Enzymatic Release

Enzymatic release is the controlled liberation of a molecule from a carrier, matrix, or molecular conjugate through enzyme-catalyzed bond cleavage. In bioengineering systems, an enzyme recognizes a specific substrate or linker and hydrolyzes it under suitable environmental conditions, allowing the bound or encapsulated payload to become available. This mechanism can provide selective, condition-responsive release of drugs, proteins, nucleic acids, or other bioactive compounds. By linking release to enzyme activity, researchers can tune delivery timing and location, improve biomaterial performance, and design systems for therapeutic delivery, biosensing, tissue engineering, and biomolecule processing.

Enzymatic Release - Related Videos

Research

JoVE EoE - Immunodiagnostics

A Dye Release Assay to Quantify Enzymatic Activity of Antimicrobial Proteins

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2025

This video demonstrates the dye release assay for quantifying the enzymatic activity of antimicrobial proteins. The antimicrobial protein degrades the bacteria's dye-labeled cell wall and releases the dye molecules turning the solution blue. The absorbance of the solution correlates with the enzymatic activity of the antimicrobial protein.

High-throughput Screening of Recalcitrance Variations in Lignocellulosic Biomass: Total Lignin, Lignin Monomers, and Enzymatic Sugar Release

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Cited by 19 •

2015

Plant cell wall structure and chemistry traits are evaluated to identify ideal feedstocks for biofuels and bio-materials. Standard methods have limitations when applied to large data sets. These high-throughput pretreatment, enzyme saccharification, and pyrolysis-molecular beam mass spectrometry methods compare large numbers of biomass samples with decreased experimental time and cost.

Research

JoVE Journal - Chemistry
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Light-driven Enzymatic Decarboxylation

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Cited by 6 •

2016

We describe a protocol for the light-catalyzed generation of hydrogen peroxide — a cofactor for oxidative transformations.

Use of Enzymatic Biosensors to Quantify Endogenous ATP or H2O2 in the Kidney

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Cited by 12 •

2015

Enzymatic microelectrode biosensors enable real-time measurements of extracellular cell signaling in biologically-relevant concentrations. The following protocols extend the applications of biosensors to the ex vivo and in vivo detection of ATP and H2O2 in the kidney.

Hot Biological Catalysis: Isothermal Titration Calorimetry to Characterize Enzymatic Reactions

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Cited by 16 •

2014

Isothermal titration calorimetry measures heat flow released or absorbed in chemical reactions. This method can be used to quantify enzyme-catalysis. In this paper, the protocol for instrumental setup, experiment running, and data analysis is generally described, and applied to the characterization of enzymatic urea hydrolysis by jack bean urease.

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