Related Experiment Video
Updated: Jul 4, 2026

Activated Cross-linked Agarose for the Rapid Development of Affinity Chromatography Resins - Antibody Capture as a Case Study
Published on: August 16, 2019
An affinity-based strategy for the design of selective displacers for the chromatographic separation of proteins
Srinavya Vutukuru1, Sandesh D Kate, Scott A McCallum
1Department of Chemical and Biological Engineering, Rensselaer Polytechnic Institute, Troy, NY 12180, USA.
Abstract:
We describe an affinity-based strategy for designing selective protein displacers for the chromatographic purification of proteins. To design a displacer that is selective for a target protein, we attached a component with affinity for the target protein to a resin-binding component; we then tested the ability of such displacers to selectively retain the target protein on a resin relative to another protein having a similar retention time. In particular, we synthesized displacers based on biotin, which selectively retained avidin as compared to aprotinin on SP Sepharose high performance resin. In addition, we have extended this approach to develop an affinity-peptide-based displacer that discriminates between lysozyme and cytochrome c. Here, a selective displacer was designed from a lysozyme-binding peptide that had been identified and optimized previously using phage-display technology. Our results suggest a general strategy for designing highly selective affinity-based displacers by identifying molecules (e.g., peptides) that bind to a protein of interest and using an appropriate linker to attach these molecules to a moiety that binds to the stationary phase.
Related Concept Videos
Affinity Chromatography
Ion-Exchange Chromatography
Types Of Column Chromatography
Gel Filtration Chromatography
When the...
Size-Exclusion Chromatography
Silica particles offer advantages such as rigidity,...
Analyte Adsorption and Distribution
Principles Of Column Chromatography

