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Updated: Aug 9, 2025

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Rapid Determination of Antibody-Antigen Affinity by Mass Photometry
Published on: February 8, 2021
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Gradient method for accurate affinity determinations.
1Medical Cell Biophysics Group, University of Twente, PO Box 217, 7500 AE, Enschede, the Netherlands.
Analytical Biochemistry
|February 22, 2023
Summary
Label-free interaction analysis affinity constants are sensitive to ligand density. A new SPR-imaging method with a ligand density gradient minimizes surface effects and allows accurate analyte concentration determination, improving antibody quality assessment.
Area of Science:
- Biophysical Chemistry
- Analytical Chemistry
- Surface Science
Background:
- Affinity constants (kd, ka, KD) in label-free interaction analysis are significantly influenced by ligand density on sensor surfaces.
- Existing methods often require cumbersome optimization to achieve ideal ligand densities.
Purpose of the Study:
- To introduce a novel SPR-imaging method that utilizes a ligand density gradient.
- To enable extrapolation of analyte response to Rmax = 0 μRIU, thereby minimizing surface-dependent artifacts.
Main Methods:
- Development of a surface plasmon resonance (SPR) imaging technique incorporating a ligand density gradient.
- Utilizing the mass transport-limited region for accurate analyte concentration determination.
- Extrapolation of binding response to zero ligand density (Rmax = 0 μRIU).
Main Results:
- The ligand density gradient method effectively extrapolates analyte response, mitigating issues like rebinding and biphasic kinetics.
- Accurate analyte concentration determination is achieved without extensive ligand density optimization.
- The method demonstrates potential for full automation in applications such as antibody quality control.
Conclusions:
- This novel SPR-imaging approach provides a robust solution for accurate affinity constant determination by controlling ligand density effects.
- The method simplifies experimental procedures and enhances the reliability of interaction analysis data.
- It offers a valuable tool for automated quality assessment of biomolecular interactions, particularly for antibodies.

