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Updated: Dec 17, 2025

Luminescence Resonance Energy Transfer to Study Conformational Changes in Membrane Proteins Expressed in Mammalian Cells
Published on: September 16, 2014
trLRET microscopy: Ultrasensitive imaging of lanthanide luminophores
Paulina Ciepla1, Ukrae Cho1, James K Chen2
1Department of Chemical and Systems Biology, Stanford University, Stanford, CA, United States.
Abstract:
In principle, the long emission lifetimes of lanthanide chelates should enable their ultrasensitive detection in biological systems by time-resolved optical microscopy. However, most lanthanide-imaging systems cannot achieve sensitivities that exceed those of conventional fluorescence microscopes, since they are limited by inefficient lanthanide excitation, the low photon flux of excited lanthanide luminophores, and optics-derived background photoluminescence. We recently reported a new lanthanide-imaging modality, trans-reflected illumination with luminescence resonance energy transfer (trLRET), which overcomes each of these constraints. Here we provide a detailed procedure for visualizing endogenous protein expression in zebrafish embryos, using lanthanide-labeled antibodies, Q-switched laser illumination, and trLRET microscopy. These methods allow ultrasensitive molecular imaging in cells and organisms, establishing a new paradigm for biological exploration and discovery.
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