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Optimization of Receptor Occupancy Assays in Mass Cytometry: Standardization Across Channels with QSC Beads
Gerd Haga Bringeland1,2, Lucius Bader3,4, Nello Blaser5
1Department of Neurology, Haukeland University Hospital, Bergen, Norway.
Abstract:
Receptor occupancy, the ratio between amount of drug bound and amount of total receptor on single cells, is a biomarker for treatment response to therapeutic monoclonal antibodies. Receptor occupancy is traditionally measured by flow cytometry. However, spectral overlap in flow cytometry limits the number of markers that can be measured simultaneously. This restricts receptor occupancy assays to the analysis of major cell types, although rare cell populations are of potential therapeutic relevance. We therefore developed a receptor occupancy assay suitable for mass cytometry. Measuring more markers than currently available in flow cytometry allows simultaneous receptor occupancy assessment and high-parameter immune phenotyping in whole blood, which should yield new insights into disease activity and therapeutic effects. However, varying sensitivity across the mass cytometer detection range may lead to misinterpretation of the receptor occupancy when drug and receptor are detected in different channels. In this report, we describe a method for optimization of mass cytometry receptor occupancy measurements by using antibody-binding quantum simply cellular (QSC) beads for standardization across channels with different sensitivities. We evaluated the method in a mass cytometry-based receptor occupancy assay for natalizumab, a therapeutic antibody used in multiple sclerosis treatment that binds to α4-integrin, which is expressed on leukocyte cell surfaces. Peripheral blood leukocytes from a treated patient were stained with a panel containing metal-conjugated antibodies for detection of natalizumab and α4-integrin. QSC beads with known antibody binding capacity were stained with the same metal-conjugated antibodies and were used to standardize the signal intensity in the leukocyte sample before calculating receptor occupancy. We found that QSC bead standardization across channels corrected for sensitivity differences for detection of drug and receptor and generated more accurate results than observed without standardization. © 2019 The Authors. Cytometry Part A published by Wiley Periodicals, Inc. on behalf of International Society for Advancement of Cytometry.
Insights
This study introduces a mass cytometry method for accurate receptor occupancy measurement, crucial for therapeutic monoclonal antibody treatment response. Quantum simply cellular (QSC) beads standardize measurements across channels, improving accuracy for both major and rare immune cell populations.
Area of Science:
- Biomedical Engineering
- Immunology
- Analytical Chemistry
Background:
- Receptor occupancy is a key biomarker for therapeutic monoclonal antibody efficacy.
- Traditional flow cytometry methods for receptor occupancy are limited by spectral overlap, restricting analysis to major cell types.
- Rare immune cell populations may hold therapeutic relevance, necessitating advanced analytical techniques.
Purpose of the Study:
- To develop and validate a mass cytometry-based receptor occupancy assay for enhanced precision and multi-parameter analysis.
- To address the challenge of varying sensitivity across mass cytometer detection channels.
- To enable simultaneous receptor occupancy assessment and high-parameter immune phenotyping in whole blood.
Main Methods:
- Developed a mass cytometry assay for receptor occupancy measurement.
- Utilized antibody-binding quantum simply cellular (QSC) beads for standardization across different detection channels.
- Applied the method to measure natalizumab receptor occupancy on α4-integrin in patient leukocytes.
Main Results:
- QSC bead standardization effectively corrected for sensitivity differences between detection channels.
- The standardized mass cytometry assay provided more accurate receptor occupancy results compared to unstandardized measurements.
- Enabled simultaneous assessment of receptor occupancy and immune phenotyping on leukocytes.
Conclusions:
- Mass cytometry, when standardized with QSC beads, offers a robust platform for accurate receptor occupancy measurement.
- This method overcomes limitations of flow cytometry, allowing for detailed analysis of both major and rare immune cell populations.
- The developed assay provides new insights into disease activity and therapeutic effects of monoclonal antibodies.
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