Trypsin Activity

Trypsin activity is the catalytic function of trypsin, a serine protease that breaks proteins into smaller peptides and is essential for understanding protein digestion and enzyme behavior. In the small intestine, enteropeptidase activates trypsinogen to trypsin, which hydrolyzes peptide bonds on the carboxyl side of lysine or arginine residues; trypsin can also activate additional digestive zymogens. Measuring this activity helps characterize enzyme kinetics, substrate specificity, and effects of pH, temperature, or inhibitors. In biology and biotechnology, trypsin activity assays support studies of digestion, protein analysis, and controlled cell detachment during cell culture.

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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.

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.

Generation of Mosaic Mammary Organoids by Differential Trypsinization

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Cited by 6 •

2020

The mammary gland is a bilayered structure, comprising outer myoepithelial and inner luminal epithelial cells. Presented is a protocol to prepare organoids using differential trypsinization. This efficient method allows researchers to separately manipulate these two cell types to explore questions concerning their roles in mammary gland form and function.

Passaging HuES Human Embryonic Stem Cell-lines with Trypsin.

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Cited by 1 •

2006

In this video we demonstrate how our lab routinely passages HuES human embryonic stem cell lines with trypsin. Brought to you by JoVE.

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