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◆ Biophysical journal2026-09-01

Label-Free Microrefractometry of Interfacial Processes Using Fluorescent Smart Coverslips.

Hodaya Klimovsky, Amitay Ginsberg, Dmytro Ohorodniichuk, Maria Shehadeh, Ilya Olevsko, Gerardo Byk, Martin Oheim, Adi Salomon

原始摘要(英文原文)· Original abstract
Molecular dipoles near interfaces emit highly directional radiation due to near-field inter-actions, making surface-bound fluorophores sensitive probes of local physicochemical changes. We intro-duce "smart coverslips", standard microscope substrates, which are stably coated with uniform, brightly fluorescent nano-bead films, that exploit refractive-index-dependent shifts in the radiation pattern for sensitive micro-refractometry in small volumes. Supercritical-angle fluorescence refractometry uses single back-focal-plane images to allow us real-time RI sensing and nanometric thin-film height measurements without the need for multi-angle or multi-wavelength acquisition. Our fast, label-free, and non-invasive approach allows measurements of thin-film properties and monitoring of interfacial dynamics on a standard inverted microscope and is broadly applicable to nano-biophotonics, chemical sensing, and in-situ materials analysis. Applied to membrane biophysics, these findings establish a versatile approach for resolving the nanoscale organization of membrane-proximal or -associated structures.
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Label-Free Microrefractometry of Interfacial Processes Using Fluorescent Smart Coverslips. — 科研速览 Science Skim