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Updated: Apr 10, 2026

Detecting and Characterizing Protein Self-Assembly In Vivo by Flow Cytometry
Published on: July 17, 2019
To fret over FRET: Unintended fluorescence energy transfer artifacts and their implications for flow cytometry panel
Hao-Wei Wang1, Dana Delgado Colon1, Kyle Murphy1
1Flow Cytometry Unit, Laboratory of Pathology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, Maryland, USA.
Abstract:
Förster resonance energy transfer (FRET) serves as the fundamental mechanism underlying a wide array of technologies employed in biomedical research and clinical diagnostic applications. However, unintended FRET is often overlooked, despite its potential to introduce assay artifacts that may lead to misinterpretation. Here, we examine the impact of unwanted FRET on clinical flow cytometric testing, focusing on the T-cell assay incorporating TRBC1 and TRBC2, which has emerged as a powerful method for assessing T-cell clonality. We illustrated the effect using a representative case of spurious antigen expression associated with false TRBC restriction and demonstrate through control experiments that this artifact arises when target antigens in close proximity are labeled with fluorochromes having overlapping spectra. We quantified the spectral overlap integral J(λ), and generated a matrix for commonly used fluorochromes, providing a practical tool to identify fluorochrome pairs with a high FRET propensity that should be avoided when labeling closely situated antigens. Overall, recognizing the potential effects of unintended FRET and implementing strategies to prevent or minimize its impact are essential for ensuring accurate interpretation of clinical flow cytometric assays.

