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Updated: Jan 12, 2026

A Label-free Technique for the Spatio-temporal Imaging of Single Cell Secretions
Published on: November 23, 2015
Understanding the Origin of Surface Plasmon Resonance Microscopy Signals in Cell-Based Molecular Interaction
Peng Lin1, Yushi Gao1, Yachong Zhao2
1Zhejiang Key Laboratory of Excited-State Energy Conversion and Energy Storage, Department of Chemistry, Zhejiang University, 866 Yuhangtang Rd., Hangzhou, Zhejiang 310058, China.
Abstract:
Surface plasmon resonance microscopy (SPRM) is widely used for label-free imaging of biomolecular interactions at cell membranes. In cell-based assays, SPRM often produces distinctive patterns, such as edge-dominated signals and spatially heterogeneous binding kinetics, yet the physical origins of these features remain incompletely understood and cannot be resolved by SPRM alone. Here, we combine SPRM with depth- and time-resolved confocal fluorescence imaging to address this question. Using lectin binding on fixed cells as a model system, we show that SPRM signals primarily originate from ligand binding within the portion of the membrane exposed to the evanescent field, with additional contributions from binding-induced membrane deformation. We also find that local membrane features strongly correlate with kinetic heterogeneity. These results provide direct experimental evidence clarifying SPRM signal formation in cell-based measurements and offer practical guidance for accurate quantification and interpretation in label-free plasmonic imaging of cellular interfaces.
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