Chromogenic Substrates

Chromogenic substrates are compounds that produce a visible color change when acted on by a specific enzyme, making them useful indicators of biochemical activity. In the reaction, the enzyme cleaves or chemically modifies the substrate, converting it into a colored product whose intensity can reflect enzyme presence or activity under defined conditions. In biology, chromogenic substrates support enzyme assays, immunoassays such as ELISA, and histochemical staining, where color formation helps identify target proteins, cells, or microorganisms. Their simplicity enables visual detection, while spectrophotometric measurement can provide quantitative results for research, diagnostics, and biotechnology.

Chromogenic Substrates - Related Videos

Research

JoVE Journal - Biochemistry
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High-throughput Screening of Carbohydrate-degrading Enzymes Using Novel Insoluble Chromogenic Substrate Assay Kits

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Cited by 5 •

2016

A high-throughput assay for enzyme screening is described. This multiplexed ready-to-use assay kit comprises of pre-chosen Chromogenic Polymer Hydrogel (CPH) substrates and complex Insoluble Chromogenic Biomass (ICB) substrates. Target enzymes are polysaccharide degrading endo-enzymes and proteases.

Research

JoVE EoE - Assay Techniques

Chromogenic Polymer Hydrogel-Based Enzyme Screening Assay: A High Throughput Method to Screen the Carbohydrate-Active Enzymes Using Synthetic Substrates

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2025

In this video, we demonstrate a high throughput assay for carbohydrate-active enzyme screening using insoluble chromogenic polymer hydrogel substrates. The enzyme degrades these substrates into a soluble colored product that can be quantified by measuring the color intensity of the product.

A New Chromogenic Medium for Rapid Detection of Vibrio Species

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2025

Source: Yeung, M., et al. Development of a More Sensitive and Specific Chromogenic Agar Medium for the Detection of Vibrio parahaemolyticus and Other Vibrio Species. J. Vis. Exp. (2016)This video demonstrates a culture-based method for identifying Vibrio species, highlighting chromogenic agar as a more accurate alternative to the commonly used thiosulfate-citrate-bile salts-sucrose or TCBS agar. Chromogenic agar provides superior differentiation of Vibrio strains by detecting species-specific...

Quantification of Group B Streptococcus Load in the Mouse Vaginal Lumen via Swabbing and Chromogenic Culture

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2026

Source: Patras, K. A. & Doran, K. S. A Murine Model of Group B Streptococcus Vaginal Colonization. J. Vis. Exp. (2016)This video demonstrates the quantification of vaginal Group B Streptococcus (GBS) load in a mouse model using swabbing and chromogenic culture. It outlines the steps involved in sample collection, plating, and colony counting to quantify GBS load in the mouse vaginal lumen.

Selective Enrichment and Identification of Salmonella spp. Using Xylose Lysine Deoxycholate and Chromogenic Agar

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2025

Source: Yang, Z., et al. A High-throughput Platform for the Screening of Salmonella spp./Shigella spp.. J. Vis. Exp. (2018)This video demonstrates the selective enrichment and identification of Salmonella using xylose lysine deoxycholate (XLD) and chromogenic agar. Selenite broth promotes Salmonella growth, while XLD agar reveals black-centered colonies through hydrogen sulfide production. Chromogenic agar confirms the identity via enzyme-mediated pigment formation, enabling species-level...

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