglia (DRG). DRG from a rat's spinal column is isolated, treated with enzymes, and then mechanically dissociated to obtain a single-cell suspension. The neurons are separated from glial cells using density gradient centrifugation and cultured in a growth medium.

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