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◆ ACS Sensors2026-04-22· Aptamer

Time-Gated Fluorescent Aptamer Sensors Eliminate Autofluorescence during Continuous Molecular Detection in Complex Biological Matrices

Deepak Gopalan, Alex M. Yoshikawa, Brian E. Young, Jean Won Kwak, Michael Eisenstein, Hyongsok Tom Soh

原始摘要(英文原文)· Original abstract
Background autofluorescence presents a major obstacle to fluorescence-based sensors in complex biological environments, creating substantial interference that undermines the sensitivity of detection. Here, we introduce a strategy for autofluorescence-free monitoring of biomarkers using time-gated fluorescent aptamer switches. The switches are labeled with a europium chelate donor and an acceptor fluorophore, and the Förster resonance energy transfer (FRET) between the dyes is modulated upon target binding. The long (∼1 ms) luminescence lifetime of the europium chelate enables the selective detection of the switch fluorescence while filtering out short-lived background autofluorescence. Furthermore, we present a generalizable framework for designing time-gated fluorescence aptamer switches and apply it to three clinically relevant biomarkers: glucose, lactate, and cortisol. By tuning the design of our switches, we can optimize the time-gated FRET signal change with target binding. These switches detect their targets across physiologically relevant concentration ranges and exhibit reversible responses with minute-scale temporal resolution, making them well suited for continuous monitoring applications. Finally, we develop a compact sensor platform that integrates our switches with custom hardware for monitoring biomarkers in undiluted human serum. Overall, our approach offers a simple, compact solution for biosensing in complex biological samples.
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